Nikolić, Ines

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Authority KeyName Variants
orcid::0000-0001-6534-0418
  • Nikolić, Ines (34)
Projects
Development of micro- and nanosystems as carriers for drugs with anti-inflammatory effect and methods for their characterization Ministry of Education, Science and Technological Development, Republic of Serbia, Grant no. 451-03-68/2020-14/200161 (University of Belgrade, Faculty of Pharmacy)
NanoCellEmoCog - Neuroimmune aspects of mood, anxiety and cognitive effects of leads/drug candidates acting at GABAA and/or sigma-2 receptors: In vitro/in vivo delineation by nano- and hiPSC-based platform Ministry of Education, Science and Technological Development, Republic of Serbia, Grant no. 451-03-68/2020-14/200026 (University of Belgrade, Institute of Chemistry, Technology and Metallurgy - IChTM)
COST Action CA16231 European Network of Vaccine Adjuvants (ENOVA) Croatian Science Foundation, grant number IP-2019-04-6048
Development of Micro- and Nanosystems as Carriers for Drugswith Anti-inflammatory Effect and Methods for Their Characterizationand OI 175011 Biological response modifiers in physiological and path-ological conditions. European Cooperation in Science and Technology (COST) Action CA16231 ENOVA
European Regional Development Fund Federal Republic of Germany
Industrial Collective Research, German Federation of Industrial Research Associations (Forschungsvereinigung der Arzneimittelhersteller) and German Federal Ministry for economic affairs and energy NeuroDeRisk - Neurotoxicity De-Risking in Preclinical Drug Discovery
STRENTEX - ERA Chair for emerging technologies and innovative research in Stretchable and Textile Electronics info:eu-repo/grantAgreement/MESTD-2020/inst/200026/RS//
Electroconducting and redox-active polymers and oligomers: synthesis, structure, properties and applications Simultaneous Bioremediation and Soilification of Degraded Areas to Preserve Natural Resources of Biologically Active Substances, and Development and Production of Biomaterials and Dietetic Products
Micro- Nanosystems and Sensors for Electric Power and Process Industry and Environmental Protection Ministry of Education, Science and Technological Development, Republic of Serbia (grant numbers 57514345 and 451–03‐01855/2019–09/12).
Operational Program “Competitiveness, Entrepreneurship and Innovation” (NSRF 2014-2020) The Frankfurt Foundation Quality of Medicines through the project Quality Requirements for Nanomedicines: Filling the gaps (Project No. 2023_2)
This Joint Undertaking receives support from the European Union’s Horizon 2020 research and innovation programme and the European Federation of Pharmaceutical Industries and Associations (EFPIA).

Author's Bibliography

The impact of the aqueous phase on the physicochemical characteristics of nanoemulsions loaded with patent protected compound GL-II-73

Đoković, Jelena; Nikolić, Ines; Sharmin, Dishary; Cook, James M.; Savić, Miroslav; Borchard, Gerrit; Savić, Snežana

(International Society of Drug Delivery Sciences and Technology (APGI), 2024)

TY  - CONF
AU  - Đoković, Jelena
AU  - Nikolić, Ines
AU  - Sharmin, Dishary
AU  - Cook, James M.
AU  - Savić, Miroslav
AU  - Borchard, Gerrit
AU  - Savić, Snežana
PY  - 2024
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/5575
AB  - INTRODUCTION Temporal lobe epilepsy is characterized by seizures, but can also be associated with mental health problems for which there are no clear treatment regimens. A proprietary compound, GL-II-73 - (4R)-8-ethynyl-6-(2-fluorophenyl)-N,N,4-trimethyl-4H-benzo[f]imidazo[1,5-a][1,4]diazepine-3-carboxamide, a positive allosteric modulator of α5-containing γ-aminobutyric acid (GABA) receptors, has been shown to be effective in the treatment of these comorbidities [1]. ...
PB  - International Society of Drug Delivery Sciences and Technology (APGI)
PB  - International Association for Pharmaceutical Technology (APV)
PB  - Italian Society of Technology and Legislation (S.T.E.L.F)
C3  - 14th World Meeting on Pharmaceutics, Biopharmaceutics and Pharmaceutical Technology, 18 - 21 March 2024, Vienna, Austria
T1  - The impact of the aqueous phase on the physicochemical characteristics of nanoemulsions loaded with patent protected compound GL-II-73
UR  - https://hdl.handle.net/21.15107/rcub_farfar_5575
ER  - 
@conference{
author = "Đoković, Jelena and Nikolić, Ines and Sharmin, Dishary and Cook, James M. and Savić, Miroslav and Borchard, Gerrit and Savić, Snežana",
year = "2024",
abstract = "INTRODUCTION Temporal lobe epilepsy is characterized by seizures, but can also be associated with mental health problems for which there are no clear treatment regimens. A proprietary compound, GL-II-73 - (4R)-8-ethynyl-6-(2-fluorophenyl)-N,N,4-trimethyl-4H-benzo[f]imidazo[1,5-a][1,4]diazepine-3-carboxamide, a positive allosteric modulator of α5-containing γ-aminobutyric acid (GABA) receptors, has been shown to be effective in the treatment of these comorbidities [1]. ...",
publisher = "International Society of Drug Delivery Sciences and Technology (APGI), International Association for Pharmaceutical Technology (APV), Italian Society of Technology and Legislation (S.T.E.L.F)",
journal = "14th World Meeting on Pharmaceutics, Biopharmaceutics and Pharmaceutical Technology, 18 - 21 March 2024, Vienna, Austria",
title = "The impact of the aqueous phase on the physicochemical characteristics of nanoemulsions loaded with patent protected compound GL-II-73",
url = "https://hdl.handle.net/21.15107/rcub_farfar_5575"
}
Đoković, J., Nikolić, I., Sharmin, D., Cook, J. M., Savić, M., Borchard, G.,& Savić, S.. (2024). The impact of the aqueous phase on the physicochemical characteristics of nanoemulsions loaded with patent protected compound GL-II-73. in 14th World Meeting on Pharmaceutics, Biopharmaceutics and Pharmaceutical Technology, 18 - 21 March 2024, Vienna, Austria
International Society of Drug Delivery Sciences and Technology (APGI)..
https://hdl.handle.net/21.15107/rcub_farfar_5575
Đoković J, Nikolić I, Sharmin D, Cook JM, Savić M, Borchard G, Savić S. The impact of the aqueous phase on the physicochemical characteristics of nanoemulsions loaded with patent protected compound GL-II-73. in 14th World Meeting on Pharmaceutics, Biopharmaceutics and Pharmaceutical Technology, 18 - 21 March 2024, Vienna, Austria. 2024;.
https://hdl.handle.net/21.15107/rcub_farfar_5575 .
Đoković, Jelena, Nikolić, Ines, Sharmin, Dishary, Cook, James M., Savić, Miroslav, Borchard, Gerrit, Savić, Snežana, "The impact of the aqueous phase on the physicochemical characteristics of nanoemulsions loaded with patent protected compound GL-II-73" in 14th World Meeting on Pharmaceutics, Biopharmaceutics and Pharmaceutical Technology, 18 - 21 March 2024, Vienna, Austria (2024),
https://hdl.handle.net/21.15107/rcub_farfar_5575 .

Human papillomaviruses and cervical cancer from the perspective of the World Health Organisation initiative for cervical cancer elimination

Filipić, Brankica; Rapajić-Moran, Ivana; Nikolić, Ines; Oljačić, Slavica; Mandić, Aljoša

(Beograd : Savez farmaceutskih udruženja Srbije, 2024)

TY  - JOUR
AU  - Filipić, Brankica
AU  - Rapajić-Moran, Ivana
AU  - Nikolić, Ines
AU  - Oljačić, Slavica
AU  - Mandić, Aljoša
PY  - 2024
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/5580
AB  - Human papillomaviruses (HPV) are the most common sexually transmitted pathogens
worldwide, leading to infections with a wide range of clinical manifestations: from benign
conditions to different types of cancer in women and men as well. Cervical cancer is highly
correlated with persistent high-risk-HPV (HR-HPV) infection, which is the key factor in
emergence of 99.99% of cervical cancer cases. The most effective way to prevent HPV-related
cancers is vaccination. There are three available prophylactic HPV vaccines: bivalent,
quadrivalent and nonavalent. The nonavalent vaccine is gradually replacing other HPV vaccines
in most countries and can be given from year 9, but it is commonly routinely implemented at the
age of 11 to 12. The World Health Organization has recognised cervical cancer as a global threat
and has announced the so-called 90-70-90 strategy to reduce and even eliminate cervical cancer.
This strategy implies that 90% of girls should be vaccinated by the age of 15, 70% of women
should be screened for cervical cancer, and 90% of women diagnosed with cervical disease should
receive adequate treatment. Although different treatment options are available: surgery, radiation
therapy, chemotherapy, and advanced target therapy using monoclonal antibodies, great efforts
are needed to achieve the goals set by the World Health Organization to eliminate cervical cancer.
AB  - Humani papilomavirusi (HPV) su među najčešćim uzročnicima seksualno prenosivih patogena i mogu dovesti do različitih kliničkih manifestacija: od benignih stanja do različitih vrsta karcinoma kod žena, ali i muškaraca. Najčešći HPV-posredovan karcinom je karcinom grlića materice koji je u preko 99,99% slučajeva posledica infekcije. Najefikasniji način da se spreči razvoj perzistentne HR-HPV infekcije je vakcinacija. Dostupne su tri profilaktičke vakcine: dvovalentna, kvadrivalentna i devetovalentna. Devetovalentna vakcina pruža najširu zaštitu jer sadrži devet onkogenih HPV genotipova i postepeno zamenjuje ostale vakcine u svim zemljama. Sa vakcinacijom se može krenuti od 9. godine, ali se najčešće rutinski sprovodi kod dečaka i devojčica u uzrastu od 11 do 12 godina. Svetska zdravstvena organizacija je prepoznala karcinom grlića materice kao globalni problem i uvela takozvanu 90-70-90 strategiju u cilju smanjenja stope, pa čak i eliminacije karcinoma grlića materice. Ova strategija podrazumeva da 90% devojčica bude potpuno vakcinisano do 15. godine, 70% žena pristupi redovnom ginekološkom pregledu do 35. godine i ponovo do 45. godine i 90% žena sa promenama na grliću materice primi adekvatnu terapiju. Iako su dostupne različite terapije poput hirurškog tretmana, radioterapije, hemioterapije i ciljane terapije monoklonskim antitelima, i dalje su potrebni veliki napori da bi se dostigli ciljevi Svetske zdravstvene organizacije.
PB  - Beograd : Savez farmaceutskih udruženja Srbije
T2  - Arhiv za farmaciju
T1  - Human papillomaviruses and cervical cancer from the perspective of the World Health Organisation initiative for cervical cancer elimination
T1  - Humani papilomavirusi i karcinom grlića materice iz perspektive inicijative Svetske zdravstvene organizacije za eliminaciju karcinoma grlića materice
VL  - 74
IS  - 1
SP  - 56
EP  - 75
DO  - 10.5937/arhfarm74-48226
ER  - 
@article{
author = "Filipić, Brankica and Rapajić-Moran, Ivana and Nikolić, Ines and Oljačić, Slavica and Mandić, Aljoša",
year = "2024",
abstract = "Human papillomaviruses (HPV) are the most common sexually transmitted pathogens
worldwide, leading to infections with a wide range of clinical manifestations: from benign
conditions to different types of cancer in women and men as well. Cervical cancer is highly
correlated with persistent high-risk-HPV (HR-HPV) infection, which is the key factor in
emergence of 99.99% of cervical cancer cases. The most effective way to prevent HPV-related
cancers is vaccination. There are three available prophylactic HPV vaccines: bivalent,
quadrivalent and nonavalent. The nonavalent vaccine is gradually replacing other HPV vaccines
in most countries and can be given from year 9, but it is commonly routinely implemented at the
age of 11 to 12. The World Health Organization has recognised cervical cancer as a global threat
and has announced the so-called 90-70-90 strategy to reduce and even eliminate cervical cancer.
This strategy implies that 90% of girls should be vaccinated by the age of 15, 70% of women
should be screened for cervical cancer, and 90% of women diagnosed with cervical disease should
receive adequate treatment. Although different treatment options are available: surgery, radiation
therapy, chemotherapy, and advanced target therapy using monoclonal antibodies, great efforts
are needed to achieve the goals set by the World Health Organization to eliminate cervical cancer., Humani papilomavirusi (HPV) su među najčešćim uzročnicima seksualno prenosivih patogena i mogu dovesti do različitih kliničkih manifestacija: od benignih stanja do različitih vrsta karcinoma kod žena, ali i muškaraca. Najčešći HPV-posredovan karcinom je karcinom grlića materice koji je u preko 99,99% slučajeva posledica infekcije. Najefikasniji način da se spreči razvoj perzistentne HR-HPV infekcije je vakcinacija. Dostupne su tri profilaktičke vakcine: dvovalentna, kvadrivalentna i devetovalentna. Devetovalentna vakcina pruža najširu zaštitu jer sadrži devet onkogenih HPV genotipova i postepeno zamenjuje ostale vakcine u svim zemljama. Sa vakcinacijom se može krenuti od 9. godine, ali se najčešće rutinski sprovodi kod dečaka i devojčica u uzrastu od 11 do 12 godina. Svetska zdravstvena organizacija je prepoznala karcinom grlića materice kao globalni problem i uvela takozvanu 90-70-90 strategiju u cilju smanjenja stope, pa čak i eliminacije karcinoma grlića materice. Ova strategija podrazumeva da 90% devojčica bude potpuno vakcinisano do 15. godine, 70% žena pristupi redovnom ginekološkom pregledu do 35. godine i ponovo do 45. godine i 90% žena sa promenama na grliću materice primi adekvatnu terapiju. Iako su dostupne različite terapije poput hirurškog tretmana, radioterapije, hemioterapije i ciljane terapije monoklonskim antitelima, i dalje su potrebni veliki napori da bi se dostigli ciljevi Svetske zdravstvene organizacije.",
publisher = "Beograd : Savez farmaceutskih udruženja Srbije",
journal = "Arhiv za farmaciju",
title = "Human papillomaviruses and cervical cancer from the perspective of the World Health Organisation initiative for cervical cancer elimination, Humani papilomavirusi i karcinom grlića materice iz perspektive inicijative Svetske zdravstvene organizacije za eliminaciju karcinoma grlića materice",
volume = "74",
number = "1",
pages = "56-75",
doi = "10.5937/arhfarm74-48226"
}
Filipić, B., Rapajić-Moran, I., Nikolić, I., Oljačić, S.,& Mandić, A.. (2024). Human papillomaviruses and cervical cancer from the perspective of the World Health Organisation initiative for cervical cancer elimination. in Arhiv za farmaciju
Beograd : Savez farmaceutskih udruženja Srbije., 74(1), 56-75.
https://doi.org/10.5937/arhfarm74-48226
Filipić B, Rapajić-Moran I, Nikolić I, Oljačić S, Mandić A. Human papillomaviruses and cervical cancer from the perspective of the World Health Organisation initiative for cervical cancer elimination. in Arhiv za farmaciju. 2024;74(1):56-75.
doi:10.5937/arhfarm74-48226 .
Filipić, Brankica, Rapajić-Moran, Ivana, Nikolić, Ines, Oljačić, Slavica, Mandić, Aljoša, "Human papillomaviruses and cervical cancer from the perspective of the World Health Organisation initiative for cervical cancer elimination" in Arhiv za farmaciju, 74, no. 1 (2024):56-75,
https://doi.org/10.5937/arhfarm74-48226 . .

Self-assembled carriers as drug delivery systems: current characterization challenges and future prospects

Pantelić, Ivana; Ilić, Tanja; Nikolić, Ines; Savić, Snežana

(Savez farmaceutskih udruženja Srbije, 2023)

TY  - JOUR
AU  - Pantelić, Ivana
AU  - Ilić, Tanja
AU  - Nikolić, Ines
AU  - Savić, Snežana
PY  - 2023
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/5359
AB  - A review of recent publications reveals an increased interest in the so-called self-assembled
carriers and their applicability in drug delivery via various routes of administration. Self-assembly
denotes the process of rather spontaneous formation of ordered aggregates (sometimes under
specific conditions – e.g., pH, temperature, ionic strength), via diverse interactions. This process,
seen in many naturally occurring substances (polysaccharides, proteins, lipids), has inspired
researchers to synthetize innovative self-assembling materials or combinations of existing ones.
This paper provides a review of the recently investigated self-assembling materials and the
carriers they form, often belonging to the sphere of pharmaceutical nanotechnology. Self-
assembled carriers may provide enhanced stability, more efficient encapsulation and/or controlled
delivery of active pharmaceutical ingredients. However, the diversity of geometries obtained
(spheres, polyhedrals, ellipses, discs, porous structures, etc.) presents a significant
characterization challenge, often requiring the application of several complementary techniques
for proper evaluation of carrier size and morphology. Commonly utilized characterization
techniques for investigating physico-chemical and certain biopharmaceutical properties are
discussed, along with their advantages and disadvantages. Finally, the authors offer their critical
opinion on the outlook of self-assembled drug carriers
AB  - Pregled publikacija objavljenih poslednjih godina ukazuje na interesovanje za tzv. nosače sklone samoorganizovanju, kao i njihov potencijal za isporuku lekovitih supstanci različitim putevima primene. U ovom kontekstu, samoorganizacija označava proces relativno spontanog obrazovanja visoko uređenih agregata (koji ponekad zahteva specifične uslove -npr., pH, temperaturu, jonsku jačinu), zahvaljujući interakcijama različite prirode. Ovaj proces, karakterističan za mnoge supstance prirodnog porekla (određene polisaharide, proteine, lipide), poslužio je kao inspiracija istraživačima da osmisle i sintetišu inovativne materijale sklone samoorganizovanju, ili ispitaju kombinacije postojećih materijala. Ovaj rad pruža pregled najčešće ispitivanih materijala, odnosno nosača dobijenih samoorganizovanjem, koji često pripadaju sferi farmaceutske nanotehnologije. Nosači skloni samoorganizovanju mogu unaprediti stabilnost, efikasnost inkapsulacije i/ili kontrolisanu isporuku lekovitih supstanci. Ipak, raznolikost geometrija dobijenih nosača (sfere, poliedri, elipse, diskovi, porozne strukture, itd.) predstavlja značajan izazov za karakterizaciju, često zahtevajući primenu više komplementarnih tehnika, naročito za valjanu evaluaciju veličine i morfologije dobijenih nosača. Diskutovane su najčešće korišćene tehnike fizičko-hemijske i biofarmaceutske karakterizacije, uz isticanje njihovih prednosti i nedostataka. Na kraju, dat je kritički osvrt o izgledima za buduću primenu nosača lekovitih supstanci sklonih samoorganizovanju.
PB  - Savez farmaceutskih udruženja Srbije
T2  - Arhiv za farmaciju
T1  - Self-assembled carriers as drug delivery systems: current characterization challenges and future prospects
T1  - Nosači lekovitih supstanci skloni samoorganizovanju - trenutni izazovi u karakterizaciji i izgledi za budućnost
VL  - 73
IS  - 5
SP  - 404
EP  - 422
DO  - 10.5937/arhfarm73-46975
ER  - 
@article{
author = "Pantelić, Ivana and Ilić, Tanja and Nikolić, Ines and Savić, Snežana",
year = "2023",
abstract = "A review of recent publications reveals an increased interest in the so-called self-assembled
carriers and their applicability in drug delivery via various routes of administration. Self-assembly
denotes the process of rather spontaneous formation of ordered aggregates (sometimes under
specific conditions – e.g., pH, temperature, ionic strength), via diverse interactions. This process,
seen in many naturally occurring substances (polysaccharides, proteins, lipids), has inspired
researchers to synthetize innovative self-assembling materials or combinations of existing ones.
This paper provides a review of the recently investigated self-assembling materials and the
carriers they form, often belonging to the sphere of pharmaceutical nanotechnology. Self-
assembled carriers may provide enhanced stability, more efficient encapsulation and/or controlled
delivery of active pharmaceutical ingredients. However, the diversity of geometries obtained
(spheres, polyhedrals, ellipses, discs, porous structures, etc.) presents a significant
characterization challenge, often requiring the application of several complementary techniques
for proper evaluation of carrier size and morphology. Commonly utilized characterization
techniques for investigating physico-chemical and certain biopharmaceutical properties are
discussed, along with their advantages and disadvantages. Finally, the authors offer their critical
opinion on the outlook of self-assembled drug carriers, Pregled publikacija objavljenih poslednjih godina ukazuje na interesovanje za tzv. nosače sklone samoorganizovanju, kao i njihov potencijal za isporuku lekovitih supstanci različitim putevima primene. U ovom kontekstu, samoorganizacija označava proces relativno spontanog obrazovanja visoko uređenih agregata (koji ponekad zahteva specifične uslove -npr., pH, temperaturu, jonsku jačinu), zahvaljujući interakcijama različite prirode. Ovaj proces, karakterističan za mnoge supstance prirodnog porekla (određene polisaharide, proteine, lipide), poslužio je kao inspiracija istraživačima da osmisle i sintetišu inovativne materijale sklone samoorganizovanju, ili ispitaju kombinacije postojećih materijala. Ovaj rad pruža pregled najčešće ispitivanih materijala, odnosno nosača dobijenih samoorganizovanjem, koji često pripadaju sferi farmaceutske nanotehnologije. Nosači skloni samoorganizovanju mogu unaprediti stabilnost, efikasnost inkapsulacije i/ili kontrolisanu isporuku lekovitih supstanci. Ipak, raznolikost geometrija dobijenih nosača (sfere, poliedri, elipse, diskovi, porozne strukture, itd.) predstavlja značajan izazov za karakterizaciju, često zahtevajući primenu više komplementarnih tehnika, naročito za valjanu evaluaciju veličine i morfologije dobijenih nosača. Diskutovane su najčešće korišćene tehnike fizičko-hemijske i biofarmaceutske karakterizacije, uz isticanje njihovih prednosti i nedostataka. Na kraju, dat je kritički osvrt o izgledima za buduću primenu nosača lekovitih supstanci sklonih samoorganizovanju.",
publisher = "Savez farmaceutskih udruženja Srbije",
journal = "Arhiv za farmaciju",
title = "Self-assembled carriers as drug delivery systems: current characterization challenges and future prospects, Nosači lekovitih supstanci skloni samoorganizovanju - trenutni izazovi u karakterizaciji i izgledi za budućnost",
volume = "73",
number = "5",
pages = "404-422",
doi = "10.5937/arhfarm73-46975"
}
Pantelić, I., Ilić, T., Nikolić, I.,& Savić, S.. (2023). Self-assembled carriers as drug delivery systems: current characterization challenges and future prospects. in Arhiv za farmaciju
Savez farmaceutskih udruženja Srbije., 73(5), 404-422.
https://doi.org/10.5937/arhfarm73-46975
Pantelić I, Ilić T, Nikolić I, Savić S. Self-assembled carriers as drug delivery systems: current characterization challenges and future prospects. in Arhiv za farmaciju. 2023;73(5):404-422.
doi:10.5937/arhfarm73-46975 .
Pantelić, Ivana, Ilić, Tanja, Nikolić, Ines, Savić, Snežana, "Self-assembled carriers as drug delivery systems: current characterization challenges and future prospects" in Arhiv za farmaciju, 73, no. 5 (2023):404-422,
https://doi.org/10.5937/arhfarm73-46975 . .

