Cekić, Nebojša

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orcid::0000-0001-7271-0544
  • Cekić, Nebojša (33)
  • Cekić, Nebojša D. (1)
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Author's Bibliography

Efficient Development of Green Emulsifier/Emollient-Based Emulsion Vehicles: From RSM Optimal Experimental Design to Abridged In Vivo Assessment

Vukašinović, Mila; Savić, Sanela; Cekić, Nebojša; Ilić, Tanja; Pantelić, Ivana; Savić, Snežana

(MDPI, 2023)

TY  - JOUR
AU  - Vukašinović, Mila
AU  - Savić, Sanela
AU  - Cekić, Nebojša
AU  - Ilić, Tanja
AU  - Pantelić, Ivana
AU  - Savić, Snežana
PY  - 2023
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/4517
AB  - Since natural-origin, sustainable ingredients are preferred by modern consumers, novel emulsifiers and emollients keep entering the market. This study hypothesizes that a combination of in silico, instrumental tools and simplified sensory studies could be used to efficiently characterize emulsions in a shorter timeframe. A total of 22 rather simple o/w emulsions were prepared by a time/energy-saving emulsification process. A natural mixed emulsifier (Lauryl Glucoside/Myristyl Glucoside/Polyglyceryl-6 Laurate) and two emollients (both with INCI name C15–19 Alkane) were used. The performed D-optimal experimental design within the response surface method (RSM) significantly narrowed down the number of samples about to enter the stage of texture, friction and sensory studies to the samples comprising 30% of a respective Emogreen emollient and 2% or 3% of the emulsifier. The sample comprising 2% emulsifier/30% Emogreen® L15 showed significantly higher firmness (42.12 mN) when compared to the one with 2% emulsifier/30% Emogreen® L19 (33.62 mN), which was somewhat unexpected considering the emollients’ inherent viscosity values (4.5 mPa·s for L15 and 9 mPa·s for L19). The sample with 2% emulsifier/30% Emogreen® L19 managed to maintain the lowest friction, while the one with 3% emulsifier/30% Emogreen® L19 released its full lubricating potential in the second part of the measurement (30–60 s). The obtained results revealed the strengths and weaknesses of each formulation, narrowing down their possible applications in the early development stage.
PB  - MDPI
T2  - Pharmaceutics
T1  - Efficient Development of Green Emulsifier/Emollient-Based Emulsion Vehicles: From RSM Optimal Experimental Design to Abridged In Vivo Assessment
VL  - 15
IS  - 2
DO  - 10.3390/pharmaceutics15020486
ER  - 
@article{
author = "Vukašinović, Mila and Savić, Sanela and Cekić, Nebojša and Ilić, Tanja and Pantelić, Ivana and Savić, Snežana",
year = "2023",
abstract = "Since natural-origin, sustainable ingredients are preferred by modern consumers, novel emulsifiers and emollients keep entering the market. This study hypothesizes that a combination of in silico, instrumental tools and simplified sensory studies could be used to efficiently characterize emulsions in a shorter timeframe. A total of 22 rather simple o/w emulsions were prepared by a time/energy-saving emulsification process. A natural mixed emulsifier (Lauryl Glucoside/Myristyl Glucoside/Polyglyceryl-6 Laurate) and two emollients (both with INCI name C15–19 Alkane) were used. The performed D-optimal experimental design within the response surface method (RSM) significantly narrowed down the number of samples about to enter the stage of texture, friction and sensory studies to the samples comprising 30% of a respective Emogreen emollient and 2% or 3% of the emulsifier. The sample comprising 2% emulsifier/30% Emogreen® L15 showed significantly higher firmness (42.12 mN) when compared to the one with 2% emulsifier/30% Emogreen® L19 (33.62 mN), which was somewhat unexpected considering the emollients’ inherent viscosity values (4.5 mPa·s for L15 and 9 mPa·s for L19). The sample with 2% emulsifier/30% Emogreen® L19 managed to maintain the lowest friction, while the one with 3% emulsifier/30% Emogreen® L19 released its full lubricating potential in the second part of the measurement (30–60 s). The obtained results revealed the strengths and weaknesses of each formulation, narrowing down their possible applications in the early development stage.",
publisher = "MDPI",
journal = "Pharmaceutics",
title = "Efficient Development of Green Emulsifier/Emollient-Based Emulsion Vehicles: From RSM Optimal Experimental Design to Abridged In Vivo Assessment",
volume = "15",
number = "2",
doi = "10.3390/pharmaceutics15020486"
}
Vukašinović, M., Savić, S., Cekić, N., Ilić, T., Pantelić, I.,& Savić, S.. (2023). Efficient Development of Green Emulsifier/Emollient-Based Emulsion Vehicles: From RSM Optimal Experimental Design to Abridged In Vivo Assessment. in Pharmaceutics
MDPI., 15(2).
https://doi.org/10.3390/pharmaceutics15020486
Vukašinović M, Savić S, Cekić N, Ilić T, Pantelić I, Savić S. Efficient Development of Green Emulsifier/Emollient-Based Emulsion Vehicles: From RSM Optimal Experimental Design to Abridged In Vivo Assessment. in Pharmaceutics. 2023;15(2).
doi:10.3390/pharmaceutics15020486 .
Vukašinović, Mila, Savić, Sanela, Cekić, Nebojša, Ilić, Tanja, Pantelić, Ivana, Savić, Snežana, "Efficient Development of Green Emulsifier/Emollient-Based Emulsion Vehicles: From RSM Optimal Experimental Design to Abridged In Vivo Assessment" in Pharmaceutics, 15, no. 2 (2023),
https://doi.org/10.3390/pharmaceutics15020486 . .
3
3