Parenteral Lipid-Based Nanoparticles for CNS Disorders: Integrating Various Facets of Preclinical Evaluation towards More Effective Clinical Translation

Ilić, Tanja; Đoković, Jelena; Nikolić, Ines; Mitrović, Jelena; Pantelić, Ivana; Savić, Snežana; Savić, Miroslav

(MDPI, 2023)

TY  - JOUR
AU  - Ilić, Tanja
AU  - Đoković, Jelena
AU  - Nikolić, Ines
AU  - Mitrović, Jelena
AU  - Pantelić, Ivana
AU  - Savić, Snežana
AU  - Savić, Miroslav
PY  - 2023
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/4515
AB  - Contemporary trends in combinatorial chemistry and the design of pharmaceuticals targeting brain disorders have favored the development of drug candidates with increased lipophilicity and poorer water solubility, with the expected improvement in delivery across the blood–brain barrier (BBB). The growing availability of innovative excipients/ligands allowing improved brain targeting and controlled drug release makes the lipid nanocarriers a reasonable choice to overcome the factors impeding drug delivery through the BBB. However, a wide variety of methods, study designs and experimental conditions utilized in the literature hinder their systematic comparison, and thus slows the advances in brain-targeting by lipid-based nanoparticles. This review provides an overview of the methods most commonly utilized during the preclinical testing of liposomes, nanoemulsions, solid lipid nanoparticles and nanostructured lipid carriers intended for the treatment of various CNS disorders via the parenteral route. In order to fully elucidate the structure, stability, safety profiles, biodistribution, metabolism, pharmacokinetics and immunological effects of such lipid-based nanoparticles, a transdisciplinary approach to preclinical characterization is mandatory, covering a comprehensive set of physical, chemical, in vitro and in vivo biological testing.
PB  - MDPI
T2  - Pharmaceutics
T1  - Parenteral Lipid-Based Nanoparticles for CNS Disorders: Integrating Various Facets of Preclinical Evaluation towards More Effective Clinical Translation
VL  - 15
IS  - 2
DO  - 10.3390/pharmaceutics15020443
ER  - 
@article{
author = "Ilić, Tanja and Đoković, Jelena and Nikolić, Ines and Mitrović, Jelena and Pantelić, Ivana and Savić, Snežana and Savić, Miroslav",
year = "2023",
abstract = "Contemporary trends in combinatorial chemistry and the design of pharmaceuticals targeting brain disorders have favored the development of drug candidates with increased lipophilicity and poorer water solubility, with the expected improvement in delivery across the blood–brain barrier (BBB). The growing availability of innovative excipients/ligands allowing improved brain targeting and controlled drug release makes the lipid nanocarriers a reasonable choice to overcome the factors impeding drug delivery through the BBB. However, a wide variety of methods, study designs and experimental conditions utilized in the literature hinder their systematic comparison, and thus slows the advances in brain-targeting by lipid-based nanoparticles. This review provides an overview of the methods most commonly utilized during the preclinical testing of liposomes, nanoemulsions, solid lipid nanoparticles and nanostructured lipid carriers intended for the treatment of various CNS disorders via the parenteral route. In order to fully elucidate the structure, stability, safety profiles, biodistribution, metabolism, pharmacokinetics and immunological effects of such lipid-based nanoparticles, a transdisciplinary approach to preclinical characterization is mandatory, covering a comprehensive set of physical, chemical, in vitro and in vivo biological testing.",
publisher = "MDPI",
journal = "Pharmaceutics",
title = "Parenteral Lipid-Based Nanoparticles for CNS Disorders: Integrating Various Facets of Preclinical Evaluation towards More Effective Clinical Translation",
volume = "15",
number = "2",
doi = "10.3390/pharmaceutics15020443"
}
Ilić, T., Đoković, J., Nikolić, I., Mitrović, J., Pantelić, I., Savić, S.,& Savić, M.. (2023). Parenteral Lipid-Based Nanoparticles for CNS Disorders: Integrating Various Facets of Preclinical Evaluation towards More Effective Clinical Translation. in Pharmaceutics
MDPI., 15(2).
https://doi.org/10.3390/pharmaceutics15020443
Ilić T, Đoković J, Nikolić I, Mitrović J, Pantelić I, Savić S, Savić M. Parenteral Lipid-Based Nanoparticles for CNS Disorders: Integrating Various Facets of Preclinical Evaluation towards More Effective Clinical Translation. in Pharmaceutics. 2023;15(2).
doi:10.3390/pharmaceutics15020443 .
Ilić, Tanja, Đoković, Jelena, Nikolić, Ines, Mitrović, Jelena, Pantelić, Ivana, Savić, Snežana, Savić, Miroslav, "Parenteral Lipid-Based Nanoparticles for CNS Disorders: Integrating Various Facets of Preclinical Evaluation towards More Effective Clinical Translation" in Pharmaceutics, 15, no. 2 (2023),
https://doi.org/10.3390/pharmaceutics15020443 . .
5
2

Textile-based wearable device for detection of date rape drugs in drinks

Stojanović, Goran M; Milić, Lazar; Endro, Ali A; Simić, Mitar; Nikolić, Ines; Savić, Miroslav; Savić, Snežana

(SAGE Publications Ltd, 2023)

TY  - JOUR
AU  - Stojanović, Goran M
AU  - Milić, Lazar
AU  - Endro, Ali A
AU  - Simić, Mitar
AU  - Nikolić, Ines
AU  - Savić, Miroslav
AU  - Savić, Snežana
PY  - 2023
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/5539
AB  - In this article, a sensing element for detection of date rape drugs in drinks is presented. The element consists of a three-dimensional printed holder, in which two embroidered electrodes have been fixed, forming a capacitive structure. As the dielectric properties of the liquid between these electrodes’ changes, the capacitance and consequently the impedance are changed. For experimental purposes, diazepam, a model rape drug, sucrose, and sodium chloride, which are used as control ingredients, were dissolved in a 40% V/V alcoholic beverage, serving as solutions for testing and comparison. The selectivity, repeatability, and sensitivity of the proposed sensor were tested. The sensitivity of detection of 1 mg/ml of diazepam in drinks was 0.92628 Ωl/mg, sucrose was 0.94774 Ωl/mg and sodium chloride was 2.46867 Ωl/mg, at 1 MHz. Moreover, with the use of the Cole impedance model, the selectivity of the sensor in the detection of diazepam, through the Nyquist plot and parameter estimation, has been achieved. Sensor repeatability was calculated through the relative standard deviation with the result for 1 mg/ml of diazepam dissolved in alcohol on 1 MHz being 2.48, in terms of impedance modulus. The presented sensor platform can successfully detect drugs in drinks and can protect from many cases of such assaults in a real world.
PB  - SAGE Publications Ltd
T2  - Textile Research Journal
T1  - Textile-based wearable device for detection of date rape drugs in drinks
DO  - 10.1177/00405175231218740
ER  - 
@article{
author = "Stojanović, Goran M and Milić, Lazar and Endro, Ali A and Simić, Mitar and Nikolić, Ines and Savić, Miroslav and Savić, Snežana",
year = "2023",
abstract = "In this article, a sensing element for detection of date rape drugs in drinks is presented. The element consists of a three-dimensional printed holder, in which two embroidered electrodes have been fixed, forming a capacitive structure. As the dielectric properties of the liquid between these electrodes’ changes, the capacitance and consequently the impedance are changed. For experimental purposes, diazepam, a model rape drug, sucrose, and sodium chloride, which are used as control ingredients, were dissolved in a 40% V/V alcoholic beverage, serving as solutions for testing and comparison. The selectivity, repeatability, and sensitivity of the proposed sensor were tested. The sensitivity of detection of 1 mg/ml of diazepam in drinks was 0.92628 Ωl/mg, sucrose was 0.94774 Ωl/mg and sodium chloride was 2.46867 Ωl/mg, at 1 MHz. Moreover, with the use of the Cole impedance model, the selectivity of the sensor in the detection of diazepam, through the Nyquist plot and parameter estimation, has been achieved. Sensor repeatability was calculated through the relative standard deviation with the result for 1 mg/ml of diazepam dissolved in alcohol on 1 MHz being 2.48, in terms of impedance modulus. The presented sensor platform can successfully detect drugs in drinks and can protect from many cases of such assaults in a real world.",
publisher = "SAGE Publications Ltd",
journal = "Textile Research Journal",
title = "Textile-based wearable device for detection of date rape drugs in drinks",
doi = "10.1177/00405175231218740"
}
Stojanović, G. M., Milić, L., Endro, A. A., Simić, M., Nikolić, I., Savić, M.,& Savić, S.. (2023). Textile-based wearable device for detection of date rape drugs in drinks. in Textile Research Journal
SAGE Publications Ltd..
https://doi.org/10.1177/00405175231218740
Stojanović GM, Milić L, Endro AA, Simić M, Nikolić I, Savić M, Savić S. Textile-based wearable device for detection of date rape drugs in drinks. in Textile Research Journal. 2023;.
doi:10.1177/00405175231218740 .
Stojanović, Goran M, Milić, Lazar, Endro, Ali A, Simić, Mitar, Nikolić, Ines, Savić, Miroslav, Savić, Snežana, "Textile-based wearable device for detection of date rape drugs in drinks" in Textile Research Journal (2023),
https://doi.org/10.1177/00405175231218740 . .
1

Sizing up the nanomedicines: a thorough examination of techniques and data interpretation

Nikolić, Ines; Đoković, Jelena; Mehn, Dora; Guerrini, Giuditta; Colpo, Pascal; Jordan, Olivier; Savić, Snežana; Borchard, Gerrit

(French Society for Nanomedicine (SFNano), 2023)

TY  - CONF
AU  - Nikolić, Ines
AU  - Đoković, Jelena
AU  - Mehn, Dora
AU  - Guerrini, Giuditta
AU  - Colpo, Pascal
AU  - Jordan, Olivier
AU  - Savić, Snežana
AU  - Borchard, Gerrit
PY  - 2023
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/5427
AB  - Size is a universal and first in mind property relevant for nanomedicine/nanomaterial
characterization, representing the most suitable measurand. However, due to the acknowledged
lack of standardized protocols that are able to provide reliable results, especially in the
biorelevant context, researchers often engage with the procedures that are successful in
acquiring data, but not necessarily the correct ones. ...
PB  - French Society for Nanomedicine (SFNano)
C3  - 9th SFNano annual meeting; December 4th - 6th, Montpellier, France
T1  - Sizing up the nanomedicines: a thorough examination of techniques and data interpretation
UR  - https://hdl.handle.net/21.15107/rcub_farfar_5427
ER  - 
@conference{
author = "Nikolić, Ines and Đoković, Jelena and Mehn, Dora and Guerrini, Giuditta and Colpo, Pascal and Jordan, Olivier and Savić, Snežana and Borchard, Gerrit",
year = "2023",
abstract = "Size is a universal and first in mind property relevant for nanomedicine/nanomaterial
characterization, representing the most suitable measurand. However, due to the acknowledged
lack of standardized protocols that are able to provide reliable results, especially in the
biorelevant context, researchers often engage with the procedures that are successful in
acquiring data, but not necessarily the correct ones. ...",
publisher = "French Society for Nanomedicine (SFNano)",
journal = "9th SFNano annual meeting; December 4th - 6th, Montpellier, France",
title = "Sizing up the nanomedicines: a thorough examination of techniques and data interpretation",
url = "https://hdl.handle.net/21.15107/rcub_farfar_5427"
}
Nikolić, I., Đoković, J., Mehn, D., Guerrini, G., Colpo, P., Jordan, O., Savić, S.,& Borchard, G.. (2023). Sizing up the nanomedicines: a thorough examination of techniques and data interpretation. in 9th SFNano annual meeting; December 4th - 6th, Montpellier, France
French Society for Nanomedicine (SFNano)..
https://hdl.handle.net/21.15107/rcub_farfar_5427
Nikolić I, Đoković J, Mehn D, Guerrini G, Colpo P, Jordan O, Savić S, Borchard G. Sizing up the nanomedicines: a thorough examination of techniques and data interpretation. in 9th SFNano annual meeting; December 4th - 6th, Montpellier, France. 2023;.
https://hdl.handle.net/21.15107/rcub_farfar_5427 .
Nikolić, Ines, Đoković, Jelena, Mehn, Dora, Guerrini, Giuditta, Colpo, Pascal, Jordan, Olivier, Savić, Snežana, Borchard, Gerrit, "Sizing up the nanomedicines: a thorough examination of techniques and data interpretation" in 9th SFNano annual meeting; December 4th - 6th, Montpellier, France (2023),
https://hdl.handle.net/21.15107/rcub_farfar_5427 .

The Landscape of Nanomedicines: An Expert Perspective

Nikolić, Ines; Filipić, Brankica; Marija Petrović; Jordan, Olivier; Savić, Snežana; Borchard, Gerrit

(Savez farmaceutskih udruženja Srbije, 2023)

TY  - JOUR
AU  - Nikolić, Ines
AU  - Filipić, Brankica
AU  - Marija Petrović
AU  - Jordan, Olivier
AU  - Savić, Snežana
AU  - Borchard, Gerrit
PY  - 2023
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/5358
AB  - The field of nanotechnology is at the forefront of a scientific revolution, where the term
“nano” transcends mere size and opens the door to enormous possibilities.
In the context of drug development, the selection of a suitable drug delivery system
(corresponding to a certain active pharmaceutical ingredient) is a pivotal decision. Accordingly,
nanosystems have emerged as a promising avenue, offering innovative solutions, and gaining
recognition for addressing healthcare issues.
While these products hold immense promise, they have faced certain complexities in their
translation from the preclinical to the clinical setting, reflected in the lack of proper assessment
protocols for quality and safety aspects and, consequently, an insufficiently defined regulatory
environment. Since the groundbreaking US Food and Drug Administration (FDA) approval of
liposomal doxorubicin in 1995, approximately 80 nanomedicine products have received regulatory
approval so far. Recent attention has gravitated toward lipid-based nanomedicines, particularly in
the development of mRNA vaccines during the COVID-19 pandemic, further highlighting their
significance. However, the relatively modest number of approved nanomedicines compared to the
extensive research efforts raises important questions and underscores areas of uncertainty.
This article provides an overview of the challenges in defining nanomedicines, their
properties, the complexities of regulatory frameworks, and the imperative for standardized
characterization protocols.
AB  - Polje nanotehnologije se nalazi na čelu naučne revolucije, gde se termin "nano" izdiže iznad pukog označavanja veličine, otvarajući vrata novim mogućnostima. U kontekstu razvoja lekova, izbor odgovarajućeg sistema za isporuku / nosača (koji odgovara određenoj aktivnoj supstanci) predstavlja ključnu odluku. U tom kontekstu, nanosistemi već određeno vreme predstavljaju inovativna rešenja. Iako farmaceutski nanosistemi nose ogroman potencijal, suočavaju se sa određenim izazovima u pogledu translacije sa prekliničkog na klinički nivo, što se ogleda u nedostatku odgovarajućih protokola za ispitivanje kvaliteta i bezbednosti i, shodno tome, nedefinisanom regulatornom okruženju. Od revolucionarnog odobrenja liposomalnog doksorubicina od strane Američke agencije za hranu i lekove 1995. godine, pa sve do danas, oko 80 nano formulacija (nanolekova) odobreno je za kliničku primenu. Odnedavno je intenzivnija pažnja usmerena ka nanoformulacijama baziranim na lipidima, što je delom posledica razvoja mRNK vakcina tokom pandemije COVID-19. Međutim, relativno skroman nastup nanolekova na tržištu (u poređenju sa obimnim istraživačkim naporima i finansijskim ulaganjima u ovu oblast) otvara važna pitanja. Ovaj rad pruža pregled izazova u definisanju nanolekova, njihovih svojstava, kompleksnosti regulatornih okvira i imperativa za stvaranje standardizovanih protokola karakterizacije.
PB  - Savez farmaceutskih udruženja Srbije
T2  - Arhiv za farmaciju
T1  - The Landscape of Nanomedicines: An Expert Perspective
T1  - "Pejzažni" prikaz nanolekova - ekspertska perspektiva
VL  - 73
IS  - 5
SP  - 390
EP  - 403
DO  - 10.5937/arhfarm73-46686
ER  - 
@article{
author = "Nikolić, Ines and Filipić, Brankica and Marija Petrović and Jordan, Olivier and Savić, Snežana and Borchard, Gerrit",
year = "2023",
abstract = "The field of nanotechnology is at the forefront of a scientific revolution, where the term
“nano” transcends mere size and opens the door to enormous possibilities.
In the context of drug development, the selection of a suitable drug delivery system
(corresponding to a certain active pharmaceutical ingredient) is a pivotal decision. Accordingly,
nanosystems have emerged as a promising avenue, offering innovative solutions, and gaining
recognition for addressing healthcare issues.
While these products hold immense promise, they have faced certain complexities in their
translation from the preclinical to the clinical setting, reflected in the lack of proper assessment
protocols for quality and safety aspects and, consequently, an insufficiently defined regulatory
environment. Since the groundbreaking US Food and Drug Administration (FDA) approval of
liposomal doxorubicin in 1995, approximately 80 nanomedicine products have received regulatory
approval so far. Recent attention has gravitated toward lipid-based nanomedicines, particularly in
the development of mRNA vaccines during the COVID-19 pandemic, further highlighting their
significance. However, the relatively modest number of approved nanomedicines compared to the
extensive research efforts raises important questions and underscores areas of uncertainty.
This article provides an overview of the challenges in defining nanomedicines, their
properties, the complexities of regulatory frameworks, and the imperative for standardized
characterization protocols., Polje nanotehnologije se nalazi na čelu naučne revolucije, gde se termin "nano" izdiže iznad pukog označavanja veličine, otvarajući vrata novim mogućnostima. U kontekstu razvoja lekova, izbor odgovarajućeg sistema za isporuku / nosača (koji odgovara određenoj aktivnoj supstanci) predstavlja ključnu odluku. U tom kontekstu, nanosistemi već određeno vreme predstavljaju inovativna rešenja. Iako farmaceutski nanosistemi nose ogroman potencijal, suočavaju se sa određenim izazovima u pogledu translacije sa prekliničkog na klinički nivo, što se ogleda u nedostatku odgovarajućih protokola za ispitivanje kvaliteta i bezbednosti i, shodno tome, nedefinisanom regulatornom okruženju. Od revolucionarnog odobrenja liposomalnog doksorubicina od strane Američke agencije za hranu i lekove 1995. godine, pa sve do danas, oko 80 nano formulacija (nanolekova) odobreno je za kliničku primenu. Odnedavno je intenzivnija pažnja usmerena ka nanoformulacijama baziranim na lipidima, što je delom posledica razvoja mRNK vakcina tokom pandemije COVID-19. Međutim, relativno skroman nastup nanolekova na tržištu (u poređenju sa obimnim istraživačkim naporima i finansijskim ulaganjima u ovu oblast) otvara važna pitanja. Ovaj rad pruža pregled izazova u definisanju nanolekova, njihovih svojstava, kompleksnosti regulatornih okvira i imperativa za stvaranje standardizovanih protokola karakterizacije.",
publisher = "Savez farmaceutskih udruženja Srbije",
journal = "Arhiv za farmaciju",
title = "The Landscape of Nanomedicines: An Expert Perspective, "Pejzažni" prikaz nanolekova - ekspertska perspektiva",
volume = "73",
number = "5",
pages = "390-403",
doi = "10.5937/arhfarm73-46686"
}
Nikolić, I., Filipić, B., Marija Petrović, Jordan, O., Savić, S.,& Borchard, G.. (2023). The Landscape of Nanomedicines: An Expert Perspective. in Arhiv za farmaciju
Savez farmaceutskih udruženja Srbije., 73(5), 390-403.
https://doi.org/10.5937/arhfarm73-46686
Nikolić I, Filipić B, Marija Petrović, Jordan O, Savić S, Borchard G. The Landscape of Nanomedicines: An Expert Perspective. in Arhiv za farmaciju. 2023;73(5):390-403.
doi:10.5937/arhfarm73-46686 .
Nikolić, Ines, Filipić, Brankica, Marija Petrović, Jordan, Olivier, Savić, Snežana, Borchard, Gerrit, "The Landscape of Nanomedicines: An Expert Perspective" in Arhiv za farmaciju, 73, no. 5 (2023):390-403,
https://doi.org/10.5937/arhfarm73-46686 . .

Navigating towards improved cytotoxicity assessment in nanomedicine development: Shifting from colorimetric to fluorescence-based assays

Nikolić, Ines; Petrović, Marija; Mitrović, Jelena; Sublet, Emmanuelle; Jordan, Oliver; Savić, Snežana; Borchard, Gerrit

(International Association of Physical Chemists, 2023)

TY  - CONF
AU  - Nikolić, Ines
AU  - Petrović, Marija
AU  - Mitrović, Jelena
AU  - Sublet, Emmanuelle
AU  - Jordan, Oliver
AU  - Savić, Snežana
AU  - Borchard, Gerrit
PY  - 2023
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/5007
AB  - It is well known that the characterization of nanomedicines can pursue different levels of complexity, both in the development stage and in the quality control process [1]. In line with physicochemical aspects, even more obstacles are encountered in biological safety assessment, while anticipation of their immunogenic potential represents an additional challenge. Moreover, interactions between the test reagents and the nanomaterial have been identified as one of the most important issues in toxicity testing that influence market authorization of nanomedicines, which ought to be resolved [1]. The European Nanomedicine Characterization Laboratory – the reference laboratory for nanomedicines, provides protocols for 2 colorimetric cytotoxicity assays employing LLC-PK1 (porcine kidney epithelial cells) and Hep-G2 (human hepatocarcinoma cells) cell lines. However, the latest recommendations in the field underline the demand for enhancing the testing procedures, while proposing incorporation of immune cells as target cell lines for toxicity evaluation, aiming to provide more reliable conclusions on nanomedicine safety in preclinical level.
In this study 2 inherently different types of pharmaceutical nanosystemes were selected: nanoemulsion (NE) and solid lipid nanoparticles (LNP) and subjected to a set of orthogonal toxicity evaluation assays. Adjusted WST-1 (assessing mitochondrial activity as an indicator of cellular well-being) and LDH (lactate dehydrogenase release evaluation as an indicator of cell membrane damage) assays have been performed as the colorimetric tests, while propidium-iodide (PI)-based assay was developed as a fluore-scent counterpart (able to directly distinguish live from dead cells), using RAW 246.7 cell line (murine macrophages – immune system cell line). Starting concentration of the tested nanoformulations was 50 % v/v, and they were subsequently diluted with the factor of 2, to create a total of 8 concentrations. Incubation time was 4 h.
Presented assays rely on completely different biological bases. Therefore, their careful combination can address some shortcomings in the in vitro evaluations established so far. Although similar toxicity trends were observed regardless the assay used, it was evident that the LDH assay required specific consideration. Since the supernatant is the subject of the analysis (not the cells directly), containing not only the enzyme of interest, but also the nanoformulations, in the wells corresponding to the 3 highest concentration of the NE/LNP pronounced scattering effects were observed. Such an event could be easily overlooked, potentially affecting the conclusions. However, it was overcome by careful design of control and blank wells (each test concentration was coupled with its own blank well containing no cells, but the same concentration of the NE/LNP in the culture medium). In contrast, absorbance measurements in WST-1 assay were performed in the absence of the NE/LNP, avoiding any interactions or scattering effects. Finally, developed PI-based assay proved to be the most relevant method. Based on the penetration of PI into the dead cell only, attaching to their DNA, the concentration of the dead vs. live cells could be directly estimated. What is more, after the incubation time, the measurements can be performed in the nanoformulation-free environment, surpas-sing the potential interactions. Notably, cell viability obtained in the PI-based assay followed the same trend as in the WST-1 assay but with significant difference in the obtained values for the first 3 concentrations (Figure 1).
PB  - International Association of Physical Chemists
C3  - 10th IAPC Meeting Tenth World Conference on Physico-Chemical Methods in Drug Discovery & Sixth World Conference on ADMET and DMPK Belgrade, Serbia, September 4-6
T1  - Navigating towards improved cytotoxicity assessment in nanomedicine development: Shifting from colorimetric to fluorescence-based assays
SP  - 21
EP  - 21
UR  - https://hdl.handle.net/21.15107/rcub_farfar_5007
ER  - 
@conference{
author = "Nikolić, Ines and Petrović, Marija and Mitrović, Jelena and Sublet, Emmanuelle and Jordan, Oliver and Savić, Snežana and Borchard, Gerrit",
year = "2023",
abstract = "It is well known that the characterization of nanomedicines can pursue different levels of complexity, both in the development stage and in the quality control process [1]. In line with physicochemical aspects, even more obstacles are encountered in biological safety assessment, while anticipation of their immunogenic potential represents an additional challenge. Moreover, interactions between the test reagents and the nanomaterial have been identified as one of the most important issues in toxicity testing that influence market authorization of nanomedicines, which ought to be resolved [1]. The European Nanomedicine Characterization Laboratory – the reference laboratory for nanomedicines, provides protocols for 2 colorimetric cytotoxicity assays employing LLC-PK1 (porcine kidney epithelial cells) and Hep-G2 (human hepatocarcinoma cells) cell lines. However, the latest recommendations in the field underline the demand for enhancing the testing procedures, while proposing incorporation of immune cells as target cell lines for toxicity evaluation, aiming to provide more reliable conclusions on nanomedicine safety in preclinical level.
In this study 2 inherently different types of pharmaceutical nanosystemes were selected: nanoemulsion (NE) and solid lipid nanoparticles (LNP) and subjected to a set of orthogonal toxicity evaluation assays. Adjusted WST-1 (assessing mitochondrial activity as an indicator of cellular well-being) and LDH (lactate dehydrogenase release evaluation as an indicator of cell membrane damage) assays have been performed as the colorimetric tests, while propidium-iodide (PI)-based assay was developed as a fluore-scent counterpart (able to directly distinguish live from dead cells), using RAW 246.7 cell line (murine macrophages – immune system cell line). Starting concentration of the tested nanoformulations was 50 % v/v, and they were subsequently diluted with the factor of 2, to create a total of 8 concentrations. Incubation time was 4 h.
Presented assays rely on completely different biological bases. Therefore, their careful combination can address some shortcomings in the in vitro evaluations established so far. Although similar toxicity trends were observed regardless the assay used, it was evident that the LDH assay required specific consideration. Since the supernatant is the subject of the analysis (not the cells directly), containing not only the enzyme of interest, but also the nanoformulations, in the wells corresponding to the 3 highest concentration of the NE/LNP pronounced scattering effects were observed. Such an event could be easily overlooked, potentially affecting the conclusions. However, it was overcome by careful design of control and blank wells (each test concentration was coupled with its own blank well containing no cells, but the same concentration of the NE/LNP in the culture medium). In contrast, absorbance measurements in WST-1 assay were performed in the absence of the NE/LNP, avoiding any interactions or scattering effects. Finally, developed PI-based assay proved to be the most relevant method. Based on the penetration of PI into the dead cell only, attaching to their DNA, the concentration of the dead vs. live cells could be directly estimated. What is more, after the incubation time, the measurements can be performed in the nanoformulation-free environment, surpas-sing the potential interactions. Notably, cell viability obtained in the PI-based assay followed the same trend as in the WST-1 assay but with significant difference in the obtained values for the first 3 concentrations (Figure 1).",
publisher = "International Association of Physical Chemists",
journal = "10th IAPC Meeting Tenth World Conference on Physico-Chemical Methods in Drug Discovery & Sixth World Conference on ADMET and DMPK Belgrade, Serbia, September 4-6",
title = "Navigating towards improved cytotoxicity assessment in nanomedicine development: Shifting from colorimetric to fluorescence-based assays",
pages = "21-21",
url = "https://hdl.handle.net/21.15107/rcub_farfar_5007"
}
Nikolić, I., Petrović, M., Mitrović, J., Sublet, E., Jordan, O., Savić, S.,& Borchard, G.. (2023). Navigating towards improved cytotoxicity assessment in nanomedicine development: Shifting from colorimetric to fluorescence-based assays. in 10th IAPC Meeting Tenth World Conference on Physico-Chemical Methods in Drug Discovery & Sixth World Conference on ADMET and DMPK Belgrade, Serbia, September 4-6
International Association of Physical Chemists., 21-21.
https://hdl.handle.net/21.15107/rcub_farfar_5007
Nikolić I, Petrović M, Mitrović J, Sublet E, Jordan O, Savić S, Borchard G. Navigating towards improved cytotoxicity assessment in nanomedicine development: Shifting from colorimetric to fluorescence-based assays. in 10th IAPC Meeting Tenth World Conference on Physico-Chemical Methods in Drug Discovery & Sixth World Conference on ADMET and DMPK Belgrade, Serbia, September 4-6. 2023;:21-21.
https://hdl.handle.net/21.15107/rcub_farfar_5007 .
Nikolić, Ines, Petrović, Marija, Mitrović, Jelena, Sublet, Emmanuelle, Jordan, Oliver, Savić, Snežana, Borchard, Gerrit, "Navigating towards improved cytotoxicity assessment in nanomedicine development: Shifting from colorimetric to fluorescence-based assays" in 10th IAPC Meeting Tenth World Conference on Physico-Chemical Methods in Drug Discovery & Sixth World Conference on ADMET and DMPK Belgrade, Serbia, September 4-6 (2023):21-21,
https://hdl.handle.net/21.15107/rcub_farfar_5007 .

Nanoparticle-Based Adjuvants and Delivery Systems for Modern Vaccines

Filipić, Brankica; Pantelić, Ivana; Nikolić, Ines; Majhen, Dragomira; Stojić-Vukanić, Zorica; Savić, Snežana; Krajišnik, Danina

(MDPI, 2023)

TY  - JOUR
AU  - Filipić, Brankica
AU  - Pantelić, Ivana
AU  - Nikolić, Ines
AU  - Majhen, Dragomira
AU  - Stojić-Vukanić, Zorica
AU  - Savić, Snežana
AU  - Krajišnik, Danina
PY  - 2023
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/4960
AB  - Ever since the development of the first vaccine, vaccination has had the great impact on global health, leading to the decrease in the burden of numerous infectious diseases. However, there is a constant need to improve existing vaccines and develop new vaccination strategies and vaccine platforms that induce a broader immune response compared to traditional vaccines. Modern vaccines tend to rely on certain nanotechnology platforms but are still expected to be readily available and easy for large-scale manufacturing and to induce a durable immune response. In this review, we present an overview of the most promising nanoadjuvants and nanoparticulate delivery systems and discuss their benefits from tehchnological and immunological standpoints as well as their objective drawbacks and possible side effects. The presented nano alums, silica and clay nanoparticles, nanoemulsions, adenoviral-vectored systems, adeno-associated viral vectors, vesicular stomatitis viral vectors, lentiviral vectors, virus-like particles (including bacteriophage-based ones) and virosomes indicate that vaccine developers can now choose different adjuvants and/or delivery systems as per the requirement, specific to combatting different infectious diseases.
PB  - MDPI
T2  - Vaccines
T1  - Nanoparticle-Based Adjuvants and Delivery Systems for Modern Vaccines
VL  - 11
IS  - 7
DO  - 10.3390/vaccines11071172
ER  - 
@article{
author = "Filipić, Brankica and Pantelić, Ivana and Nikolić, Ines and Majhen, Dragomira and Stojić-Vukanić, Zorica and Savić, Snežana and Krajišnik, Danina",
year = "2023",
abstract = "Ever since the development of the first vaccine, vaccination has had the great impact on global health, leading to the decrease in the burden of numerous infectious diseases. However, there is a constant need to improve existing vaccines and develop new vaccination strategies and vaccine platforms that induce a broader immune response compared to traditional vaccines. Modern vaccines tend to rely on certain nanotechnology platforms but are still expected to be readily available and easy for large-scale manufacturing and to induce a durable immune response. In this review, we present an overview of the most promising nanoadjuvants and nanoparticulate delivery systems and discuss their benefits from tehchnological and immunological standpoints as well as their objective drawbacks and possible side effects. The presented nano alums, silica and clay nanoparticles, nanoemulsions, adenoviral-vectored systems, adeno-associated viral vectors, vesicular stomatitis viral vectors, lentiviral vectors, virus-like particles (including bacteriophage-based ones) and virosomes indicate that vaccine developers can now choose different adjuvants and/or delivery systems as per the requirement, specific to combatting different infectious diseases.",
publisher = "MDPI",
journal = "Vaccines",
title = "Nanoparticle-Based Adjuvants and Delivery Systems for Modern Vaccines",
volume = "11",
number = "7",
doi = "10.3390/vaccines11071172"
}
Filipić, B., Pantelić, I., Nikolić, I., Majhen, D., Stojić-Vukanić, Z., Savić, S.,& Krajišnik, D.. (2023). Nanoparticle-Based Adjuvants and Delivery Systems for Modern Vaccines. in Vaccines
MDPI., 11(7).
https://doi.org/10.3390/vaccines11071172
Filipić B, Pantelić I, Nikolić I, Majhen D, Stojić-Vukanić Z, Savić S, Krajišnik D. Nanoparticle-Based Adjuvants and Delivery Systems for Modern Vaccines. in Vaccines. 2023;11(7).
doi:10.3390/vaccines11071172 .
Filipić, Brankica, Pantelić, Ivana, Nikolić, Ines, Majhen, Dragomira, Stojić-Vukanić, Zorica, Savić, Snežana, Krajišnik, Danina, "Nanoparticle-Based Adjuvants and Delivery Systems for Modern Vaccines" in Vaccines, 11, no. 7 (2023),
https://doi.org/10.3390/vaccines11071172 . .
5
5

Sizing experiments and bio-nano interactions: method matters

Nikolić, Ines; Petrović, Marija; Krupnik, Leondard; Ranđelović, Danijela; Avaro, Jonathan; Neels, Antonia; Borchard, Gerrit; Jordan, Olivier; Đoković, Jelena; Savić, Snežana

(2023)