Stability evaluation of emulsion-based topical preparations: a valuable potential of dynamic- mechanical thermoanalysis (DMTA) test as a rapid rheological alternative to conventional freeze- thaw test

Cekić, Nebojša; Savić, Sanela; Savić, Snežana

(Savez farmaceutskih udruženja Srbije, 2023)

TY  - JOUR
AU  - Cekić, Nebojša
AU  - Savić, Sanela
AU  - Savić, Snežana
PY  - 2023
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/5357
AB  - The assessment of stability in emulsion-based topical preparations can be approached through
real-time monitoring and/or accelerated methods, drawing predictions from pertinent stability-related
physicochemical parameters. Ensuring the robustness and durability of topical products during
storage, transport, and application necessitates thorough stability testing. However, due to the diversity
of emulsion types and their intended use, there is no universal standard test, placing the liability on
formulators/manufacturer to tailor appropriate assessments. Notably, topical emulsions, particularly
cosmetic variants, often exhibit impressive stability with extended shelf lives. Nonetheless, evaluating
their stability and decision-making remain challenging and time-consuming in industrial contexts.
This underscores the demand for alternative testing protocols that expedite stability assessments and
predict emulsion-based product stability accurately. This article comprehensively surveys literature,
enriched with practical insights, exploring core mechanisms behind emulsion stability and prevention
of instability. The discussion encompasses diverse approaches to stability assessment, revealing
methodologies and parameters under examination during testing. Particular focus is placed on the
dynamic-mechanical thermoanalysis (DMTA) method explored as a rapid, rheologically-based
alternative to the conventional freeze-thaw test, emphasizing its usefulness for expediting the stability
evaluation of emulsion-based topical preparations.
AB  - Procena stabilnosti emulzionih preparata za topikalnu primenu može se sprovesti praćenjem promena u realnom vremenu i/ili primenom ubrzanih metoda, te predviđanjem stabilnosti i roka trajanja proizvoda na osnovu merenja relevantnih fizičkohemijskih parametara tokom ispitivanja. Kako bi se obezbedila robusnost i dugoročnost emulzionih proizvoda za kožu tokom čuvanja, transporta i primene, neophodno je sprovesti pažljivo isplanirano, opsežno ispitivanje stabilnosti. Međutim, imajući u vidu različite tipove emulzija i njihovu namenu, ne postoji univerzalni standardni protokol za ispitivanje stabilnosti, što formulatore/proizvođača čini odgovornim kada je u pitanju izbor odgovarajućeg testa i metodologije. Evidentno je da emulzije za topikalnu primenu, a posebno kozmetičke emulzije, često pokazuju visoku stabilnost sa dugim rokovima upotrebe. S druge strane, procena stabilnosti ovakvih emulzija i donošenje odgovarajućih odluka i dalje ostaje izazov u industrijskom okruženju i zahteva dosta vremena, što nameće potrebu za alternativnim protokolima koji omogućavaju ubrzano ispitivanje, ali i uspešno predviđanje stabilnosti emulzionih proizvoda. Prikazani rad daje sveobuhvatni pregled literature prožet praktičnim pogledima na ključne fenomene odgovorne za stabilnost emulzija, zatim daje uvid u različite pristupe za procenu njihove stabilnosti, uključujući metodologije koje se koriste i parametre koji se prate tokom ispitivanja. Rad u poseban fokus stavlja dinamičko-mehanički termoanalitički (DMTA) metod kao brzu reološku alternativu konvencionalnom testu smrzavanje-odmrzavanje, posebno ističući primenljivost metoda za ubrzano ispitivanje stabilnosti emulzionih preparata za topikalnu primenu.
PB  - Savez farmaceutskih udruženja Srbije
T2  - Arhiv za farmaciju
T1  - Stability evaluation of emulsion-based topical preparations: a valuable potential of dynamic- mechanical thermoanalysis (DMTA) test as a rapid rheological alternative to conventional freeze- thaw test
T1  - Procena stabilnosti emulzionih preparata za topikalnu primenu - vrednost dinamičkomehaničkog termoanalitičkog (DMTA) testa kao brze reološke alternative konvencionalnom testu smrzavanje-odmrzavanje
VL  - 73
IS  - 5
SP  - 358
EP  - 389
DO  - 10.5937/arhfarm73-46319
ER  - 
@article{
author = "Cekić, Nebojša and Savić, Sanela and Savić, Snežana",
year = "2023",
abstract = "The assessment of stability in emulsion-based topical preparations can be approached through
real-time monitoring and/or accelerated methods, drawing predictions from pertinent stability-related