TY  - CONF
AU  - Nikolić, Ines
AU  - Petrović, Marija
AU  - Krupnik, Leondard
AU  - Ranđelović, Danijela
AU  - Avaro, Jonathan
AU  - Neels, Antonia
AU  - Borchard, Gerrit
AU  - Jordan, Olivier
AU  - Đoković, Jelena
AU  - Savić, Snežana
PY  - 2023
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/4571
AB  - INTRODUCTION
Physicochemical properties of many active ingredients jeopardize their pharmacological activity. To overcome identified obstacles, nanosystems as carriers for delivery of actives have been recognized as promising tools. Increasing number of applications for registration of nanotechnology-enabled pharmaceuticals and many more currently in preclinical or clinical studies raised some questions not only in the field of research and development, but also for regulators. Given the complexity of nanosystems, some specific challenges have been encountered in their characterization, which have not been fully addressed despite respectable research tradition in this field.  Particle size and aggregation potential (especially in complex biological fluids) are some of the critical quality attributes of nanomedicines, being important in the context of physical stability of the colloidal system, and in terms of its safety profile and in vivo performance. Even though a bright future has been predicted for nanomedicines, some of the posted expectations have not been fully met so far. This might be reflected, at least at some points, in the certain methodological issues that commonly result in in vitro to in vivo translational gaps. This aspect underlines the importance of quality and safety assessment of nanomedicines which has also been recognized by globally leading research and regulatory bodies [1,2]. Therefore, the aim of the presented research was to perform a thorough analysis of the selected nanosystem (nanoemulsion) focusing on size estimation and particle-protein interaction applying several techniques, highlighting important factors for a reliable analysis.
METHODLOGY
Materials
As a model nanosystem, previously developed nanoemulsion was used, containing medium-chain triglycerides (Mygliol 812, Fagron) as the oil phase, combination of polysorbate 80 (Acros Organics) and soybean lecithin (Lipoid S-75, Lipoid) as stabilizes, and highly purified water as the water phase. For protein interaction assessment, human serum albumin was used (HSA, Sigma Aldrich).
Methods
Nanoemulsion preparation
Nanoemulsion was prepared via spontaneous emulsification, by dropwise addition of the mixture of the oil and stabilizers to the water phase under constant stirring. For nanoparticle-protein interaction assesment, nanoemulsion was incubated (1h, 37 °C) with HSA in the final concentration of 2.5 mg/ml. 
Sizing experiments – dynamic light scattering
Size and size distribution (per se and in biorelevant environment) were evaluated applying batch mode dynamic light scattering (DLS, Zetasizer Nano ZS90, Malvern Instruments, UK), following the NCL guidance [3]. Intensity-based average hydrodynamic diameter (Z-ave) and polydispersity index (PDI) were analysed in line with relevant parameters of the method. 
Atomic force microscopy (AFM)
Additional sizing analysis and morphological evaluation of the sample were performed applying AFM as a high-resolution technique. AFM analysis of the samples was performed by NTEGRA Prima atomic force microscope (NT-MDT, Moscow, Russia). Intermittent-contact AFM mode was applied using NT-MDT NSGO1 silicon, N-type, antimony doped cantilevers with Au reflective coating. Sample dilution corresponded to the optimal one selected for DLS, and 10 μl of the dilution was placed to the high-quality silica discs (Highest Grade V1 Mica Discs, Ted Pella Inc.) and dried in vacuum. Experiments were performed in the air, in contactless mode. Topographic images and “signal-error” images were collected, AFM images were created and analyzed with the software Image Analysis 2.2.0 (NT-MDT) and Gwyddion 2.60 (Free and Open Source software, Department of Nanometrology, Czech Metrology Institute).
Small angle X-ray scattering (SAXS)
SAXS experiments were performed with the general idea to analyze the structure of the dispersed nanodroplets more profoundly, and especially interactions in biorelevant surrounding (in contact with HSA). A laboratory X-ray setup was applied (Bruker Nanostar, Bruker AXS GmbH, Karlsruhe, Germany). Here, the Kα-line of a X-ray Cu source with a wavelength of 1.541 Å was used and further monochromated by a X-ray mirror. The beam was collimated to a beam diameter of approximately 0.4 mm using three pinholes. The sample-detector distance was set to 107 cm, which lead to a q-range of 0.07 ≤ q ≤ 2.3 nm-1. Calibration of the scattering vector q and estimation of the instrumental resolution of Δq = 0.25 nm-1 was done by measuring the first diffraction peak of a silver behenate sample. The scattered intensity was measured with an avalanche-based detector (VÅNTEC-2000, Bruker AXS). The transmitted part of the beam was determined using a home-made semi-transparent beam stop. The scattered intensity was extracted, radially averaged and integrated over all q-values using the Bruker software DIF-FRAC.EVA (Bruker AXS, version 4.1). The 1D data was transmission corrected and then background subtracted from the scattering of the solvent and the capillary using Matlab 2022.
RESULTS AND DISCUSSION
When applying DLS, as a preliminary technique, primary attention was put on the selection of optimal dilution level for the measurement, analyzing attenuation factor, count rate and intercept of the correlation function in different dilution ratios and with different dilution media (water, PBS 7.4 and 10 mM NaCl), and dilution 1:100 (v/v) was marked as the optimal one. However, significant differences in obtained nanodroplet size was observed depending on the type of medium. When water was used as a dilution medium, significantly higher Z-ave values were obtained (83.71±0.86 nm) compared to the situations where PBS 7.4 (73.50±0.75nm) or 10 mM NaCl (76.59±0.50nm) were used as dilution medium, indicating how sample preparation protocol might be crucial. Even though DLS was not sensitive enough to detect any interaction with HSA (no significant difference in terms of Z-ave and PDI compared to the results obtained in the same dilution medium without HSA), AFM captured qualitative difference in the droplet topography (Figure 1), raising ides on nanoemulsion interfacial interaction with HSA and increased aggregation potential. Further on, SAXS confirmed the existence of a bilayer structure as indicated by a prominent correlation peak at around 1 nm-1, which corresponds to a bilayer thickness of around 6.2 nm. SAXS (Figure 2; probably corresponding to the lecithin formations at the interface). It may be assumed that the bilayer structure changes its structure when mixed with HSA. 
CONCLUSION
In this research, it has been demonstrated how important is to carefully select measurement conditions even for DLS -commonly used and the only standardized methods, in order to keep the measurements meaningful. Further on, not every method is capable of detecting some specific bio-nano interactions. Aiming to generate reliable datasets, condition sine qua non is to perform complementary techniques with increasing complexity. Further experimental segments should cover additional evaluation (e.g. analytical ultracentrifugation, thermal analysis, interfacial properties assessment, electron microscopy) that would shed light on bio-nano interactions important for in vivo fate of the nanosystems.
C3  - 4th European Conference on Pharmaceutics, 20 - 21 March 2023, Marseille, France
T1  - Sizing experiments and bio-nano interactions: method matters
UR  - https://hdl.handle.net/21.15107/rcub_farfar_4571
ER  - 
@conference{
author = "Nikolić, Ines and Petrović, Marija and Krupnik, Leondard and Ranđelović, Danijela and Avaro, Jonathan and Neels, Antonia and Borchard, Gerrit and Jordan, Olivier and Đoković, Jelena and Savić, Snežana",
year = "2023",
abstract = "INTRODUCTION
Physicochemical properties of many active ingredients jeopardize their pharmacological activity. To overcome identified obstacles, nanosystems as carriers for delivery of actives have been recognized as promising tools. Increasing number of applications for registration of nanotechnology-enabled pharmaceuticals and many more currently in preclinical or clinical studies raised some questions not only in the field of research and development, but also for regulators. Given the complexity of nanosystems, some specific challenges have been encountered in their characterization, which have not been fully addressed despite respectable research tradition in this field.  Particle size and aggregation potential (especially in complex biological fluids) are some of the critical quality attributes of nanomedicines, being important in the context of physical stability of the colloidal system, and in terms of its safety profile and in vivo performance. Even though a bright future has been predicted for nanomedicines, some of the posted expectations have not been fully met so far. This might be reflected, at least at some points, in the certain methodological issues that commonly result in in vitro to in vivo translational gaps. This aspect underlines the importance of quality and safety assessment of nanomedicines which has also been recognized by globally leading research and regulatory bodies [1,2]. Therefore, the aim of the presented research was to perform a thorough analysis of the selected nanosystem (nanoemulsion) focusing on size estimation and particle-protein interaction applying several techniques, highlighting important factors for a reliable analysis.
METHODLOGY
Materials
As a model nanosystem, previously developed nanoemulsion was used, containing medium-chain triglycerides (Mygliol 812, Fagron) as the oil phase, combination of polysorbate 80 (Acros Organics) and soybean lecithin (Lipoid S-75, Lipoid) as stabilizes, and highly purified water as the water phase. For protein interaction assessment, human serum albumin was used (HSA, Sigma Aldrich).
Methods
Nanoemulsion preparation
Nanoemulsion was prepared via spontaneous emulsification, by dropwise addition of the mixture of the oil and stabilizers to the water phase under constant stirring. For nanoparticle-protein interaction assesment, nanoemulsion was incubated (1h, 37 °C) with HSA in the final concentration of 2.5 mg/ml. 
Sizing experiments – dynamic light scattering
Size and size distribution (per se and in biorelevant environment) were evaluated applying batch mode dynamic light scattering (DLS, Zetasizer Nano ZS90, Malvern Instruments, UK), following the NCL guidance [3]. Intensity-based average hydrodynamic diameter (Z-ave) and polydispersity index (PDI) were analysed in line with relevant parameters of the method. 
Atomic force microscopy (AFM)
Additional sizing analysis and morphological evaluation of the sample were performed applying AFM as a high-resolution technique. AFM analysis of the samples was performed by NTEGRA Prima atomic force microscope (NT-MDT, Moscow, Russia). Intermittent-contact AFM mode was applied using NT-MDT NSGO1 silicon, N-type, antimony doped cantilevers with Au reflective coating. Sample dilution corresponded to the optimal one selected for DLS, and 10 μl of the dilution was placed to the high-quality silica discs (Highest Grade V1 Mica Discs, Ted Pella Inc.) and dried in vacuum. Experiments were performed in the air, in contactless mode. Topographic images and “signal-error” images were collected, AFM images were created and analyzed with the software Image Analysis 2.2.0 (NT-MDT) and Gwyddion 2.60 (Free and Open Source software, Department of Nanometrology, Czech Metrology Institute).
Small angle X-ray scattering (SAXS)
SAXS experiments were performed with the general idea to analyze the structure of the dispersed nanodroplets more profoundly, and especially interactions in biorelevant surrounding (in contact with HSA). A laboratory X-ray setup was applied (Bruker Nanostar, Bruker AXS GmbH, Karlsruhe, Germany). Here, the Kα-line of a X-ray Cu source with a wavelength of 1.541 Å was used and further monochromated by a X-ray mirror. The beam was collimated to a beam diameter of approximately 0.4 mm using three pinholes. The sample-detector distance was set to 107 cm, which lead to a q-range of 0.07 ≤ q ≤ 2.3 nm-1. Calibration of the scattering vector q and estimation of the instrumental resolution of Δq = 0.25 nm-1 was done by measuring the first diffraction peak of a silver behenate sample. The scattered intensity was measured with an avalanche-based detector (VÅNTEC-2000, Bruker AXS). The transmitted part of the beam was determined using a home-made semi-transparent beam stop. The scattered intensity was extracted, radially averaged and integrated over all q-values using the Bruker software DIF-FRAC.EVA (Bruker AXS, version 4.1). The 1D data was transmission corrected and then background subtracted from the scattering of the solvent and the capillary using Matlab 2022.
RESULTS AND DISCUSSION
When applying DLS, as a preliminary technique, primary attention was put on the selection of optimal dilution level for the measurement, analyzing attenuation factor, count rate and intercept of the correlation function in different dilution ratios and with different dilution media (water, PBS 7.4 and 10 mM NaCl), and dilution 1:100 (v/v) was marked as the optimal one. However, significant differences in obtained nanodroplet size was observed depending on the type of medium. When water was used as a dilution medium, significantly higher Z-ave values were obtained (83.71±0.86 nm) compared to the situations where PBS 7.4 (73.50±0.75nm) or 10 mM NaCl (76.59±0.50nm) were used as dilution medium, indicating how sample preparation protocol might be crucial. Even though DLS was not sensitive enough to detect any interaction with HSA (no significant difference in terms of Z-ave and PDI compared to the results obtained in the same dilution medium without HSA), AFM captured qualitative difference in the droplet topography (Figure 1), raising ides on nanoemulsion interfacial interaction with HSA and increased aggregation potential. Further on, SAXS confirmed the existence of a bilayer structure as indicated by a prominent correlation peak at around 1 nm-1, which corresponds to a bilayer thickness of around 6.2 nm. SAXS (Figure 2; probably corresponding to the lecithin formations at the interface). It may be assumed that the bilayer structure changes its structure when mixed with HSA. 
CONCLUSION
In this research, it has been demonstrated how important is to carefully select measurement conditions even for DLS -commonly used and the only standardized methods, in order to keep the measurements meaningful. Further on, not every method is capable of detecting some specific bio-nano interactions. Aiming to generate reliable datasets, condition sine qua non is to perform complementary techniques with increasing complexity. Further experimental segments should cover additional evaluation (e.g. analytical ultracentrifugation, thermal analysis, interfacial properties assessment, electron microscopy) that would shed light on bio-nano interactions important for in vivo fate of the nanosystems.",
journal = "4th European Conference on Pharmaceutics, 20 - 21 March 2023, Marseille, France",
title = "Sizing experiments and bio-nano interactions: method matters",
url = "https://hdl.handle.net/21.15107/rcub_farfar_4571"
}
Nikolić, I., Petrović, M., Krupnik, L., Ranđelović, D., Avaro, J., Neels, A., Borchard, G., Jordan, O., Đoković, J.,& Savić, S.. (2023). Sizing experiments and bio-nano interactions: method matters. in 4th European Conference on Pharmaceutics, 20 - 21 March 2023, Marseille, France.
https://hdl.handle.net/21.15107/rcub_farfar_4571
Nikolić I, Petrović M, Krupnik L, Ranđelović D, Avaro J, Neels A, Borchard G, Jordan O, Đoković J, Savić S. Sizing experiments and bio-nano interactions: method matters. in 4th European Conference on Pharmaceutics, 20 - 21 March 2023, Marseille, France. 2023;.
https://hdl.handle.net/21.15107/rcub_farfar_4571 .
Nikolić, Ines, Petrović, Marija, Krupnik, Leondard, Ranđelović, Danijela, Avaro, Jonathan, Neels, Antonia, Borchard, Gerrit, Jordan, Olivier, Đoković, Jelena, Savić, Snežana, "Sizing experiments and bio-nano interactions: method matters" in 4th European Conference on Pharmaceutics, 20 - 21 March 2023, Marseille, France (2023),
https://hdl.handle.net/21.15107/rcub_farfar_4571 .

Investigation of albumin adsorption on DK-I-56-1 nanocrystals by dynamic light scattering

Mitrović, Jelena; Knutson, Daniel; Nikolić, Ines; Cook, James; Savić, Miroslav; Savić, Snežana

(2022)

TY  - CONF
AU  - Mitrović, Jelena
AU  - Knutson, Daniel
AU  - Nikolić, Ines
AU  - Cook, James
AU  - Savić, Miroslav
AU  - Savić, Snežana
PY  - 2022
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/4285
AB  - After parenteral administration, nanoparticles interact with different proteins,
forming a shell called corona, which further influence nanoparticles’ biodistribution. Protein
adsorption is affected by particle size and shape, but also by molecular interactions of
chemical groups from the particle surface and amino-acid residues of the proteins. In human
plasma, albumin is the most abundant protein so it is frequently used for the investigation of
protein-nanoparticle interactions (1). In this study we investigated the attachment of bovine
serum albumin (BSA) to recently developed nanocrystals (2) of DK-I-56-1 (7-methoxy-2-
(4-methoxy-d3-phenyl)-2,5-dihydro-3H-pyrazolo[4,3-c]quinolin-3-one), stabilized by
polysorbate 80 (NS2) or the combination of polysorbate 80 and poloxamer 407 (NS4).
Nanocrystal dispersion was incubated in medium containing 0.1% or 1% BSA in phosphate
buffer saline (pH 7,4) at 37 °C for 1 h. Particle size analysis was conducted by dynamic light
scattering in 10 min interval, at 37 °C on Zetasizer ZS90 (Malvern Instruments Ltd.,
Worcestershire, UK). It was shown that albumin adsorption was influenced by the
nanocrystal formulation and albumin concentration, but not incubation time. In a medium
with 0.1% BSA, no particle size difference was noticed in either formulation. However, in
case of NS2, after the addition of 1% albumin, particle size and particle size distribution
increased, which indicated albumin binding. On the other hand, in formulation NS4, with
higher albumin concentration two peaks were visible, one from the free albumin, and one
from nanocrystal particles. Therefore, it could be concluded that the affinity of albumin was
influenced mainly by the interaction with the nanocrystal stabilizers.
C3  - 8. Kongres farmaceuta Srbije; 12.-15. oktobar, Beograd, Srbija
T1  - Investigation of albumin adsorption on DK-I-56-1 nanocrystals by dynamic light scattering
UR  - https://hdl.handle.net/21.15107/rcub_farfar_4285
ER  - 
@conference{
author = "Mitrović, Jelena and Knutson, Daniel and Nikolić, Ines and Cook, James and Savić, Miroslav and Savić, Snežana",
year = "2022",
abstract = "After parenteral administration, nanoparticles interact with different proteins,
forming a shell called corona, which further influence nanoparticles’ biodistribution. Protein
adsorption is affected by particle size and shape, but also by molecular interactions of
chemical groups from the particle surface and amino-acid residues of the proteins. In human
plasma, albumin is the most abundant protein so it is frequently used for the investigation of
protein-nanoparticle interactions (1). In this study we investigated the attachment of bovine
serum albumin (BSA) to recently developed nanocrystals (2) of DK-I-56-1 (7-methoxy-2-
(4-methoxy-d3-phenyl)-2,5-dihydro-3H-pyrazolo[4,3-c]quinolin-3-one), stabilized by
polysorbate 80 (NS2) or the combination of polysorbate 80 and poloxamer 407 (NS4).
Nanocrystal dispersion was incubated in medium containing 0.1% or 1% BSA in phosphate
buffer saline (pH 7,4) at 37 °C for 1 h. Particle size analysis was conducted by dynamic light
scattering in 10 min interval, at 37 °C on Zetasizer ZS90 (Malvern Instruments Ltd.,
Worcestershire, UK). It was shown that albumin adsorption was influenced by the
nanocrystal formulation and albumin concentration, but not incubation time. In a medium
with 0.1% BSA, no particle size difference was noticed in either formulation. However, in
case of NS2, after the addition of 1% albumin, particle size and particle size distribution
increased, which indicated albumin binding. On the other hand, in formulation NS4, with
higher albumin concentration two peaks were visible, one from the free albumin, and one
from nanocrystal particles. Therefore, it could be concluded that the affinity of albumin was
influenced mainly by the interaction with the nanocrystal stabilizers.",
journal = "8. Kongres farmaceuta Srbije; 12.-15. oktobar, Beograd, Srbija",
title = "Investigation of albumin adsorption on DK-I-56-1 nanocrystals by dynamic light scattering",
url = "https://hdl.handle.net/21.15107/rcub_farfar_4285"
}
Mitrović, J., Knutson, D., Nikolić, I., Cook, J., Savić, M.,& Savić, S.. (2022). Investigation of albumin adsorption on DK-I-56-1 nanocrystals by dynamic light scattering. in 8. Kongres farmaceuta Srbije; 12.-15. oktobar, Beograd, Srbija.
https://hdl.handle.net/21.15107/rcub_farfar_4285
Mitrović J, Knutson D, Nikolić I, Cook J, Savić M, Savić S. Investigation of albumin adsorption on DK-I-56-1 nanocrystals by dynamic light scattering. in 8. Kongres farmaceuta Srbije; 12.-15. oktobar, Beograd, Srbija. 2022;.
https://hdl.handle.net/21.15107/rcub_farfar_4285 .
Mitrović, Jelena, Knutson, Daniel, Nikolić, Ines, Cook, James, Savić, Miroslav, Savić, Snežana, "Investigation of albumin adsorption on DK-I-56-1 nanocrystals by dynamic light scattering" in 8. Kongres farmaceuta Srbije; 12.-15. oktobar, Beograd, Srbija (2022),
https://hdl.handle.net/21.15107/rcub_farfar_4285 .

Coupling AFM, DSC and FT-IR towards Elucidation of Film-Forming Systems Transformation to Dermal Films: A Betamethasone Dipropionate Case Study

Timotijević, Mirjana; Ilić, Tanja; Marković, Bojan; Ranđelović, Danijela; Cekić, Nebojša; Nikolić, Ines; Savić, Snežana; Pantelić, Ivana

(MDPI, 2022)

TY  - JOUR
AU  - Timotijević, Mirjana
AU  - Ilić, Tanja
AU  - Marković, Bojan
AU  - Ranđelović, Danijela
AU  - Cekić, Nebojša
AU  - Nikolić, Ines
AU  - Savić, Snežana
AU  - Pantelić, Ivana
PY  - 2022
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/4169
AB  - Polymeric film-forming systems have emerged as an esthetically acceptable option for targeted, less frequent and controlled dermal drug delivery. However, their dynamic nature (rapid evaporation of solvents leading to the formation of thin films) presents a true characterization chal- lenge. In this study, we tested a tiered characterization approach, leading to more efficient definition of the quality target product profiles of film-forming systems. After assessing a number of physico- chemico-mechanical properties, thermal, spectroscopic and microscopic techniques were introduced. Final confirmation of betamethasone dipropionate-loaded FFS biopharmaceutical properties was sought via an in vitro skin permeation study. A number of applied characterization methods showed complementarity. The sample based on a combination of hydrophobic Eudragit® RS PO and hy- droxypropyl cellulose showed higher viscosity (47.17 ± 3.06 mPa·s) and film thickness, resulting in sustained skin permeation (permeation rate of 0.348 ± 0.157 ng/cm2 h), and even the pH of the sample with Eudragit® NE 30D, along with higher surface roughness and thermal analysis, implied its immediate delivery through the epidermal membrane. Therefore, this study revealed the utility of several methods able to refine the number of needed tests within the final product profile.
PB  - MDPI
T2  - International Journal of Molecular Sciences
T1  - Coupling AFM, DSC and FT-IR towards Elucidation of Film-Forming Systems Transformation to Dermal Films: A Betamethasone Dipropionate Case Study
VL  - 23
IS  - 11
DO  - 10.3390/ijms23116013
ER  - 
@article{
author = "Timotijević, Mirjana and Ilić, Tanja and Marković, Bojan and Ranđelović, Danijela and Cekić, Nebojša and Nikolić, Ines and Savić, Snežana and Pantelić, Ivana",
year = "2022",
abstract = "Polymeric film-forming systems have emerged as an esthetically acceptable option for targeted, less frequent and controlled dermal drug delivery. However, their dynamic nature (rapid evaporation of solvents leading to the formation of thin films) presents a true characterization chal- lenge. In this study, we tested a tiered characterization approach, leading to more efficient definition of the quality target product profiles of film-forming systems. After assessing a number of physico- chemico-mechanical properties, thermal, spectroscopic and microscopic techniques were introduced. Final confirmation of betamethasone dipropionate-loaded FFS biopharmaceutical properties was sought via an in vitro skin permeation study. A number of applied characterization methods showed complementarity. The sample based on a combination of hydrophobic Eudragit® RS PO and hy- droxypropyl cellulose showed higher viscosity (47.17 ± 3.06 mPa·s) and film thickness, resulting in sustained skin permeation (permeation rate of 0.348 ± 0.157 ng/cm2 h), and even the pH of the sample with Eudragit® NE 30D, along with higher surface roughness and thermal analysis, implied its immediate delivery through the epidermal membrane. Therefore, this study revealed the utility of several methods able to refine the number of needed tests within the final product profile.",
publisher = "MDPI",
journal = "International Journal of Molecular Sciences",
title = "Coupling AFM, DSC and FT-IR towards Elucidation of Film-Forming Systems Transformation to Dermal Films: A Betamethasone Dipropionate Case Study",
volume = "23",
number = "11",
doi = "10.3390/ijms23116013"
}
Timotijević, M., Ilić, T., Marković, B., Ranđelović, D., Cekić, N., Nikolić, I., Savić, S.,& Pantelić, I.. (2022). Coupling AFM, DSC and FT-IR towards Elucidation of Film-Forming Systems Transformation to Dermal Films: A Betamethasone Dipropionate Case Study. in International Journal of Molecular Sciences
MDPI., 23(11).
https://doi.org/10.3390/ijms23116013
Timotijević M, Ilić T, Marković B, Ranđelović D, Cekić N, Nikolić I, Savić S, Pantelić I. Coupling AFM, DSC and FT-IR towards Elucidation of Film-Forming Systems Transformation to Dermal Films: A Betamethasone Dipropionate Case Study. in International Journal of Molecular Sciences. 2022;23(11).
doi:10.3390/ijms23116013 .
Timotijević, Mirjana, Ilić, Tanja, Marković, Bojan, Ranđelović, Danijela, Cekić, Nebojša, Nikolić, Ines, Savić, Snežana, Pantelić, Ivana, "Coupling AFM, DSC and FT-IR towards Elucidation of Film-Forming Systems Transformation to Dermal Films: A Betamethasone Dipropionate Case Study" in International Journal of Molecular Sciences, 23, no. 11 (2022),
https://doi.org/10.3390/ijms23116013 . .
1
1

Lipid nanoparticles employed in mRNA-based COVID-19 vaccines: An overview of materials and processes used for development and production

Pantelić, Ivana; Ilić, Tanja; Nikolić, Ines; Savić, Snežana

(Savez farmaceutskih udruženja Srbije, Beograd, 2022)