physicochemical parameters. Ensuring the robustness and durability of topical products during
storage, transport, and application necessitates thorough stability testing. However, due to the diversity
of emulsion types and their intended use, there is no universal standard test, placing the liability on
formulators/manufacturer to tailor appropriate assessments. Notably, topical emulsions, particularly
cosmetic variants, often exhibit impressive stability with extended shelf lives. Nonetheless, evaluating
their stability and decision-making remain challenging and time-consuming in industrial contexts.
This underscores the demand for alternative testing protocols that expedite stability assessments and
predict emulsion-based product stability accurately. This article comprehensively surveys literature,
enriched with practical insights, exploring core mechanisms behind emulsion stability and prevention
of instability. The discussion encompasses diverse approaches to stability assessment, revealing
methodologies and parameters under examination during testing. Particular focus is placed on the
dynamic-mechanical thermoanalysis (DMTA) method explored as a rapid, rheologically-based
alternative to the conventional freeze-thaw test, emphasizing its usefulness for expediting the stability
evaluation of emulsion-based topical preparations., Procena stabilnosti emulzionih preparata za topikalnu primenu može se sprovesti praćenjem promena u realnom vremenu i/ili primenom ubrzanih metoda, te predviđanjem stabilnosti i roka trajanja proizvoda na osnovu merenja relevantnih fizičkohemijskih parametara tokom ispitivanja. Kako bi se obezbedila robusnost i dugoročnost emulzionih proizvoda za kožu tokom čuvanja, transporta i primene, neophodno je sprovesti pažljivo isplanirano, opsežno ispitivanje stabilnosti. Međutim, imajući u vidu različite tipove emulzija i njihovu namenu, ne postoji univerzalni standardni protokol za ispitivanje stabilnosti, što formulatore/proizvođača čini odgovornim kada je u pitanju izbor odgovarajućeg testa i metodologije. Evidentno je da emulzije za topikalnu primenu, a posebno kozmetičke emulzije, često pokazuju visoku stabilnost sa dugim rokovima upotrebe. S druge strane, procena stabilnosti ovakvih emulzija i donošenje odgovarajućih odluka i dalje ostaje izazov u industrijskom okruženju i zahteva dosta vremena, što nameće potrebu za alternativnim protokolima koji omogućavaju ubrzano ispitivanje, ali i uspešno predviđanje stabilnosti emulzionih proizvoda. Prikazani rad daje sveobuhvatni pregled literature prožet praktičnim pogledima na ključne fenomene odgovorne za stabilnost emulzija, zatim daje uvid u različite pristupe za procenu njihove stabilnosti, uključujući metodologije koje se koriste i parametre koji se prate tokom ispitivanja. Rad u poseban fokus stavlja dinamičko-mehanički termoanalitički (DMTA) metod kao brzu reološku alternativu konvencionalnom testu smrzavanje-odmrzavanje, posebno ističući primenljivost metoda za ubrzano ispitivanje stabilnosti emulzionih preparata za topikalnu primenu.",
publisher = "Savez farmaceutskih udruženja Srbije",
journal = "Arhiv za farmaciju",
title = "Stability evaluation of emulsion-based topical preparations: a valuable potential of dynamic- mechanical thermoanalysis (DMTA) test as a rapid rheological alternative to conventional freeze- thaw test, Procena stabilnosti emulzionih preparata za topikalnu primenu - vrednost dinamičkomehaničkog termoanalitičkog (DMTA) testa kao brze reološke alternative konvencionalnom testu smrzavanje-odmrzavanje",
volume = "73",
number = "5",
pages = "358-389",
doi = "10.5937/arhfarm73-46319"
}
Cekić, N., Savić, S.,& Savić, S.. (2023). Stability evaluation of emulsion-based topical preparations: a valuable potential of dynamic- mechanical thermoanalysis (DMTA) test as a rapid rheological alternative to conventional freeze- thaw test. in Arhiv za farmaciju
Savez farmaceutskih udruženja Srbije., 73(5), 358-389.
https://doi.org/10.5937/arhfarm73-46319
Cekić N, Savić S, Savić S. Stability evaluation of emulsion-based topical preparations: a valuable potential of dynamic- mechanical thermoanalysis (DMTA) test as a rapid rheological alternative to conventional freeze- thaw test. in Arhiv za farmaciju. 2023;73(5):358-389.
doi:10.5937/arhfarm73-46319 .
Cekić, Nebojša, Savić, Sanela, Savić, Snežana, "Stability evaluation of emulsion-based topical preparations: a valuable potential of dynamic- mechanical thermoanalysis (DMTA) test as a rapid rheological alternative to conventional freeze- thaw test" in Arhiv za farmaciju, 73, no. 5 (2023):358-389,
https://doi.org/10.5937/arhfarm73-46319 . .