TY  - JOUR
AU  - Pantelić, Ivana
AU  - Ilić, Tanja
AU  - Nikolić, Ines
AU  - Savić, Snežana
PY  - 2022
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/4106
AB  - In the light of the recommended application of the third dose, both public and professional community would benefit from a detailed repor t on the technological advances behind the developed messenger ribonucleic acid (mRNA) based COVID-19 vaccines. Although many vaccine developers are yet to reveal their precise formulations, it is apparent they are founded on nanotechnology platforms similar to the one successfully used for registered drug Onpattro TM (INN: patisiran). Optimal encapsulation of mR NA requires the presence of four lipids: an ionizable cationic lipid, a polyethylene-glycol (PEG)-lipid, a neutral phospholipid and cholesterol. Together with other excipients (mainly buffers, osmolytes and cryoprotectives), they enable the formation of lipid nanoparticles (LNPs) using rapid-mixing microfluidic or T-junction systems. However, some limitations of thermo stability testing protocols, coupled with the companies’ more or less cautious approach to predicting vaccine stability, led to rigorous storage conditions: -15° to -25°C or even -60° to -80°C. Nevertheless, some inventors recently announced their mRNA-LNP based vaccine candidates to be stable at both 25° and 37°C for a week. Within the formulation design space, further optimizati on of the ionizable lipids should be expected, especially in the direction of increasing their branching and optimizing pKa values, ultimately leading to the second generation of mRNA-LNP COVID-19 vaccines.
AB  - U susret preporučenoj tre ćoj dozi, razumevanje tehnološkog napretka koji je doveo do razvoja vakcina na bazi informacione ribonukleinske kiseline (iRNK) od interesa je kako stručne tako i šire javnosti. Iako mnoge kompanije koje stoje iza razvoja ovih vakcina još uvek nisu učinile dostupnim podatke o formulaciji, o čigledno je da se dominantno oslanjaju na nanotehnološke platforme slične onoj uspešno primenjenoj za registrovani lek OnpattroTM (INN: patisiran). Zadovoljavaju ća inkapsulacija iRNK zahteva prisustvo četiri lipida: jonizujućeg katjonskog lipida, PEGilovanog lipida, neutralnog fosfolipida i holesterola. Zajedno sa ostalim ekscipijensima (puferima, sredstvima za podešavanje toni čnosti i krioprotektantima), pažljivo odabrani lipidi omogućavaju obrazovanje lipidnih nanočestica (LNPs) mikrofluidnim ili T- junction tehnikama mešanja velike brzine. Me đutim, odre đena ograni čenja u primenjenim protokolima procene stabilnosti vakcina, zajedno sa povećanim oprezom kompanija od kojih se željno očekivalo plasiranje vakcina na tržište, dovelo je do rigoroznih uslova čuvanja: -15° do - 25°C ili čak -60° do -80°C. Ipak, pojedine kompanije izveštavaju o zadovoljavajućoj stabilnosti svojih iRNK-LNP vakcina kako na 25°, tako i na 37°C tokom ne delju dana. Dalji formulacioni razvoj će svakako obuhvatiti optimizaciju jonizuju ćih lipida, naročito u smeru pove ćanja broja bočnih lanaca i podešavanja pKa vrednosti, te dovesti do pojave tzv. drugegeneracije iRNK-LNP vakcina za prevenciju COVID-19.
PB  - Savez farmaceutskih udruženja Srbije, Beograd
T2  - Arhiv za farmaciju
T1  - Lipid nanoparticles employed in mRNA-based COVID-19 vaccines: An overview of materials and processes used for development and production
T1  - Lipidne nanočestice u vakcinama za prevenciju
COVID-19 zasnovanih na iRNK: pregled materijala
i procesa primenjenih tokom razvoja i proizvodnje
VL  - 72
IS  - 1
SP  - 20
EP  - 35
DO  - 10.5937/arhfarm72‐33660
ER  - 
@article{
author = "Pantelić, Ivana and Ilić, Tanja and Nikolić, Ines and Savić, Snežana",
year = "2022",
abstract = "In the light of the recommended application of the third dose, both public and professional community would benefit from a detailed repor t on the technological advances behind the developed messenger ribonucleic acid (mRNA) based COVID-19 vaccines. Although many vaccine developers are yet to reveal their precise formulations, it is apparent they are founded on nanotechnology platforms similar to the one successfully used for registered drug Onpattro TM (INN: patisiran). Optimal encapsulation of mR NA requires the presence of four lipids: an ionizable cationic lipid, a polyethylene-glycol (PEG)-lipid, a neutral phospholipid and cholesterol. Together with other excipients (mainly buffers, osmolytes and cryoprotectives), they enable the formation of lipid nanoparticles (LNPs) using rapid-mixing microfluidic or T-junction systems. However, some limitations of thermo stability testing protocols, coupled with the companies’ more or less cautious approach to predicting vaccine stability, led to rigorous storage conditions: -15° to -25°C or even -60° to -80°C. Nevertheless, some inventors recently announced their mRNA-LNP based vaccine candidates to be stable at both 25° and 37°C for a week. Within the formulation design space, further optimizati on of the ionizable lipids should be expected, especially in the direction of increasing their branching and optimizing pKa values, ultimately leading to the second generation of mRNA-LNP COVID-19 vaccines., U susret preporučenoj tre ćoj dozi, razumevanje tehnološkog napretka koji je doveo do razvoja vakcina na bazi informacione ribonukleinske kiseline (iRNK) od interesa je kako stručne tako i šire javnosti. Iako mnoge kompanije koje stoje iza razvoja ovih vakcina još uvek nisu učinile dostupnim podatke o formulaciji, o čigledno je da se dominantno oslanjaju na nanotehnološke platforme slične onoj uspešno primenjenoj za registrovani lek OnpattroTM (INN: patisiran). Zadovoljavaju ća inkapsulacija iRNK zahteva prisustvo četiri lipida: jonizujućeg katjonskog lipida, PEGilovanog lipida, neutralnog fosfolipida i holesterola. Zajedno sa ostalim ekscipijensima (puferima, sredstvima za podešavanje toni čnosti i krioprotektantima), pažljivo odabrani lipidi omogućavaju obrazovanje lipidnih nanočestica (LNPs) mikrofluidnim ili T- junction tehnikama mešanja velike brzine. Me đutim, odre đena ograni čenja u primenjenim protokolima procene stabilnosti vakcina, zajedno sa povećanim oprezom kompanija od kojih se željno očekivalo plasiranje vakcina na tržište, dovelo je do rigoroznih uslova čuvanja: -15° do - 25°C ili čak -60° do -80°C. Ipak, pojedine kompanije izveštavaju o zadovoljavajućoj stabilnosti svojih iRNK-LNP vakcina kako na 25°, tako i na 37°C tokom ne delju dana. Dalji formulacioni razvoj će svakako obuhvatiti optimizaciju jonizuju ćih lipida, naročito u smeru pove ćanja broja bočnih lanaca i podešavanja pKa vrednosti, te dovesti do pojave tzv. drugegeneracije iRNK-LNP vakcina za prevenciju COVID-19.",
publisher = "Savez farmaceutskih udruženja Srbije, Beograd",
journal = "Arhiv za farmaciju",
title = "Lipid nanoparticles employed in mRNA-based COVID-19 vaccines: An overview of materials and processes used for development and production, Lipidne nanočestice u vakcinama za prevenciju
COVID-19 zasnovanih na iRNK: pregled materijala
i procesa primenjenih tokom razvoja i proizvodnje",
volume = "72",
number = "1",
pages = "20-35",
doi = "10.5937/arhfarm72‐33660"
}
Pantelić, I., Ilić, T., Nikolić, I.,& Savić, S.. (2022). Lipid nanoparticles employed in mRNA-based COVID-19 vaccines: An overview of materials and processes used for development and production. in Arhiv za farmaciju
Savez farmaceutskih udruženja Srbije, Beograd., 72(1), 20-35.
https://doi.org/10.5937/arhfarm72‐33660
Pantelić I, Ilić T, Nikolić I, Savić S. Lipid nanoparticles employed in mRNA-based COVID-19 vaccines: An overview of materials and processes used for development and production. in Arhiv za farmaciju. 2022;72(1):20-35.
doi:10.5937/arhfarm72‐33660 .
Pantelić, Ivana, Ilić, Tanja, Nikolić, Ines, Savić, Snežana, "Lipid nanoparticles employed in mRNA-based COVID-19 vaccines: An overview of materials and processes used for development and production" in Arhiv za farmaciju, 72, no. 1 (2022):20-35,
https://doi.org/10.5937/arhfarm72‐33660 . .
3

Spontanoemulgujuće nanoemulzije za primenu kurkumina na koži: istraživanje uticaja međufaznih fenomena u koloidnom sistemu na efikasnost isporuke i biološku aktivnost

Nikolić, Ines

(Универзитет у Београду, Фармацеутски факултет, 2022)

TY  - THES
AU  - Nikolić, Ines
PY  - 2022
UR  - https://eteze.bg.ac.rs/application/showtheses?thesesId=9057
UR  - https://fedorabg.bg.ac.rs/fedora/get/o:29064/bdef:Content/download
UR  - https://plus.cobiss.net/cobiss/sr/sr/bib/70786313
UR  - https://nardus.mpn.gov.rs/handle/123456789/21384
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/4834
AB  - U kontekstu biomedicinske primene, u poslednjih nekoliko decenija svedočimo svojevrsnojrenesansi koloidne nauke, što je verovatno posledica ekspanzije nanotehnologije i njene primene udomenu isporuke lekove, sa visoko postavljenim očekivanjima.Oslanjajući se na aktuelni trend istraživanja različitih nanonosača za isporuku aktivnih supstanci,cilj istraživanja ove doktorske disertacije bio je razvoj niskoenergetskih nanoemulzija zaunapređenu dermalnu isporuku kurkumina (model aktivne supstance), uz razumevanje složenihinterakcija koje su u osnovi nastanka ovih koloidnih sistema. Razmatrani su i određeni aspekatifizičkih i hemijskih modaliteta za poboljšanje isporuke aktivnih supstanci u/kroz kožu, sa idejom dase dizajnira prototip inovativnog adhezivnog flastera za dermalnu primenu koji će biti baziran nakombinaciji primene električne energije (kao fizičke metode za poboljšanje dermalneraspoloživosti), i nanoemulzija (naprednih nosača sa nanostrukturom).Kao rezultat eksperimentalnog rada, razvijene su visokobezbedne niskoenergetske nanoemulzijestabilisane kombinacijom polisorbata 80 i lecitina soje, sa trigliceridima srednje dužine lanca kaomasnom fazom, odnosno njihovom kombinacijom sa eukaliptolom ili pinenom (kao hemijskimpojačivačima penetracije). Primenom niza komplementarnih tehnika, detaljno su okarakterisane udomenu mikrostrukture, oblika, veličine i morfologije dispergovane faze, fizičke stabilnosti,bezbednosti primene i pogodnosti za očuvanje hemijske stabilnosti model aktivne supstance, što jebilo praćeno relevantnim biološkim i biofarmaceutskim ispitivanjima. Na samom kraju, pokazana jesuperiornonst primene adhezivnog sistema za jontoforezu u kombinaciji sa nanoemulzijom kaoinovativnog načina za dermalnu isporuku aktivnih supstanci.Kao najveći fundamentalni naučni doprinos ove doktorske disertacije može se smatrati analizafenomena na granici faza, otkrivanje doprinosa različitih ekscipijenasa koloidnoj stabilnosti, iproširenje savremene teorije o stabilizaciji nanoemulzija.
AB  - In the context of biomedical application, in the last few decades there has been a kind ofrenaissance of colloidal science, which is probably a consequence of the expansion ofnanotechnology and its application in the field of drug delivery, with highly posted expectations.Relying on the current research trend focused on different nanocarriers for the delivery of activepharmaceutical ingredients, the aim of this doctoral dissertation was to develop low-energynanoemulsions for improved dermal delivery of curcumin (a model active ingredient), with anunderstanding of the complex interactions that underlie the formation of these colloidal systems.Certain aspects of physical and chemical modalities for improvement of dermal drug deliveryinto/through the skin were considered, with the idea of designing a prototype of an innovativeadhesive patch for dermal application that will be based on a combination of electricity (as aphysical methods to improve dermal delivery), and nanoemulsions (advanced nanostructuredcarriers).The research resulted in the formation of highly safe low-energy nanoemulsions stabilized by acombination of polysorbate 80 and soybean lecithin, with medium-chain triglycerides as the oilphase, or their combination with eucalyptol or pinene (as chemical penetration enhancers). Using anumber of complementary techniques, they were thoroughly characterized in the context ofmicrostructure, shape, size and morphology of the dispersed phase, physical stability, safety andsuitability for maintaining chemical stability of the active ingredient, which was followed byrelevant biological and biopharmaceutical studies. Finally, the superiority of the application of theadhesive system for iontophoresis in combination with nanoemulsion as an innovative way fordermal delivery of active molecules has been shown.Extending the modern theory of nanoemulsion stabilization through the analysis of the interfacialphenomena, as well as the discovery of the contribution of various excipients to colloidal stability,could be considered as the most important scientific contributions of this doctoral dissertation.
PB  - Универзитет у Београду, Фармацеутски факултет
T2  - Универзитет у Београду
T1  - Spontanoemulgujuće nanoemulzije za primenu kurkumina na koži: istraživanje uticaja međufaznih fenomena u koloidnom sistemu na efikasnost isporuke i biološku aktivnost
UR  - https://hdl.handle.net/21.15107/rcub_nardus_21384
ER  - 
@phdthesis{
author = "Nikolić, Ines",
year = "2022",
abstract = "U kontekstu biomedicinske primene, u poslednjih nekoliko decenija svedočimo svojevrsnojrenesansi koloidne nauke, što je verovatno posledica ekspanzije nanotehnologije i njene primene udomenu isporuke lekove, sa visoko postavljenim očekivanjima.Oslanjajući se na aktuelni trend istraživanja različitih nanonosača za isporuku aktivnih supstanci,cilj istraživanja ove doktorske disertacije bio je razvoj niskoenergetskih nanoemulzija zaunapređenu dermalnu isporuku kurkumina (model aktivne supstance), uz razumevanje složenihinterakcija koje su u osnovi nastanka ovih koloidnih sistema. Razmatrani su i određeni aspekatifizičkih i hemijskih modaliteta za poboljšanje isporuke aktivnih supstanci u/kroz kožu, sa idejom dase dizajnira prototip inovativnog adhezivnog flastera za dermalnu primenu koji će biti baziran nakombinaciji primene električne energije (kao fizičke metode za poboljšanje dermalneraspoloživosti), i nanoemulzija (naprednih nosača sa nanostrukturom).Kao rezultat eksperimentalnog rada, razvijene su visokobezbedne niskoenergetske nanoemulzijestabilisane kombinacijom polisorbata 80 i lecitina soje, sa trigliceridima srednje dužine lanca kaomasnom fazom, odnosno njihovom kombinacijom sa eukaliptolom ili pinenom (kao hemijskimpojačivačima penetracije). Primenom niza komplementarnih tehnika, detaljno su okarakterisane udomenu mikrostrukture, oblika, veličine i morfologije dispergovane faze, fizičke stabilnosti,bezbednosti primene i pogodnosti za očuvanje hemijske stabilnosti model aktivne supstance, što jebilo praćeno relevantnim biološkim i biofarmaceutskim ispitivanjima. Na samom kraju, pokazana jesuperiornonst primene adhezivnog sistema za jontoforezu u kombinaciji sa nanoemulzijom kaoinovativnog načina za dermalnu isporuku aktivnih supstanci.Kao najveći fundamentalni naučni doprinos ove doktorske disertacije može se smatrati analizafenomena na granici faza, otkrivanje doprinosa različitih ekscipijenasa koloidnoj stabilnosti, iproširenje savremene teorije o stabilizaciji nanoemulzija., In the context of biomedical application, in the last few decades there has been a kind ofrenaissance of colloidal science, which is probably a consequence of the expansion ofnanotechnology and its application in the field of drug delivery, with highly posted expectations.Relying on the current research trend focused on different nanocarriers for the delivery of activepharmaceutical ingredients, the aim of this doctoral dissertation was to develop low-energynanoemulsions for improved dermal delivery of curcumin (a model active ingredient), with anunderstanding of the complex interactions that underlie the formation of these colloidal systems.Certain aspects of physical and chemical modalities for improvement of dermal drug deliveryinto/through the skin were considered, with the idea of designing a prototype of an innovativeadhesive patch for dermal application that will be based on a combination of electricity (as aphysical methods to improve dermal delivery), and nanoemulsions (advanced nanostructuredcarriers).The research resulted in the formation of highly safe low-energy nanoemulsions stabilized by acombination of polysorbate 80 and soybean lecithin, with medium-chain triglycerides as the oilphase, or their combination with eucalyptol or pinene (as chemical penetration enhancers). Using anumber of complementary techniques, they were thoroughly characterized in the context ofmicrostructure, shape, size and morphology of the dispersed phase, physical stability, safety andsuitability for maintaining chemical stability of the active ingredient, which was followed byrelevant biological and biopharmaceutical studies. Finally, the superiority of the application of theadhesive system for iontophoresis in combination with nanoemulsion as an innovative way fordermal delivery of active molecules has been shown.Extending the modern theory of nanoemulsion stabilization through the analysis of the interfacialphenomena, as well as the discovery of the contribution of various excipients to colloidal stability,could be considered as the most important scientific contributions of this doctoral dissertation.",
publisher = "Универзитет у Београду, Фармацеутски факултет",
journal = "Универзитет у Београду",
title = "Spontanoemulgujuće nanoemulzije za primenu kurkumina na koži: istraživanje uticaja međufaznih fenomena u koloidnom sistemu na efikasnost isporuke i biološku aktivnost",
url = "https://hdl.handle.net/21.15107/rcub_nardus_21384"
}
Nikolić, I.. (2022). Spontanoemulgujuće nanoemulzije za primenu kurkumina na koži: istraživanje uticaja međufaznih fenomena u koloidnom sistemu na efikasnost isporuke i biološku aktivnost. in Универзитет у Београду
Универзитет у Београду, Фармацеутски факултет..
https://hdl.handle.net/21.15107/rcub_nardus_21384
Nikolić I. Spontanoemulgujuće nanoemulzije za primenu kurkumina na koži: istraživanje uticaja međufaznih fenomena u koloidnom sistemu na efikasnost isporuke i biološku aktivnost. in Универзитет у Београду. 2022;.
https://hdl.handle.net/21.15107/rcub_nardus_21384 .
Nikolić, Ines, "Spontanoemulgujuće nanoemulzije za primenu kurkumina na koži: istraživanje uticaja međufaznih fenomena u koloidnom sistemu na efikasnost isporuke i biološku aktivnost" in Универзитет у Београду (2022),
https://hdl.handle.net/21.15107/rcub_nardus_21384 .

Towards Proper Sizing Experiments: Analysis of the Impact of Measurement Conditions and Sample Preparation on the Size Estimation of the Nanodroplets and Nanoparticles

Nikolić, Ines; Ranđelović, Danijela; Savić, Snežana

(Savez farmaceutskih udruženja Srbije (SFUS), 2022)