Development of a “Green” Emulsion with a Milk Protein Hydrolysate: An Evaluation of Rheology, Texture, In Vitro Bioactivity, and Safety

Vukašinović, Mila; Pantelić, Ivana; Savić, Sanela; Cekić, Nebojša; Vukašinović Sekulić, Maja; Antić-Stanković, Jelena; Božić, Dragana; Tošić, Anđela; Tamburić, Slobodanka; Savić, Snežana

(MDPI, 2023)

TY  - JOUR
AU  - Vukašinović, Mila
AU  - Pantelić, Ivana
AU  - Savić, Sanela
AU  - Cekić, Nebojša
AU  - Vukašinović Sekulić, Maja
AU  - Antić-Stanković, Jelena
AU  - Božić, Dragana
AU  - Tošić, Anđela
AU  - Tamburić, Slobodanka
AU  - Savić, Snežana
PY  - 2023
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/5311
AB  - Bioactive peptides are promising cosmetic active ingredients that can improve skin health
and appearance. They exhibit a broad spectrum of activity, including anti-aging, antioxidant, an-
timicrobial, and anti-inflammatory effects. The aim of this study was to develop a safe, stable, and
efficacious environmentally friendly (“green”) emulsion using a milk protein hydrolysate as a model
active ingredient. Potential emulsions were formulated with biodegradable emollients, stabilized
with naturally derived mixed emulsifier, and prepared by cold process. They were evaluated for
rheological behavior (continuous rotation and oscillation tests), physical stability (dynamic me-
chanical thermal analysis—DMTA test), and texture profiles, as well as cytotoxic, antioxidant, and
antimicrobial effects. Rheological characterization revealed shear-thinning flow behavior with yield
point from continuous rotation tests and predominantly elastic character from oscillation (amplitude
and frequency sweep) tests, with small structural change detected in the DMTA test. These results
implied satisfactory rheological properties and good stability. Texture analysis revealed acceptable
spreadability and substantivity of the emulsions. The protein hydrolysate showed antioxidant activity.
The developed emulsions showed low antibacterial activity against selected microorganisms, but
this was due to the action of preservatives, not peptides. All potential emulsions showed a desirable
safety profile. The results obtained provide the basis for the next stage of formulation development,
i.e., in vivo efficacy tests.
PB  - MDPI
T2  - Cosmetics
T1  - Development of a “Green” Emulsion with a Milk Protein Hydrolysate: An Evaluation of Rheology, Texture, In Vitro Bioactivity, and Safety
VL  - 10
IS  - 6
DO  - 10.3390/cosmetics10060162
ER  - 
@article{
author = "Vukašinović, Mila and Pantelić, Ivana and Savić, Sanela and Cekić, Nebojša and Vukašinović Sekulić, Maja and Antić-Stanković, Jelena and Božić, Dragana and Tošić, Anđela and Tamburić, Slobodanka and Savić, Snežana",
year = "2023",
abstract = "Bioactive peptides are promising cosmetic active ingredients that can improve skin health
and appearance. They exhibit a broad spectrum of activity, including anti-aging, antioxidant, an-