TY  - CONF
AU  - Nikolić, Ines
AU  - Ranđelović, Danijela
AU  - Savić, Snežana
PY  - 2022
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/4493
AB  - Physicochemical properties of many active ingredients jeopardize their
pharmacological activity. To overcome identified obstacles, nanosystems as carriers for
delivery of actives have been recognized as promising tools, with highly posted expectations.
The nanotechnology-based approach in drug formulation is much more than just another
step in size miniaturization. Given the complexity of nanosystems, challenges encountered in
their characterization, and evident lack of testing protocols, relevant European
research/regulatory bodies have issued guidelines, summarizing important parameters for
nanosystem characterization. Size/size distribution (per se and in biorelevant environment)
are essentially important, representing critical quality attributes (1). The aim was to show
how significantly different results could be obtained under different measurement
conditions/sample preparation methods, offering optimal protocol for size estimation
applying dynamic light scattering (DLS), with complementary analysis through atomic force
microscopy. Hydrophilic nanoemulsion and aqueous dispersion of polymeric nanoparticles
were used as test samples. Ultrapurified water, phosphate buffer saline (PBS, pH 7.4) and
biorelevant medium with serum proteins were used for dilution. Measurements were
performed applying batch-mode DLS (ZetasizerNano), and AutoProbe CP-Research
microscope. Significant differences in obtained nanodroplet/nanoparticle size were
observed depending on the type of medium and dilution level. Protein corona formation
could not be confirmed with certainty. Preference was given to PBS as dispersant. The
optimal level of dilution for nanoparticles was 1:10 (Z‐ave=59.16±0.46nm), and for
nanoemulsion 1:100 (Z‐ave=73.5±0.75nm). For proper interpretation, it is necessary that the
DLS measurement report, in addition to the Z‐ave and the polydispersity index, contains at
least the data on the attenuation and correlation function intercept.
AB  - Fizičkohemijske osobine mnogih aktivnih supstanci otežavaju ostvarivanje
farmakoloških efekata. Kako bi se identifikovane prepreke prevazišle, visoka očekivanja
postavljena su pred nanosisteme - nosače za isporuku aktivnih supstanci, uz značajna
ulaganja u njihov razvoj. Nanotehnološki pristup formulaciji leka mnogo je više od pukog
smanjenja veličine. Imajući u vidu kompleksnost nanosistema, izazove koji se sreću u
njihovoj karakterizaciji, te evidentan nedostatak protokola ispitivanja, relevanta evropska
istraživačka/regulatorna tela izdala su vodiče, sumirajući značajne parametre karakterizacije
nanosistema. Veličina/distribucija veličina (per se i u biorelevantnim uslovima) od suštinske
su važnosti za postizanje očekivanih performansi, predstavljajući kritične atribute kvaliteta
(1). Cilj rada bio je pokazati kako se pri različitim uslovima merenja/načinima pripreme
istog uzorka dobijaju značajno različiti rezultati procene veličine, te ponuditi optimalan
protokol merenja dinamičkim rasipanjem svetlosti (DLS), uz komplementarno ispitivanje
mikroskopijom atomskih sila. Kao test uzorci korišćeni su hidrofilna nanoemulzija i vodena
disperzija polimernih nanočestica, a kao medijumi za razblaživanje visokoprečišćena voda,
izotonični fosfatni pufer (PBS, pH 7,4) i biorelevantni medijum obogaćen proteinima seruma.
Merenja su sprovedena primenom batch‐mode DLS, (ZetasizerNano), i na mikroskopu
AutoProbe CP-Research. Primećene su značajne razlike u vrednostima veličine
nanokapi/nanočestica zavisno od tipa medijuma i nivoa razblaženja. Nije se moglo sa
sigurnošću potvrditi formiranje protein korone nakon inkubacije u biorelevantnom
medijumu. Za procenu veličine per se, prednost je data PBS-u kao disperzantu. Optimalan
nivo razblaženja za nanočestice bio je 1:10 (Z‐ave=59,16±0,46nm), a za nanoemulziju 1:100
(Z‐ave=73,5±0,75nm). Radi adekvatnog tumačenja, potrebno je da izveštaj DLS merenja,
pored Z-ave i indeksa polidisperznosti, sadrži barem još podatke o atenuaciji i odsečku
korelacione funkcije.
PB  - Savez farmaceutskih udruženja Srbije (SFUS)
C3  - Arhiv za farmaciju
T1  - Towards Proper Sizing Experiments: Analysis of the Impact of Measurement Conditions and Sample Preparation on the Size Estimation of the Nanodroplets and Nanoparticles
T1  - U susret pravilnom određivanju veličine nanostruktura: analiza uticaja uslova merenja i pripreme uzorka na razultate procene veličine nanokapi i nanočestica
VL  - 72
IS  - 4 suplement
SP  - S192
EP  - S193
UR  - https://hdl.handle.net/21.15107/rcub_farfar_4493
ER  - 
@conference{
author = "Nikolić, Ines and Ranđelović, Danijela and Savić, Snežana",
year = "2022",
abstract = "Physicochemical properties of many active ingredients jeopardize their
pharmacological activity. To overcome identified obstacles, nanosystems as carriers for
delivery of actives have been recognized as promising tools, with highly posted expectations.
The nanotechnology-based approach in drug formulation is much more than just another
step in size miniaturization. Given the complexity of nanosystems, challenges encountered in
their characterization, and evident lack of testing protocols, relevant European
research/regulatory bodies have issued guidelines, summarizing important parameters for
nanosystem characterization. Size/size distribution (per se and in biorelevant environment)
are essentially important, representing critical quality attributes (1). The aim was to show
how significantly different results could be obtained under different measurement
conditions/sample preparation methods, offering optimal protocol for size estimation
applying dynamic light scattering (DLS), with complementary analysis through atomic force
microscopy. Hydrophilic nanoemulsion and aqueous dispersion of polymeric nanoparticles
were used as test samples. Ultrapurified water, phosphate buffer saline (PBS, pH 7.4) and
biorelevant medium with serum proteins were used for dilution. Measurements were
performed applying batch-mode DLS (ZetasizerNano), and AutoProbe CP-Research
microscope. Significant differences in obtained nanodroplet/nanoparticle size were
observed depending on the type of medium and dilution level. Protein corona formation
could not be confirmed with certainty. Preference was given to PBS as dispersant. The
optimal level of dilution for nanoparticles was 1:10 (Z‐ave=59.16±0.46nm), and for
nanoemulsion 1:100 (Z‐ave=73.5±0.75nm). For proper interpretation, it is necessary that the
DLS measurement report, in addition to the Z‐ave and the polydispersity index, contains at
least the data on the attenuation and correlation function intercept., Fizičkohemijske osobine mnogih aktivnih supstanci otežavaju ostvarivanje
farmakoloških efekata. Kako bi se identifikovane prepreke prevazišle, visoka očekivanja
postavljena su pred nanosisteme - nosače za isporuku aktivnih supstanci, uz značajna
ulaganja u njihov razvoj. Nanotehnološki pristup formulaciji leka mnogo je više od pukog
smanjenja veličine. Imajući u vidu kompleksnost nanosistema, izazove koji se sreću u
njihovoj karakterizaciji, te evidentan nedostatak protokola ispitivanja, relevanta evropska
istraživačka/regulatorna tela izdala su vodiče, sumirajući značajne parametre karakterizacije
nanosistema. Veličina/distribucija veličina (per se i u biorelevantnim uslovima) od suštinske
su važnosti za postizanje očekivanih performansi, predstavljajući kritične atribute kvaliteta
(1). Cilj rada bio je pokazati kako se pri različitim uslovima merenja/načinima pripreme
istog uzorka dobijaju značajno različiti rezultati procene veličine, te ponuditi optimalan
protokol merenja dinamičkim rasipanjem svetlosti (DLS), uz komplementarno ispitivanje
mikroskopijom atomskih sila. Kao test uzorci korišćeni su hidrofilna nanoemulzija i vodena
disperzija polimernih nanočestica, a kao medijumi za razblaživanje visokoprečišćena voda,
izotonični fosfatni pufer (PBS, pH 7,4) i biorelevantni medijum obogaćen proteinima seruma.
Merenja su sprovedena primenom batch‐mode DLS, (ZetasizerNano), i na mikroskopu
AutoProbe CP-Research. Primećene su značajne razlike u vrednostima veličine
nanokapi/nanočestica zavisno od tipa medijuma i nivoa razblaženja. Nije se moglo sa
sigurnošću potvrditi formiranje protein korone nakon inkubacije u biorelevantnom
medijumu. Za procenu veličine per se, prednost je data PBS-u kao disperzantu. Optimalan
nivo razblaženja za nanočestice bio je 1:10 (Z‐ave=59,16±0,46nm), a za nanoemulziju 1:100
(Z‐ave=73,5±0,75nm). Radi adekvatnog tumačenja, potrebno je da izveštaj DLS merenja,
pored Z-ave i indeksa polidisperznosti, sadrži barem još podatke o atenuaciji i odsečku
korelacione funkcije.",
publisher = "Savez farmaceutskih udruženja Srbije (SFUS)",
journal = "Arhiv za farmaciju",
title = "Towards Proper Sizing Experiments: Analysis of the Impact of Measurement Conditions and Sample Preparation on the Size Estimation of the Nanodroplets and Nanoparticles, U susret pravilnom određivanju veličine nanostruktura: analiza uticaja uslova merenja i pripreme uzorka na razultate procene veličine nanokapi i nanočestica",
volume = "72",
number = "4 suplement",
pages = "S192-S193",
url = "https://hdl.handle.net/21.15107/rcub_farfar_4493"
}
Nikolić, I., Ranđelović, D.,& Savić, S.. (2022). Towards Proper Sizing Experiments: Analysis of the Impact of Measurement Conditions and Sample Preparation on the Size Estimation of the Nanodroplets and Nanoparticles. in Arhiv za farmaciju
Savez farmaceutskih udruženja Srbije (SFUS)., 72(4 suplement), S192-S193.
https://hdl.handle.net/21.15107/rcub_farfar_4493
Nikolić I, Ranđelović D, Savić S. Towards Proper Sizing Experiments: Analysis of the Impact of Measurement Conditions and Sample Preparation on the Size Estimation of the Nanodroplets and Nanoparticles. in Arhiv za farmaciju. 2022;72(4 suplement):S192-S193.
https://hdl.handle.net/21.15107/rcub_farfar_4493 .
Nikolić, Ines, Ranđelović, Danijela, Savić, Snežana, "Towards Proper Sizing Experiments: Analysis of the Impact of Measurement Conditions and Sample Preparation on the Size Estimation of the Nanodroplets and Nanoparticles" in Arhiv za farmaciju, 72, no. 4 suplement (2022):S192-S193,
https://hdl.handle.net/21.15107/rcub_farfar_4493 .

ex vivo–in vivo comparison of drug penetration analysis by confocal Raman microspectroscopy and tape stripping

Krombholz, Richard; Fressle, Stefanie; Nikolić, Ines; Pantelić, Ivana; Savić, Snežana; Crevar-Sakač, Milkica; Lunter, Dominique

(John Wiley and Sons Inc, 2022)

TY  - JOUR
AU  - Krombholz, Richard
AU  - Fressle, Stefanie
AU  - Nikolić, Ines
AU  - Pantelić, Ivana
AU  - Savić, Snežana
AU  - Crevar-Sakač, Milkica
AU  - Lunter, Dominique
PY  - 2022
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/4333
AB  - When it comes to skin penetration analysis of a topically applied formulation, the number of suitable methods is limited, and they often lack in spatial resolution. In vivo studies are pivotal, especially in the approval of a new product, but high costs and ethical difficulties are limiting factors. For that reason, good ex vivo models for testing skin penetration are crucial. In this study, caffeine was used as a hydrophilic model drug, applied as a 2% (w/w) hydrogel, to compare different techniques for skin penetration analysis. Confocal Raman microspectroscopy (CRM) and tape stripping with subsequent HPLC analysis were used to quantify caffeine. Experiments were performed ex vivo and in vivo. Furthermore, the effect of 5% (w/w) 1,2-pentanediol on caffeine skin penetration was tested, to compare those methods regarding their effectiveness in detecting differences between both formulations.
PB  - John Wiley and Sons Inc
T2  - Experimental Dermatology
T1  - ex vivo–in vivo comparison of drug penetration analysis by confocal Raman microspectroscopy and tape stripping
VL  - 31
IS  - 12
DO  - 10.1111/exd.14672
ER  - 
@article{
author = "Krombholz, Richard and Fressle, Stefanie and Nikolić, Ines and Pantelić, Ivana and Savić, Snežana and Crevar-Sakač, Milkica and Lunter, Dominique",
year = "2022",
abstract = "When it comes to skin penetration analysis of a topically applied formulation, the number of suitable methods is limited, and they often lack in spatial resolution. In vivo studies are pivotal, especially in the approval of a new product, but high costs and ethical difficulties are limiting factors. For that reason, good ex vivo models for testing skin penetration are crucial. In this study, caffeine was used as a hydrophilic model drug, applied as a 2% (w/w) hydrogel, to compare different techniques for skin penetration analysis. Confocal Raman microspectroscopy (CRM) and tape stripping with subsequent HPLC analysis were used to quantify caffeine. Experiments were performed ex vivo and in vivo. Furthermore, the effect of 5% (w/w) 1,2-pentanediol on caffeine skin penetration was tested, to compare those methods regarding their effectiveness in detecting differences between both formulations.",
publisher = "John Wiley and Sons Inc",
journal = "Experimental Dermatology",
title = "ex vivo–in vivo comparison of drug penetration analysis by confocal Raman microspectroscopy and tape stripping",
volume = "31",
number = "12",
doi = "10.1111/exd.14672"
}
Krombholz, R., Fressle, S., Nikolić, I., Pantelić, I., Savić, S., Crevar-Sakač, M.,& Lunter, D.. (2022). ex vivo–in vivo comparison of drug penetration analysis by confocal Raman microspectroscopy and tape stripping. in Experimental Dermatology
John Wiley and Sons Inc., 31(12).
https://doi.org/10.1111/exd.14672
Krombholz R, Fressle S, Nikolić I, Pantelić I, Savić S, Crevar-Sakač M, Lunter D. ex vivo–in vivo comparison of drug penetration analysis by confocal Raman microspectroscopy and tape stripping. in Experimental Dermatology. 2022;31(12).
doi:10.1111/exd.14672 .
Krombholz, Richard, Fressle, Stefanie, Nikolić, Ines, Pantelić, Ivana, Savić, Snežana, Crevar-Sakač, Milkica, Lunter, Dominique, "ex vivo–in vivo comparison of drug penetration analysis by confocal Raman microspectroscopy and tape stripping" in Experimental Dermatology, 31, no. 12 (2022),
https://doi.org/10.1111/exd.14672 . .
2
2

Chemical vs. Physical Methods to Improve Dermal Drug Delivery: A Case Study with Nanoemulsions and Iontophoresis

Nikolić, Ines; Simić, Mitar; Pantelić, Ivana; Stojanović, Goran; Antić-Stanković, Jelena; Marković, Bojan; Savić, Snežana

(MDPI, 2022)

TY  - JOUR
AU  - Nikolić, Ines
AU  - Simić, Mitar
AU  - Pantelić, Ivana
AU  - Stojanović, Goran
AU  - Antić-Stanković, Jelena
AU  - Marković, Bojan
AU  - Savić, Snežana
PY  - 2022
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/4328
AB  - So far, various approaches have been proposed to improve dermal drug delivery. The
use of chemical penetration enhancers has a long history of application, while methods based on
the electrical current (such as iontophoresis) stand out as promising “active” techniques. Aiming to
evaluate the contribution of different approaches to dermal delivery, in this work curcumin-loaded
nanoemulsions with and without monoterpenes (eucalyptol or pinene) as chemical penetration
enhancers, and a custom-made adhesive dermal delivery system based on iontophoresis were
designed and assessed. In an in vivo study applying skin bioengineering techniques, their safety
profile was proven. Three examined iontophoresis protocols, with total skin exposure time of 15 min
(continuous flow for 15 min (15-0); 3 min of continuous flow and 2 min pause (3-2; 5 cycles) and
5 min of continuous flow and 1 min pause (5-1; 3 cycles) were equally efficient in terms of the
total amount of curcumin that penetrated through the superficial skin layers ( in vivo tape stripping)
(Q3-2 = 7.04 ± 3.21 μg/cm2; Q5-1 = 6.66 ± 2.11 μg/cm2; Q15-0 = 6.96 ± 3.21 μg/cm2), significantly
more efficient compared to the referent nanoemulsion and monoterpene-containing nanoemulsions.
Further improvement of an efficient mobile adhesive system for iontophoresis would be a practical
contribution in the field of dermal drug application.
PB  - MDPI
T2  - Pharmaceutics
T1  - Chemical vs. Physical Methods to Improve Dermal Drug Delivery: A Case Study with Nanoemulsions and Iontophoresis
VL  - 14
IS  - 6
DO  - 10.3390/pharmaceutics14061144
ER  - 
@article{
author = "Nikolić, Ines and Simić, Mitar and Pantelić, Ivana and Stojanović, Goran and Antić-Stanković, Jelena and Marković, Bojan and Savić, Snežana",
year = "2022",
abstract = "So far, various approaches have been proposed to improve dermal drug delivery. The
use of chemical penetration enhancers has a long history of application, while methods based on
the electrical current (such as iontophoresis) stand out as promising “active” techniques. Aiming to
evaluate the contribution of different approaches to dermal delivery, in this work curcumin-loaded
nanoemulsions with and without monoterpenes (eucalyptol or pinene) as chemical penetration
enhancers, and a custom-made adhesive dermal delivery system based on iontophoresis were
designed and assessed. In an in vivo study applying skin bioengineering techniques, their safety
profile was proven. Three examined iontophoresis protocols, with total skin exposure time of 15 min
(continuous flow for 15 min (15-0); 3 min of continuous flow and 2 min pause (3-2; 5 cycles) and
5 min of continuous flow and 1 min pause (5-1; 3 cycles) were equally efficient in terms of the
total amount of curcumin that penetrated through the superficial skin layers ( in vivo tape stripping)
(Q3-2 = 7.04 ± 3.21 μg/cm2; Q5-1 = 6.66 ± 2.11 μg/cm2; Q15-0 = 6.96 ± 3.21 μg/cm2), significantly
more efficient compared to the referent nanoemulsion and monoterpene-containing nanoemulsions.
Further improvement of an efficient mobile adhesive system for iontophoresis would be a practical
contribution in the field of dermal drug application.",
publisher = "MDPI",
journal = "Pharmaceutics",
title = "Chemical vs. Physical Methods to Improve Dermal Drug Delivery: A Case Study with Nanoemulsions and Iontophoresis",
volume = "14",
number = "6",
doi = "10.3390/pharmaceutics14061144"
}
Nikolić, I., Simić, M., Pantelić, I., Stojanović, G., Antić-Stanković, J., Marković, B.,& Savić, S.. (2022). Chemical vs. Physical Methods to Improve Dermal Drug Delivery: A Case Study with Nanoemulsions and Iontophoresis. in Pharmaceutics
MDPI., 14(6).
https://doi.org/10.3390/pharmaceutics14061144
Nikolić I, Simić M, Pantelić I, Stojanović G, Antić-Stanković J, Marković B, Savić S. Chemical vs. Physical Methods to Improve Dermal Drug Delivery: A Case Study with Nanoemulsions and Iontophoresis. in Pharmaceutics. 2022;14(6).
doi:10.3390/pharmaceutics14061144 .
Nikolić, Ines, Simić, Mitar, Pantelić, Ivana, Stojanović, Goran, Antić-Stanković, Jelena, Marković, Bojan, Savić, Snežana, "Chemical vs. Physical Methods to Improve Dermal Drug Delivery: A Case Study with Nanoemulsions and Iontophoresis" in Pharmaceutics, 14, no. 6 (2022),
https://doi.org/10.3390/pharmaceutics14061144 . .

Colloidal nanodispersions for the topical delivery of Ibuprofen: Structure, dynamics and bioperformances

Theochari, Ioanna; Mitsou, E.; Nikolić, Ines; Ilić, Tanja; Dobričić, Vladimir; Pletsa, V.; Savić, Snežana; Xenakis, Aristotelis; Papadimitriou, Vassiliki

(Elsevier B.V., 2021)

TY  - JOUR
AU  - Theochari, Ioanna
AU  - Mitsou, E.
AU  - Nikolić, Ines
AU  - Ilić, Tanja
AU  - Dobričić, Vladimir
AU  - Pletsa, V.
AU  - Savić, Snežana
AU  - Xenakis, Aristotelis
AU  - Papadimitriou, Vassiliki
PY  - 2021
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/3821
AB  - Colloidal liquid-in-liquid nanodispersions such as micro- and nanoemulsions were developed, characterized and compared as potential carriers for the topical administration of ibuprofen. Both colloidal systems were based on water as the continuous phase, limonene as the dispersed phase and a mixture of pharmaceutically acceptable surfactants (Pluronic® L-35, Labrasol®, Tween 80). To improve their properties regarding penetration efficacy, an aqueous solution of chitosan was used as continuous phase in both systems. Micro- and nanoemulsions were structurally studied applying Dynamic Light Scattering (DLS), Electron Paramagnetic Resonance (EPR) spectroscopy and viscometry. Microemulsions with mean droplet diameter of 41 nm and PdI < 0.3 were obtained in the absence and presence of either chitosan or ibuprofen. Nanoemulsions were developed by high-pressure homogenization using the same ingredients at different concentrations. Unlike thermodynamically stable microemulsions, nanoemulsions showed storage stability for 2 months, higher droplet size (174 nm) and lower PdI (<0.15). In the presence of Ibuprofen droplet size and stability of the nanoemulsions were not affected. EPR spectroscopy revealed ibuprofen’s location in the oil cores and gave information about the rigidity of the surfactants’ monolayer. In both cases an outer compact configuration of the interfacial layer and a more flexible inner one was observed. The cytotoxicity of both systems towards human melanoma cell line WM 164 was relatively low. Interestingly, ibuprofen was released more promptly from the microemulsions (prospectively, systemic exposure increase), however the ex vivo studies, regarding skin uptake and penetration, revealed that the nanoemulsions are more appropriate as nanocarriers for the topical administration of ibuprofen.
PB  - Elsevier B.V.
T2  - Journal of Molecular Liquids
T1  - Colloidal nanodispersions for the topical delivery of Ibuprofen: Structure, dynamics and bioperformances
VL  - 334
DO  - 10.1016/j.molliq.2021.116021
ER  - 
@article{
author = "Theochari, Ioanna and Mitsou, E. and Nikolić, Ines and Ilić, Tanja and Dobričić, Vladimir and Pletsa, V. and Savić, Snežana and Xenakis, Aristotelis and Papadimitriou, Vassiliki",
year = "2021",
abstract = "Colloidal liquid-in-liquid nanodispersions such as micro- and nanoemulsions were developed, characterized and compared as potential carriers for the topical administration of ibuprofen. Both colloidal systems were based on water as the continuous phase, limonene as the dispersed phase and a mixture of pharmaceutically acceptable surfactants (Pluronic® L-35, Labrasol®, Tween 80). To improve their properties regarding penetration efficacy, an aqueous solution of chitosan was used as continuous phase in both systems. Micro- and nanoemulsions were structurally studied applying Dynamic Light Scattering (DLS), Electron Paramagnetic Resonance (EPR) spectroscopy and viscometry. Microemulsions with mean droplet diameter of 41 nm and PdI < 0.3 were obtained in the absence and presence of either chitosan or ibuprofen. Nanoemulsions were developed by high-pressure homogenization using the same ingredients at different concentrations. Unlike thermodynamically stable microemulsions, nanoemulsions showed storage stability for 2 months, higher droplet size (174 nm) and lower PdI (<0.15). In the presence of Ibuprofen droplet size and stability of the nanoemulsions were not affected. EPR spectroscopy revealed ibuprofen’s location in the oil cores and gave information about the rigidity of the surfactants’ monolayer. In both cases an outer compact configuration of the interfacial layer and a more flexible inner one was observed. The cytotoxicity of both systems towards human melanoma cell line WM 164 was relatively low. Interestingly, ibuprofen was released more promptly from the microemulsions (prospectively, systemic exposure increase), however the ex vivo studies, regarding skin uptake and penetration, revealed that the nanoemulsions are more appropriate as nanocarriers for the topical administration of ibuprofen.",
publisher = "Elsevier B.V.",
journal = "Journal of Molecular Liquids",
title = "Colloidal nanodispersions for the topical delivery of Ibuprofen: Structure, dynamics and bioperformances",
volume = "334",
doi = "10.1016/j.molliq.2021.116021"
}
Theochari, I., Mitsou, E., Nikolić, I., Ilić, T., Dobričić, V., Pletsa, V., Savić, S., Xenakis, A.,& Papadimitriou, V.. (2021). Colloidal nanodispersions for the topical delivery of Ibuprofen: Structure, dynamics and bioperformances. in Journal of Molecular Liquids
Elsevier B.V.., 334.
https://doi.org/10.1016/j.molliq.2021.116021
Theochari I, Mitsou E, Nikolić I, Ilić T, Dobričić V, Pletsa V, Savić S, Xenakis A, Papadimitriou V. Colloidal nanodispersions for the topical delivery of Ibuprofen: Structure, dynamics and bioperformances. in Journal of Molecular Liquids. 2021;334.
doi:10.1016/j.molliq.2021.116021 .
Theochari, Ioanna, Mitsou, E., Nikolić, Ines, Ilić, Tanja, Dobričić, Vladimir, Pletsa, V., Savić, Snežana, Xenakis, Aristotelis, Papadimitriou, Vassiliki, "Colloidal nanodispersions for the topical delivery of Ibuprofen: Structure, dynamics and bioperformances" in Journal of Molecular Liquids, 334 (2021),
https://doi.org/10.1016/j.molliq.2021.116021 . .
15
13