timicrobial, and anti-inflammatory effects. The aim of this study was to develop a safe, stable, and
efficacious environmentally friendly (“green”) emulsion using a milk protein hydrolysate as a model
active ingredient. Potential emulsions were formulated with biodegradable emollients, stabilized
with naturally derived mixed emulsifier, and prepared by cold process. They were evaluated for
rheological behavior (continuous rotation and oscillation tests), physical stability (dynamic me-
chanical thermal analysis—DMTA test), and texture profiles, as well as cytotoxic, antioxidant, and
antimicrobial effects. Rheological characterization revealed shear-thinning flow behavior with yield
point from continuous rotation tests and predominantly elastic character from oscillation (amplitude
and frequency sweep) tests, with small structural change detected in the DMTA test. These results
implied satisfactory rheological properties and good stability. Texture analysis revealed acceptable
spreadability and substantivity of the emulsions. The protein hydrolysate showed antioxidant activity.
The developed emulsions showed low antibacterial activity against selected microorganisms, but
this was due to the action of preservatives, not peptides. All potential emulsions showed a desirable
safety profile. The results obtained provide the basis for the next stage of formulation development,
i.e., in vivo efficacy tests.",
publisher = "MDPI",
journal = "Cosmetics",
title = "Development of a “Green” Emulsion with a Milk Protein Hydrolysate: An Evaluation of Rheology, Texture, In Vitro Bioactivity, and Safety",
volume = "10",
number = "6",
doi = "10.3390/cosmetics10060162"
}
Vukašinović, M., Pantelić, I., Savić, S., Cekić, N., Vukašinović Sekulić, M., Antić-Stanković, J., Božić, D., Tošić, A., Tamburić, S.,& Savić, S.. (2023). Development of a “Green” Emulsion with a Milk Protein Hydrolysate: An Evaluation of Rheology, Texture, In Vitro Bioactivity, and Safety. in Cosmetics
MDPI., 10(6).
https://doi.org/10.3390/cosmetics10060162
Vukašinović M, Pantelić I, Savić S, Cekić N, Vukašinović Sekulić M, Antić-Stanković J, Božić D, Tošić A, Tamburić S, Savić S. Development of a “Green” Emulsion with a Milk Protein Hydrolysate: An Evaluation of Rheology, Texture, In Vitro Bioactivity, and Safety. in Cosmetics. 2023;10(6).
doi:10.3390/cosmetics10060162 .
Vukašinović, Mila, Pantelić, Ivana, Savić, Sanela, Cekić, Nebojša, Vukašinović Sekulić, Maja, Antić-Stanković, Jelena, Božić, Dragana, Tošić, Anđela, Tamburić, Slobodanka, Savić, Snežana, "Development of a “Green” Emulsion with a Milk Protein Hydrolysate: An Evaluation of Rheology, Texture, In Vitro Bioactivity, and Safety" in Cosmetics, 10, no. 6 (2023),
https://doi.org/10.3390/cosmetics10060162 . .
1

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

A proposal of innovative injectability assessment method for intravenous formulations - case study on PEGylated nanoemulsions