Biological evaluation of oil-in-water microemulsions as carriers of benzothiophene analogues for dermal applications

Theochari, Ioanna; Ilić, Tanja; Nikolić, Ines; Dobričić, Vladimir; Tenchiou, Alia; Papahatjis, Demetris; Savić, Snežana; Xenakis, Aristotelis; Papadimitriou, Vassiliki; Pletsa, Vasiliki

(MDPI AG, 2021)

TY  - JOUR
AU  - Theochari, Ioanna
AU  - Ilić, Tanja
AU  - Nikolić, Ines
AU  - Dobričić, Vladimir
AU  - Tenchiou, Alia
AU  - Papahatjis, Demetris
AU  - Savić, Snežana
AU  - Xenakis, Aristotelis
AU  - Papadimitriou, Vassiliki
AU  - Pletsa, Vasiliki
PY  - 2021
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/3801
AB  - During the last decade, many studies have been reported on the design and formulation of novel drug delivery systems proposed for dermal or transdermal administration. The efforts focus on the development of biocompatible nanodispersions that can be delivered to the skin and treat severe skin disorders, including cancer. In this context, oil-in-water (O/W) microemulsions have been developed to encapsulate and deliver lipophilic bioactive molecules for dermal application. An O/W biocompatible microemulsion composed of PBS buffer, Tween 80, and triacetin was assessed for its efficacy as a drug carrier of DPS-2, a lead compound, initially designed in-house to inhibit BRAFV600E oncogenic kinase. The system was evaluated through both in vitro and ex vivo approaches. The cytotoxic effect, in the presence and absence of DPS-2, was examined through the thiazolyl blue tetrazolium bromide (MTT) cell proliferation assay using various cell lines. Further investigation through Western blotting revealed that cells died of necrosis. Porcine ear skin was used as a skin model to evaluate the degree of permeation of DPS-2 through skin and assess its retention. Through the ex vivo experiments, it was clarified that encapsulated DPS-2 was distributed within the full thickness of the stratum corneum (SC) and had a high affinity to hair follicles.
PB  - MDPI AG
T2  - Biomimetics
T1  - Biological evaluation of oil-in-water microemulsions as carriers of benzothiophene analogues for dermal applications
VL  - 6
IS  - 1
SP  - 1
EP  - 15
DO  - 10.3390/biomimetics6010010
ER  - 
@article{
author = "Theochari, Ioanna and Ilić, Tanja and Nikolić, Ines and Dobričić, Vladimir and Tenchiou, Alia and Papahatjis, Demetris and Savić, Snežana and Xenakis, Aristotelis and Papadimitriou, Vassiliki and Pletsa, Vasiliki",
year = "2021",
abstract = "During the last decade, many studies have been reported on the design and formulation of novel drug delivery systems proposed for dermal or transdermal administration. The efforts focus on the development of biocompatible nanodispersions that can be delivered to the skin and treat severe skin disorders, including cancer. In this context, oil-in-water (O/W) microemulsions have been developed to encapsulate and deliver lipophilic bioactive molecules for dermal application. An O/W biocompatible microemulsion composed of PBS buffer, Tween 80, and triacetin was assessed for its efficacy as a drug carrier of DPS-2, a lead compound, initially designed in-house to inhibit BRAFV600E oncogenic kinase. The system was evaluated through both in vitro and ex vivo approaches. The cytotoxic effect, in the presence and absence of DPS-2, was examined through the thiazolyl blue tetrazolium bromide (MTT) cell proliferation assay using various cell lines. Further investigation through Western blotting revealed that cells died of necrosis. Porcine ear skin was used as a skin model to evaluate the degree of permeation of DPS-2 through skin and assess its retention. Through the ex vivo experiments, it was clarified that encapsulated DPS-2 was distributed within the full thickness of the stratum corneum (SC) and had a high affinity to hair follicles.",
publisher = "MDPI AG",
journal = "Biomimetics",
title = "Biological evaluation of oil-in-water microemulsions as carriers of benzothiophene analogues for dermal applications",
volume = "6",
number = "1",
pages = "1-15",
doi = "10.3390/biomimetics6010010"
}
Theochari, I., Ilić, T., Nikolić, I., Dobričić, V., Tenchiou, A., Papahatjis, D., Savić, S., Xenakis, A., Papadimitriou, V.,& Pletsa, V.. (2021). Biological evaluation of oil-in-water microemulsions as carriers of benzothiophene analogues for dermal applications. in Biomimetics
MDPI AG., 6(1), 1-15.
https://doi.org/10.3390/biomimetics6010010
Theochari I, Ilić T, Nikolić I, Dobričić V, Tenchiou A, Papahatjis D, Savić S, Xenakis A, Papadimitriou V, Pletsa V. Biological evaluation of oil-in-water microemulsions as carriers of benzothiophene analogues for dermal applications. in Biomimetics. 2021;6(1):1-15.
doi:10.3390/biomimetics6010010 .
Theochari, Ioanna, Ilić, Tanja, Nikolić, Ines, Dobričić, Vladimir, Tenchiou, Alia, Papahatjis, Demetris, Savić, Snežana, Xenakis, Aristotelis, Papadimitriou, Vassiliki, Pletsa, Vasiliki, "Biological evaluation of oil-in-water microemulsions as carriers of benzothiophene analogues for dermal applications" in Biomimetics, 6, no. 1 (2021):1-15,
https://doi.org/10.3390/biomimetics6010010 . .
1
4
1
4

Curcumin loaded pegylated nanoemulsions designed for maintained antioxidant effects and improved bioavailability: A pilot study on rats

Đoković, Jelena; Savić, Sanela; Mitrović, Jelena; Nikolić, Ines; Marković, Bojan; Ranđelović, Danijela; Antić-Stanković, Jelena; Božić, Dragana; Cekić, Nebojša; Stevanović, Vladimir; Batinić, Bojan; Aranđelović, Jovana; Savić, Miroslav; Savić, Snežana

(MDPI, 2021)

TY  - JOUR
AU  - Đoković, Jelena
AU  - Savić, Sanela
AU  - Mitrović, Jelena
AU  - Nikolić, Ines
AU  - Marković, Bojan
AU  - Ranđelović, Danijela
AU  - Antić-Stanković, Jelena
AU  - Božić, Dragana
AU  - Cekić, Nebojša
AU  - Stevanović, Vladimir
AU  - Batinić, Bojan
AU  - Aranđelović, Jovana
AU  - Savić, Miroslav
AU  - Savić, Snežana
PY  - 2021
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/5541
AB  - The current study describes the experimental design guided development of PEGylated nanoemulsions as parenteral delivery systems for curcumin, a powerful antioxidant, as well as the evaluation of their physicochemical characteristics and antioxidant activity during the two years of storage. Experimental design setup helped development of nanoemulsion templates with critical quality attributes in line with parenteral application route. Curcumin-loaded nanoemulsions showed mean droplet size about 105 nm, polydispersity index <0.15, zeta potential of −40 mV, and acceptable osmolality of about 550 mOsm/kg. After two years of storage at room temperature, all formulations remained stable. Moreover, antioxidant activity remained intact, as demonstrated by DPPH (IC50 values 0.078–0.075 mg/mL after two years) and FRAPS assays. In vitro release testing proved that PEGylated phospholipids slowed down the curcumin release from nanoemulsions. The nanoemulsion carrier has been proven safe by the MTT test conducted with MRC-5 cell line, and effective on LS cell line. Results from the pharmacokinetic pilot study implied the PEGylated nanoemulsions improved plasma residence of curcumin 20 min after intravenous administration, compared to the non-PEGylated nanoemulsion (two-fold higher) or curcumin solution (three-fold higher). Overall, conclusion suggests that developed PEGylated nanoemulsions present an acceptable delivery system for parenteral administration of curcumin, being effective in preserving its stability and antioxidant capacity at the level highly comparable to the initial findings.
PB  - MDPI
T2  - International Journal of Molecular Sciences
T1  - Curcumin loaded pegylated nanoemulsions designed for maintained antioxidant effects and improved bioavailability: A pilot study on rats
VL  - 22
IS  - 15
DO  - 10.3390/ijms22157991
ER  - 
@article{
author = "Đoković, Jelena and Savić, Sanela and Mitrović, Jelena and Nikolić, Ines and Marković, Bojan and Ranđelović, Danijela and Antić-Stanković, Jelena and Božić, Dragana and Cekić, Nebojša and Stevanović, Vladimir and Batinić, Bojan and Aranđelović, Jovana and Savić, Miroslav and Savić, Snežana",
year = "2021",
abstract = "The current study describes the experimental design guided development of PEGylated nanoemulsions as parenteral delivery systems for curcumin, a powerful antioxidant, as well as the evaluation of their physicochemical characteristics and antioxidant activity during the two years of storage. Experimental design setup helped development of nanoemulsion templates with critical quality attributes in line with parenteral application route. Curcumin-loaded nanoemulsions showed mean droplet size about 105 nm, polydispersity index <0.15, zeta potential of −40 mV, and acceptable osmolality of about 550 mOsm/kg. After two years of storage at room temperature, all formulations remained stable. Moreover, antioxidant activity remained intact, as demonstrated by DPPH (IC50 values 0.078–0.075 mg/mL after two years) and FRAPS assays. In vitro release testing proved that PEGylated phospholipids slowed down the curcumin release from nanoemulsions. The nanoemulsion carrier has been proven safe by the MTT test conducted with MRC-5 cell line, and effective on LS cell line. Results from the pharmacokinetic pilot study implied the PEGylated nanoemulsions improved plasma residence of curcumin 20 min after intravenous administration, compared to the non-PEGylated nanoemulsion (two-fold higher) or curcumin solution (three-fold higher). Overall, conclusion suggests that developed PEGylated nanoemulsions present an acceptable delivery system for parenteral administration of curcumin, being effective in preserving its stability and antioxidant capacity at the level highly comparable to the initial findings.",
publisher = "MDPI",
journal = "International Journal of Molecular Sciences",
title = "Curcumin loaded pegylated nanoemulsions designed for maintained antioxidant effects and improved bioavailability: A pilot study on rats",
volume = "22",
number = "15",
doi = "10.3390/ijms22157991"
}
Đoković, J., Savić, S., Mitrović, J., Nikolić, I., Marković, B., Ranđelović, D., Antić-Stanković, J., Božić, D., Cekić, N., Stevanović, V., Batinić, B., Aranđelović, J., Savić, M.,& Savić, S.. (2021). Curcumin loaded pegylated nanoemulsions designed for maintained antioxidant effects and improved bioavailability: A pilot study on rats. in International Journal of Molecular Sciences
MDPI., 22(15).
https://doi.org/10.3390/ijms22157991
Đoković J, Savić S, Mitrović J, Nikolić I, Marković B, Ranđelović D, Antić-Stanković J, Božić D, Cekić N, Stevanović V, Batinić B, Aranđelović J, Savić M, Savić S. Curcumin loaded pegylated nanoemulsions designed for maintained antioxidant effects and improved bioavailability: A pilot study on rats. in International Journal of Molecular Sciences. 2021;22(15).
doi:10.3390/ijms22157991 .
Đoković, Jelena, Savić, Sanela, Mitrović, Jelena, Nikolić, Ines, Marković, Bojan, Ranđelović, Danijela, Antić-Stanković, Jelena, Božić, Dragana, Cekić, Nebojša, Stevanović, Vladimir, Batinić, Bojan, Aranđelović, Jovana, Savić, Miroslav, Savić, Snežana, "Curcumin loaded pegylated nanoemulsions designed for maintained antioxidant effects and improved bioavailability: A pilot study on rats" in International Journal of Molecular Sciences, 22, no. 15 (2021),
https://doi.org/10.3390/ijms22157991 . .
16
15

Polyglycerol ester-based low energy nanoemulsions with red raspberry seed oil and fruit extracts: Formulation development toward effective in vitro/in vivo bioperformance

Gledović, Ana; Janošević-Ležaić, Aleksandra; Nikolić, Ines; Tasić-Kostov, Marija; Antić-Stanković, Jelena; Krstonošić, Veljko; Ranđelović, Danijela; Božić, Dragana; Ilić, Dušan; Tamburić, Slobodanka; Savić, Snežana

(MDPI AG, 2021)

TY  - JOUR
AU  - Gledović, Ana
AU  - Janošević-Ležaić, Aleksandra
AU  - Nikolić, Ines
AU  - Tasić-Kostov, Marija
AU  - Antić-Stanković, Jelena
AU  - Krstonošić, Veljko
AU  - Ranđelović, Danijela
AU  - Božić, Dragana
AU  - Ilić, Dušan
AU  - Tamburić, Slobodanka
AU  - Savić, Snežana
PY  - 2021
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/3777
AB  - This study focuses on the development of biocompatible oil-in-water (O/W) nanoemulsions based on polyglycerol esters, as promising carriers for natural actives: red raspberry seed oil—RO and hydro-glycolic fruit extracts from red raspberry—RE and French oak—FE. Nanoemulsions were obtained via phase inversion composition (PIC) method at room temperature by dilution of microemulsion phase, confirmed by visual appearance, percentage of transmittance, microscopic, rheological and Differential Scanning Calorimetry (DSC) investigations. The results have shown that the basic RO-loaded formulation could be further enriched with hydro-glycolic fruit extracts from red raspberry or French oak, while keeping a semi-transparent appearance due to the fine droplet size (Z-ave: 50 to 70 nm, PDI value ≤ 0.1). The highest antioxidant activity (~92% inhibition of the DPPH radical) was achieved in the formulation containing both lipophilic (RO) and hydrophilic antioxidants (FE), due to their synergistic effect. The nanoemulsion carrier significantly increased the selective cytotoxic effect of RO towards malignant melanoma (Fem-X) cells, compared to normal human keratinocytes (HaCaT). In vivo study on human volunteers showed satisfactory safety profiles and significant improvement in skin hydration during 2 h after application for all nanoemulsions. Therefore, polyglycerol ester-based nanoemulsions can be promoted as effective carriers for red raspberry seed oil and/or hydro-glycolic fruit extracts in topical formulations intended for skin protection and hydration.
PB  - MDPI AG
T2  - Nanomaterials
T1  - Polyglycerol ester-based low energy nanoemulsions with red raspberry seed oil and fruit extracts: Formulation development toward effective in vitro/in vivo bioperformance
VL  - 11
IS  - 1
SP  - 1
EP  - 21
DO  - 10.3390/nano11010217
ER  - 
@article{
author = "Gledović, Ana and Janošević-Ležaić, Aleksandra and Nikolić, Ines and Tasić-Kostov, Marija and Antić-Stanković, Jelena and Krstonošić, Veljko and Ranđelović, Danijela and Božić, Dragana and Ilić, Dušan and Tamburić, Slobodanka and Savić, Snežana",
year = "2021",
abstract = "This study focuses on the development of biocompatible oil-in-water (O/W) nanoemulsions based on polyglycerol esters, as promising carriers for natural actives: red raspberry seed oil—RO and hydro-glycolic fruit extracts from red raspberry—RE and French oak—FE. Nanoemulsions were obtained via phase inversion composition (PIC) method at room temperature by dilution of microemulsion phase, confirmed by visual appearance, percentage of transmittance, microscopic, rheological and Differential Scanning Calorimetry (DSC) investigations. The results have shown that the basic RO-loaded formulation could be further enriched with hydro-glycolic fruit extracts from red raspberry or French oak, while keeping a semi-transparent appearance due to the fine droplet size (Z-ave: 50 to 70 nm, PDI value ≤ 0.1). The highest antioxidant activity (~92% inhibition of the DPPH radical) was achieved in the formulation containing both lipophilic (RO) and hydrophilic antioxidants (FE), due to their synergistic effect. The nanoemulsion carrier significantly increased the selective cytotoxic effect of RO towards malignant melanoma (Fem-X) cells, compared to normal human keratinocytes (HaCaT). In vivo study on human volunteers showed satisfactory safety profiles and significant improvement in skin hydration during 2 h after application for all nanoemulsions. Therefore, polyglycerol ester-based nanoemulsions can be promoted as effective carriers for red raspberry seed oil and/or hydro-glycolic fruit extracts in topical formulations intended for skin protection and hydration.",
publisher = "MDPI AG",
journal = "Nanomaterials",
title = "Polyglycerol ester-based low energy nanoemulsions with red raspberry seed oil and fruit extracts: Formulation development toward effective in vitro/in vivo bioperformance",
volume = "11",
number = "1",
pages = "1-21",
doi = "10.3390/nano11010217"
}
Gledović, A., Janošević-Ležaić, A., Nikolić, I., Tasić-Kostov, M., Antić-Stanković, J., Krstonošić, V., Ranđelović, D., Božić, D., Ilić, D., Tamburić, S.,& Savić, S.. (2021). Polyglycerol ester-based low energy nanoemulsions with red raspberry seed oil and fruit extracts: Formulation development toward effective in vitro/in vivo bioperformance. in Nanomaterials
MDPI AG., 11(1), 1-21.
https://doi.org/10.3390/nano11010217
Gledović A, Janošević-Ležaić A, Nikolić I, Tasić-Kostov M, Antić-Stanković J, Krstonošić V, Ranđelović D, Božić D, Ilić D, Tamburić S, Savić S. Polyglycerol ester-based low energy nanoemulsions with red raspberry seed oil and fruit extracts: Formulation development toward effective in vitro/in vivo bioperformance. in Nanomaterials. 2021;11(1):1-21.
doi:10.3390/nano11010217 .
Gledović, Ana, Janošević-Ležaić, Aleksandra, Nikolić, Ines, Tasić-Kostov, Marija, Antić-Stanković, Jelena, Krstonošić, Veljko, Ranđelović, Danijela, Božić, Dragana, Ilić, Dušan, Tamburić, Slobodanka, Savić, Snežana, "Polyglycerol ester-based low energy nanoemulsions with red raspberry seed oil and fruit extracts: Formulation development toward effective in vitro/in vivo bioperformance" in Nanomaterials, 11, no. 1 (2021):1-21,
https://doi.org/10.3390/nano11010217 . .
3
14
3
12

Technological approaches for improving vaccination compliance and coverage

Lemoine, Céline; Thakur, Aneesh; Krajišnik, Danina; Guyon, Romain; Longet, S.; Razim, Agnieszka; Górska, Sabina; Pantelić, Ivana; Ilić, Tanja; Nikolić, Ines; Lavelle, Ed C.; Gamian, Ed C.; Savić, Snežana; Milicic, Anita

(MDPI AG, 2020)

TY  - JOUR
AU  - Lemoine, Céline
AU  - Thakur, Aneesh
AU  - Krajišnik, Danina
AU  - Guyon, Romain
AU  - Longet, S.
AU  - Razim, Agnieszka
AU  - Górska, Sabina
AU  - Pantelić, Ivana
AU  - Ilić, Tanja
AU  - Nikolić, Ines
AU  - Lavelle, Ed C.
AU  - Gamian, Ed C.
AU  - Savić, Snežana
AU  - Milicic, Anita
PY  - 2020
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/3627
AB  - Vaccination has been well recognised as a critically important tool in preventing infectious disease, yet incomplete immunisation coverage remains a major obstacle to achieving disease control and eradication. As medical products for global access, vaccines need to be safe, effective and inexpensive. In line with these goals, continuous improvements of vaccine delivery strategies are necessary to achieve the full potential of immunisation. Novel technologies related to vaccine delivery and route of administration, use of advanced adjuvants and controlled antigen release (single-dose immunisation) approaches are expected to contribute to improved coverage and patient compliance. This review discusses the application of micro-and nano-technologies in the alternative routes of vaccine administration (mucosal and cutaneous vaccination), oral vaccine delivery as well as vaccine encapsulation with the aim of controlled antigen release for single-dose vaccination.
PB  - MDPI AG
T2  - Vaccines
T1  - Technological approaches for improving vaccination compliance and coverage
VL  - 8
IS  - 2
SP  - 1
EP  - 28
DO  - 10.3390/vaccines8020304
ER  - 
@article{
author = "Lemoine, Céline and Thakur, Aneesh and Krajišnik, Danina and Guyon, Romain and Longet, S. and Razim, Agnieszka and Górska, Sabina and Pantelić, Ivana and Ilić, Tanja and Nikolić, Ines and Lavelle, Ed C. and Gamian, Ed C. and Savić, Snežana and Milicic, Anita",
year = "2020",
abstract = "Vaccination has been well recognised as a critically important tool in preventing infectious disease, yet incomplete immunisation coverage remains a major obstacle to achieving disease control and eradication. As medical products for global access, vaccines need to be safe, effective and inexpensive. In line with these goals, continuous improvements of vaccine delivery strategies are necessary to achieve the full potential of immunisation. Novel technologies related to vaccine delivery and route of administration, use of advanced adjuvants and controlled antigen release (single-dose immunisation) approaches are expected to contribute to improved coverage and patient compliance. This review discusses the application of micro-and nano-technologies in the alternative routes of vaccine administration (mucosal and cutaneous vaccination), oral vaccine delivery as well as vaccine encapsulation with the aim of controlled antigen release for single-dose vaccination.",
publisher = "MDPI AG",
journal = "Vaccines",
title = "Technological approaches for improving vaccination compliance and coverage",
volume = "8",
number = "2",
pages = "1-28",
doi = "10.3390/vaccines8020304"
}
Lemoine, C., Thakur, A., Krajišnik, D., Guyon, R., Longet, S., Razim, A., Górska, S., Pantelić, I., Ilić, T., Nikolić, I., Lavelle, E. C., Gamian, E. C., Savić, S.,& Milicic, A.. (2020). Technological approaches for improving vaccination compliance and coverage. in Vaccines
MDPI AG., 8(2), 1-28.
https://doi.org/10.3390/vaccines8020304
Lemoine C, Thakur A, Krajišnik D, Guyon R, Longet S, Razim A, Górska S, Pantelić I, Ilić T, Nikolić I, Lavelle EC, Gamian EC, Savić S, Milicic A. Technological approaches for improving vaccination compliance and coverage. in Vaccines. 2020;8(2):1-28.
doi:10.3390/vaccines8020304 .
Lemoine, Céline, Thakur, Aneesh, Krajišnik, Danina, Guyon, Romain, Longet, S., Razim, Agnieszka, Górska, Sabina, Pantelić, Ivana, Ilić, Tanja, Nikolić, Ines, Lavelle, Ed C., Gamian, Ed C., Savić, Snežana, Milicic, Anita, "Technological approaches for improving vaccination compliance and coverage" in Vaccines, 8, no. 2 (2020):1-28,
https://doi.org/10.3390/vaccines8020304 . .
7
23
10
24