Đoković, Jelena; Savić, Sanela; Cekić, Nebojša; Savić, Snežana

(2022)

TY  - CONF
AU  - Đoković, Jelena
AU  - Savić, Sanela
AU  - Cekić, Nebojša
AU  - Savić, Snežana
PY  - 2022
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/4269
AB  - 1.	INTRODUCTION
Syringeability and injectability are recognised as fundamental performance parameters / critical quality attributes of any parenteral dosage form. Syringeability refers to the ability of an injectable preparation to transfer from a vial through a hypodermic needle prior an injection, while injectability is defined as the force, or pressure, required to inject the formulation from a syringe-needle system into the tissue [1]. When developing drug delivery systems, the priority is usually the release kinetics, biocompatibility or other factors that may come in conflict with the optimal parameters for the applicability of those systems [2]. The aim of this research was to develop a method that could be used for injectability assessment of the intravenous formulations and the application of this method on curcumin-loaded PEGylated nanoemulsions (NEs) in order to gage the impact of PEGylation on NEs injectability.
2. MATERIALS AND METHODS
2.1. Nanoemulsion preparation
Nanoemulsions were prepared using high pressure homogenization method. The aqueous phase (glycerol, polysorbate 80, sodium oleate and highly purified water) was added into the oil phase (soybean oil, soybean lecithin, medium chain triglycerides, butylhydroxytoluene, benzyl alcohol, curcumin and PEGylated phospholipid – PEG2000-DSPE in 0.1 %, 0.3 % or 0.6 % concentrations) and mixed using rotor-stator homogenizer (IKA Ultra-Turrax® T25 digital, IKA®-Werke GmbH and Co. KG, Staufen, Germany), and further processed on high pressure homogenizer (EmulsiFlex-C3, Avestin Inc., Canada) at 800 bar for 10 discontinued cycles. The non PEGylated formulation was marked as CS, and the PEGylated ones were marked S1, S3 and S6, referring to the PEG2000-DSPE concentration.
2.2. Physicochemical characterization
The NEs droplet size (Z-Ave) and droplet size distribution (PDI) were determined with Zetasizer Nano ZS90 (Malvern Instruments Ltd., Worcestershire). Rheological analysis was performed using MCR 302 air-bearing rheometer (Anton Paar, Graz, Austria) equipped with coaxial cylinders system (CC27 measuring bob with C-PTD 180/Air) with sheer rate range of 0.1-100 s-1 at 20°C.
2.3. Injectabilty assesment
The injectability of the NEs was expressed as force (N) needed to extrude the NE in the function of the extruded volume (ml). About 10 ml of the NE was loaded into the 10 ml syringe and extruded through the 25 G scalp vein infusion set (Romed, Wilnis, Netherlands) into the blood mimicking solution, circulating through pump at 4 ml/min, in order to assess the NEs’ performance in the prospective intravenous administration. The NEs were extruded at 1 mm/s croshead speed of the loading cell of the texure analyzer (EZ-LX Compact Table-Top Testing Machine, Shimadzu, Japan) with the TrapeziumX software version 1.5 used for data collection and analysis
3. RESULTS AND DISCUSSION
3.1. Physicochemical characterization
The NEs have average size of about 100 nm, with the PDI values below 0.20, indicating suitability for intravenous application. It could be observed from Fig. 1 that the addition of PEGylated phospholipids caused an increase in NE viscosity, as could be expected given that the polyethylene glycols are used in parenteral suspensions as stabilizing - rheology modifying agents [3].
3.2. Injectability assessment
The injectability assessment was performed with syringe-needle system used in our laboratory for intravenous administration in in vivo animal studies. As blood-mimicking solution, 36.6 %, v/v, glycerol solution was used [4]. It could be observed from Fig. 2 that the injectability of NEs depended on their viscosity, with the higher pressure needed to extrude the formulations with the higher PEG2000-DSPE concentration. Even though, to the best of our knowledge, there are no studies investigating the injectability of the intravenous preparations, based on some previous research on subcutaneous model [5], it is recommended the maximum force used to inject the formulations should be kept about 20 N, which would eliminate S3 and S6 from further investigation (Fig. 2).
4. CONCLUSION