Low-energy nanoemulsions as carriers for red raspberry seed oil: Formulation approach based on Raman spectroscopy and textural analysis, physicochemical properties, stability and in vitro antioxidant/ biological activity

Gledović, Ana; Janošević-Ležaić, Aleksandra; Krstonošić, Veljko; Đoković, Jelena; Nikolić, Ines; Bajuk-Bogdanović, Danica; Antić-Stanković, Jelena; Ranđelović, Danijela; Savić, Sanela M.; Filipović, Mila; Tamburić, Slobodanka; Savić, Snežana

(Public Library of Science, 2020)

TY  - JOUR
AU  - Gledović, Ana
AU  - Janošević-Ležaić, Aleksandra
AU  - Krstonošić, Veljko
AU  - Đoković, Jelena
AU  - Nikolić, Ines
AU  - Bajuk-Bogdanović, Danica
AU  - Antić-Stanković, Jelena
AU  - Ranđelović, Danijela
AU  - Savić, Sanela M.
AU  - Filipović, Mila
AU  - Tamburić, Slobodanka
AU  - Savić, Snežana
PY  - 2020
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/3581
AB  - Considering a growing demand for medicinal/cosmetic products with natural actives, this study focuses on the low-energy nanoemulsions (LE-NEs) prepared via the Phase inversion composition (PIC) method at room temperature as potential carriers for natural oil. Four different red raspberry seed oils (ROs) were tested, as follows: cold-pressed vs. CO2- extracted, organic vs. non-organic, refined vs. unrefined. The oil phase was optimized with Tocopheryl acetate and Isostearyl isostearate, while water phase was adjusted with either glycerol or an antioxidant hydro-glycolic extract. This study has used a combined approach to formulation development, employing both conventional methods (pseudo-ternary phase diagram - PTPD, electrical conductivity, particle size measurements, microscopical analysis, and rheological measurements) and the methods novel to this area, such as textural analysis and Raman spectroscopy. Raman spectroscopy has detected fine differences in chemical composition among ROs, and it detected the interactions within nanoemulsions. It was shown that the cold-pressed, unrefined, organic grade oil (RO2) with 6.62% saturated fatty acids and 92.25% unsaturated fatty acids, was optimal for the LE-NEs. Textural analysis confirmed the existence of cubic gel-like phase as a crucial step in the formation of stable RO2-loaded LE-NEs, with droplets in the narrow nano-range (125 to 135 nm; PDI ≤ 0.1). The DPPH test in methanol and ABTS in aqueous medium have revealed a synergistic free radical scavenging effect between lipophilic and hydrophilic antioxidants in LE-NEs. The nanoemulsion carrier has improved the biological effect of raw materials on HeLa cervical adenocarcinoma cells, while exhibiting good safety profile, as confirmed on MRC-5 normal human lung fibroblasts. Overall, this study has shown that low-energy nanoemulsions present very promising carriers for topical delivery of natural bioactives. Raman spectroscopy and textural analysis have proven to be a useful addition to the arsenal of methods used in the formulation and characterization of nanoemulsion systems.
PB  - Public Library of Science
T2  - PLoS ONE
T1  - Low-energy nanoemulsions as carriers for red raspberry seed oil: Formulation approach based on Raman spectroscopy and textural analysis, physicochemical properties, stability and in vitro antioxidant/ biological activity
VL  - 15
IS  - 4
DO  - 10.1371/journal.pone.0230993
ER  - 
@article{
author = "Gledović, Ana and Janošević-Ležaić, Aleksandra and Krstonošić, Veljko and Đoković, Jelena and Nikolić, Ines and Bajuk-Bogdanović, Danica and Antić-Stanković, Jelena and Ranđelović, Danijela and Savić, Sanela M. and Filipović, Mila and Tamburić, Slobodanka and Savić, Snežana",
year = "2020",
abstract = "Considering a growing demand for medicinal/cosmetic products with natural actives, this study focuses on the low-energy nanoemulsions (LE-NEs) prepared via the Phase inversion composition (PIC) method at room temperature as potential carriers for natural oil. Four different red raspberry seed oils (ROs) were tested, as follows: cold-pressed vs. CO2- extracted, organic vs. non-organic, refined vs. unrefined. The oil phase was optimized with Tocopheryl acetate and Isostearyl isostearate, while water phase was adjusted with either glycerol or an antioxidant hydro-glycolic extract. This study has used a combined approach to formulation development, employing both conventional methods (pseudo-ternary phase diagram - PTPD, electrical conductivity, particle size measurements, microscopical analysis, and rheological measurements) and the methods novel to this area, such as textural analysis and Raman spectroscopy. Raman spectroscopy has detected fine differences in chemical composition among ROs, and it detected the interactions within nanoemulsions. It was shown that the cold-pressed, unrefined, organic grade oil (RO2) with 6.62% saturated fatty acids and 92.25% unsaturated fatty acids, was optimal for the LE-NEs. Textural analysis confirmed the existence of cubic gel-like phase as a crucial step in the formation of stable RO2-loaded LE-NEs, with droplets in the narrow nano-range (125 to 135 nm; PDI ≤ 0.1). The DPPH test in methanol and ABTS in aqueous medium have revealed a synergistic free radical scavenging effect between lipophilic and hydrophilic antioxidants in LE-NEs. The nanoemulsion carrier has improved the biological effect of raw materials on HeLa cervical adenocarcinoma cells, while exhibiting good safety profile, as confirmed on MRC-5 normal human lung fibroblasts. Overall, this study has shown that low-energy nanoemulsions present very promising carriers for topical delivery of natural bioactives. Raman spectroscopy and textural analysis have proven to be a useful addition to the arsenal of methods used in the formulation and characterization of nanoemulsion systems.",
publisher = "Public Library of Science",
journal = "PLoS ONE",
title = "Low-energy nanoemulsions as carriers for red raspberry seed oil: Formulation approach based on Raman spectroscopy and textural analysis, physicochemical properties, stability and in vitro antioxidant/ biological activity",
volume = "15",
number = "4",
doi = "10.1371/journal.pone.0230993"
}
Gledović, A., Janošević-Ležaić, A., Krstonošić, V., Đoković, J., Nikolić, I., Bajuk-Bogdanović, D., Antić-Stanković, J., Ranđelović, D., Savić, S. M., Filipović, M., Tamburić, S.,& Savić, S.. (2020). Low-energy nanoemulsions as carriers for red raspberry seed oil: Formulation approach based on Raman spectroscopy and textural analysis, physicochemical properties, stability and in vitro antioxidant/ biological activity. in PLoS ONE
Public Library of Science., 15(4).
https://doi.org/10.1371/journal.pone.0230993
Gledović A, Janošević-Ležaić A, Krstonošić V, Đoković J, Nikolić I, Bajuk-Bogdanović D, Antić-Stanković J, Ranđelović D, Savić SM, Filipović M, Tamburić S, Savić S. Low-energy nanoemulsions as carriers for red raspberry seed oil: Formulation approach based on Raman spectroscopy and textural analysis, physicochemical properties, stability and in vitro antioxidant/ biological activity. in PLoS ONE. 2020;15(4).
doi:10.1371/journal.pone.0230993 .
Gledović, Ana, Janošević-Ležaić, Aleksandra, Krstonošić, Veljko, Đoković, Jelena, Nikolić, Ines, Bajuk-Bogdanović, Danica, Antić-Stanković, Jelena, Ranđelović, Danijela, Savić, Sanela M., Filipović, Mila, Tamburić, Slobodanka, Savić, Snežana, "Low-energy nanoemulsions as carriers for red raspberry seed oil: Formulation approach based on Raman spectroscopy and textural analysis, physicochemical properties, stability and in vitro antioxidant/ biological activity" in PLoS ONE, 15, no. 4 (2020),
https://doi.org/10.1371/journal.pone.0230993 . .
1
21
6
20

Curcumin-loaded low-energy nanoemulsions: Linking EPR spectroscopy-analysed microstructure and antioxidant potential with in vitro evaluated biological activity

Nikolić, Ines; Mitsou, Evgenia; Damjanović, Ana; Papadimitriou, Vassiliki; Antić-Stanković, Jelena; Stanojević, Boban; Xenakis, Aristotelis; Savić, Snežana

(Elsevier B.V., 2020)

TY  - JOUR
AU  - Nikolić, Ines
AU  - Mitsou, Evgenia
AU  - Damjanović, Ana
AU  - Papadimitriou, Vassiliki
AU  - Antić-Stanković, Jelena
AU  - Stanojević, Boban
AU  - Xenakis, Aristotelis
AU  - Savić, Snežana
PY  - 2020
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/3528
AB  - The objective of this work was to investigate and profoundly characterize low-energy nanoemulsions as multifunctional carriers, with slight reference to dermal administration. An evidence-based approach was offered for deepening the knowledge on their formation via spontaneous emulsification. Curcumin, a compound of natural origin, potentially powerful therapeutic, was chosen as a model API. Due to curcumin's demanding properties (instability, poor solubility, low permeability), its potentials remain unreached. Low-energy nanoemulsions were considered carriers capable of overcoming imposed obstacles. Formulation consisting of Polysorbate 80 and soybean lecithin as stabilizers (9:1, 10%), medium-chain triglycerides as the oil phase (10%) and ultrapure water was selected for curcumin incorporation in 3 different concentrations (1, 2 and 3 mg/mL). Physicochemical stability was demonstrated during 3 months of monitoring (mean droplet size: 111.3-146.8 nm; PDI < 0.2; pH: 4.73-5.73). Curcumin's release from developed vehicles followed Higuchi's kinetics. DPPH (IC50 = 0.1187 mg/ mL) and FRAP (1.19 +/- 0.02 mmol/g) assays confirmed that curcumin acts as a potent antioxidant through different mechanisms, with no alterations after incorporation in the formulation. High biocompatibility in line with antigenotoxic activity of curcumin-loaded formulations (protective and reparative) was estimated through Comet assay. A multidisciplinary approach is needed to fully characterize developed systems, directing them to more concrete application possibilities.
PB  - Elsevier B.V.
T2  - Journal of Molecular Liquids
T1  - Curcumin-loaded low-energy nanoemulsions: Linking EPR spectroscopy-analysed microstructure and antioxidant potential with in vitro evaluated biological activity
VL  - 301
DO  - 10.1016/j.molliq.2020.112479
ER  - 
@article{
author = "Nikolić, Ines and Mitsou, Evgenia and Damjanović, Ana and Papadimitriou, Vassiliki and Antić-Stanković, Jelena and Stanojević, Boban and Xenakis, Aristotelis and Savić, Snežana",
year = "2020",
abstract = "The objective of this work was to investigate and profoundly characterize low-energy nanoemulsions as multifunctional carriers, with slight reference to dermal administration. An evidence-based approach was offered for deepening the knowledge on their formation via spontaneous emulsification. Curcumin, a compound of natural origin, potentially powerful therapeutic, was chosen as a model API. Due to curcumin's demanding properties (instability, poor solubility, low permeability), its potentials remain unreached. Low-energy nanoemulsions were considered carriers capable of overcoming imposed obstacles. Formulation consisting of Polysorbate 80 and soybean lecithin as stabilizers (9:1, 10%), medium-chain triglycerides as the oil phase (10%) and ultrapure water was selected for curcumin incorporation in 3 different concentrations (1, 2 and 3 mg/mL). Physicochemical stability was demonstrated during 3 months of monitoring (mean droplet size: 111.3-146.8 nm; PDI < 0.2; pH: 4.73-5.73). Curcumin's release from developed vehicles followed Higuchi's kinetics. DPPH (IC50 = 0.1187 mg/ mL) and FRAP (1.19 +/- 0.02 mmol/g) assays confirmed that curcumin acts as a potent antioxidant through different mechanisms, with no alterations after incorporation in the formulation. High biocompatibility in line with antigenotoxic activity of curcumin-loaded formulations (protective and reparative) was estimated through Comet assay. A multidisciplinary approach is needed to fully characterize developed systems, directing them to more concrete application possibilities.",
publisher = "Elsevier B.V.",
journal = "Journal of Molecular Liquids",
title = "Curcumin-loaded low-energy nanoemulsions: Linking EPR spectroscopy-analysed microstructure and antioxidant potential with in vitro evaluated biological activity",
volume = "301",
doi = "10.1016/j.molliq.2020.112479"
}
Nikolić, I., Mitsou, E., Damjanović, A., Papadimitriou, V., Antić-Stanković, J., Stanojević, B., Xenakis, A.,& Savić, S.. (2020). Curcumin-loaded low-energy nanoemulsions: Linking EPR spectroscopy-analysed microstructure and antioxidant potential with in vitro evaluated biological activity. in Journal of Molecular Liquids
Elsevier B.V.., 301.
https://doi.org/10.1016/j.molliq.2020.112479
Nikolić I, Mitsou E, Damjanović A, Papadimitriou V, Antić-Stanković J, Stanojević B, Xenakis A, Savić S. Curcumin-loaded low-energy nanoemulsions: Linking EPR spectroscopy-analysed microstructure and antioxidant potential with in vitro evaluated biological activity. in Journal of Molecular Liquids. 2020;301.
doi:10.1016/j.molliq.2020.112479 .
Nikolić, Ines, Mitsou, Evgenia, Damjanović, Ana, Papadimitriou, Vassiliki, Antić-Stanković, Jelena, Stanojević, Boban, Xenakis, Aristotelis, Savić, Snežana, "Curcumin-loaded low-energy nanoemulsions: Linking EPR spectroscopy-analysed microstructure and antioxidant potential with in vitro evaluated biological activity" in Journal of Molecular Liquids, 301 (2020),
https://doi.org/10.1016/j.molliq.2020.112479 . .
20
19

Curcumin Nanonization Using An Alternative Small-Scale Production Unit: Selection of Proper Stabilizer Applying Basic Physicochemical Consideration and Biological Activity Assessment of Nanocrystals

Nikolić, Ines; Antić-Stanković, Jelena; Božić, Dragana; Ranđelovic, Danijela; Marković, Bojan; Lunter, Dominique Jasmin; Kremenović, Aleksandar; Savić, Miroslav; Savić, Snežana

(Walter de Gruyter GmbH, 2020)

TY  - JOUR
AU  - Nikolić, Ines
AU  - Antić-Stanković, Jelena
AU  - Božić, Dragana
AU  - Ranđelovic, Danijela
AU  - Marković, Bojan
AU  - Lunter, Dominique Jasmin
AU  - Kremenović, Aleksandar
AU  - Savić, Miroslav
AU  - Savić, Snežana
PY  - 2020
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/3711
AB  - As the number of poorly soluble drugs is increasing, nanocrystals have become very interesting due to wide range of application possibilities. Curcuminwas used as a model active ingredient in this work. Even though it has many proven positive effects, due to its physicochemical issues, its possibilities have not been fully exploited. The goal of this work was to select optimal conditions for a top-down method for curcumin nanosuspension production, and to perform their comprehensive characterization applying complementary methodologies: dynamic light scattering, polarization and atomic force microscopy, thermal analysis, X-ray powder diffraction, antioxidant activity evaluation, release kinetics assessment, and screening of potential biological effects applying cell viability assays on normal human lung fibroblasts, human melanoma and human adenomacarcinoma cells. After 30 min of milling, nanosuspensions stabilized by polysorbate 80 and by its combinations with sucrose palmitate showed good stability, while curcumin crystal structure was unaltered. Obtained nanocrystals were well defined, with average diameter 120-170 nm and PDI of about 0.25, zeta potential was below -30 mV and pH~5 for all formulations. Nanodispersions exhibited high antioxidant potential and improved dissolution rate compared to the corresponding coarse dispersions. Although curcumin nanodispersions exhibited significant antiproliferative effect to each cancer cell line, the highest effect was towards adenocarcinoma cells.
PB  - Walter de Gruyter GmbH
T2  - Reviews on Advanced Materials Science
T1  - Curcumin Nanonization Using An Alternative Small-Scale Production Unit: Selection of Proper Stabilizer Applying Basic Physicochemical Consideration and Biological Activity Assessment of Nanocrystals
VL  - 59
IS  - 1
SP  - 406
EP  - 424
DO  - 10.1515/rams-2020-0043
DO  - 2-s2.0-85092928784
ER  - 
@article{
author = "Nikolić, Ines and Antić-Stanković, Jelena and Božić, Dragana and Ranđelovic, Danijela and Marković, Bojan and Lunter, Dominique Jasmin and Kremenović, Aleksandar and Savić, Miroslav and Savić, Snežana",
year = "2020",
abstract = "As the number of poorly soluble drugs is increasing, nanocrystals have become very interesting due to wide range of application possibilities. Curcuminwas used as a model active ingredient in this work. Even though it has many proven positive effects, due to its physicochemical issues, its possibilities have not been fully exploited. The goal of this work was to select optimal conditions for a top-down method for curcumin nanosuspension production, and to perform their comprehensive characterization applying complementary methodologies: dynamic light scattering, polarization and atomic force microscopy, thermal analysis, X-ray powder diffraction, antioxidant activity evaluation, release kinetics assessment, and screening of potential biological effects applying cell viability assays on normal human lung fibroblasts, human melanoma and human adenomacarcinoma cells. After 30 min of milling, nanosuspensions stabilized by polysorbate 80 and by its combinations with sucrose palmitate showed good stability, while curcumin crystal structure was unaltered. Obtained nanocrystals were well defined, with average diameter 120-170 nm and PDI of about 0.25, zeta potential was below -30 mV and pH~5 for all formulations. Nanodispersions exhibited high antioxidant potential and improved dissolution rate compared to the corresponding coarse dispersions. Although curcumin nanodispersions exhibited significant antiproliferative effect to each cancer cell line, the highest effect was towards adenocarcinoma cells.",
publisher = "Walter de Gruyter GmbH",
journal = "Reviews on Advanced Materials Science",
title = "Curcumin Nanonization Using An Alternative Small-Scale Production Unit: Selection of Proper Stabilizer Applying Basic Physicochemical Consideration and Biological Activity Assessment of Nanocrystals",
volume = "59",
number = "1",
pages = "406-424",
doi = "10.1515/rams-2020-0043, 2-s2.0-85092928784"
}
Nikolić, I., Antić-Stanković, J., Božić, D., Ranđelovic, D., Marković, B., Lunter, D. J., Kremenović, A., Savić, M.,& Savić, S.. (2020). Curcumin Nanonization Using An Alternative Small-Scale Production Unit: Selection of Proper Stabilizer Applying Basic Physicochemical Consideration and Biological Activity Assessment of Nanocrystals. in Reviews on Advanced Materials Science
Walter de Gruyter GmbH., 59(1), 406-424.
https://doi.org/10.1515/rams-2020-0043
Nikolić I, Antić-Stanković J, Božić D, Ranđelovic D, Marković B, Lunter DJ, Kremenović A, Savić M, Savić S. Curcumin Nanonization Using An Alternative Small-Scale Production Unit: Selection of Proper Stabilizer Applying Basic Physicochemical Consideration and Biological Activity Assessment of Nanocrystals. in Reviews on Advanced Materials Science. 2020;59(1):406-424.
doi:10.1515/rams-2020-0043 .
Nikolić, Ines, Antić-Stanković, Jelena, Božić, Dragana, Ranđelovic, Danijela, Marković, Bojan, Lunter, Dominique Jasmin, Kremenović, Aleksandar, Savić, Miroslav, Savić, Snežana, "Curcumin Nanonization Using An Alternative Small-Scale Production Unit: Selection of Proper Stabilizer Applying Basic Physicochemical Consideration and Biological Activity Assessment of Nanocrystals" in Reviews on Advanced Materials Science, 59, no. 1 (2020):406-424,
https://doi.org/10.1515/rams-2020-0043 . .