The injectability method used in this research proved as a useful tool in screening formulations adequate for prospective intravenous use.
5. REFERENCES
1.	Cilurzo, F., et al. Injectability Evaluation: An Open Issue. AAPS PharmSciTech, 2011. 12(2): 604-609.
2.	Sarmadi, M., et al. Modeling, design, and machine learning-based framework for optimal injectability of microparticle-based drug formulations. Science advances, 2020. 6: eabb6594.
3.	Gullapalli, R. P., Mazzitelli, C. L. Polyethylene glycols in oral and parenteral formulations—A critical review. International Journal of Pharmaceutics, 2015. 496(2): 219-239.
4.	Yousif, M. Y., et al.. Deriving a blood-mimicking fluid for particle image velocimetry in Sylgard-184 vascular models. In Annual International Conference of the IEEE Engineering in Medicine and Biology Society, 2009 (pp. 1412-1415
5.	Watt, R. P., et al. (2019). Injectability as a function of viscosity and dosing materials for subcutaneous administration. International Journal of Pharmaceutics, 2019:554, 376-386.
ACKNOWLEDGMENT
This research was funded by the MESDT, Republic of Serbia through Grant Agreement with University of Belgrade-Faculty of Pharmacy No: 451-03-68/2022-14/200161 and supported by the Science Fund of the Republic of Serbia, GRANT No 7749108, 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 - NanoCellEmоCog.
C3  - 9th BBBB International conference on pharmaceutical sciences; 15th - 17th September, Ljubljana, Slovenia
T1  - A proposal of innovative injectability assessment method for intravenous formulations - case study on PEGylated nanoemulsions
UR  - https://hdl.handle.net/21.15107/rcub_farfar_4269
ER  - 
@conference{
author = "Đoković, Jelena and Savić, Sanela and Cekić, Nebojša and Savić, Snežana",
year = "2022",
abstract = "1.	INTRODUCTION
Syringeability and injectability are recognised as fundamental performance parameters / critical quality attributes of any parenteral dosage form. Syringeability refers to the ability of an injectable preparation to transfer from a vial through a hypodermic needle prior an injection, while injectability is defined as the force, or pressure, required to inject the formulation from a syringe-needle system into the tissue [1]. When developing drug delivery systems, the priority is usually the release kinetics, biocompatibility or other factors that may come in conflict with the optimal parameters for the applicability of those systems [2]. The aim of this research was to develop a method that could be used for injectability assessment of the intravenous formulations and the application of this method on curcumin-loaded PEGylated nanoemulsions (NEs) in order to gage the impact of PEGylation on NEs injectability.
2. MATERIALS AND METHODS
2.1. Nanoemulsion preparation
Nanoemulsions were prepared using high pressure homogenization method. The aqueous phase (glycerol, polysorbate 80, sodium oleate and highly purified water) was added into the oil phase (soybean oil, soybean lecithin, medium chain triglycerides, butylhydroxytoluene, benzyl alcohol, curcumin and PEGylated phospholipid – PEG2000-DSPE in 0.1 %, 0.3 % or 0.6 % concentrations) and mixed using rotor-stator homogenizer (IKA Ultra-Turrax® T25 digital, IKA®-Werke GmbH and Co. KG, Staufen, Germany), and further processed on high pressure homogenizer (EmulsiFlex-C3, Avestin Inc., Canada) at 800 bar for 10 discontinued cycles. The non PEGylated formulation was marked as CS, and the PEGylated ones were marked S1, S3 and S6, referring to the PEG2000-DSPE concentration.
2.2. Physicochemical characterization
The NEs droplet size (Z-Ave) and droplet size distribution (PDI) were determined with Zetasizer Nano ZS90 (Malvern Instruments Ltd., Worcestershire). Rheological analysis was performed using MCR 302 air-bearing rheometer (Anton Paar, Graz, Austria) equipped with coaxial cylinders system (CC27 measuring bob with C-PTD 180/Air) with sheer rate range of 0.1-100 s-1 at 20°C.
2.3. Injectabilty assesment
The injectability of the NEs was expressed as force (N) needed to extrude the NE in the function of the extruded volume (ml). About 10 ml of the NE was loaded into the 10 ml syringe and extruded through the 25 G scalp vein infusion set (Romed, Wilnis, Netherlands) into the blood mimicking solution, circulating through pump at 4 ml/min, in order to assess the NEs’ performance in the prospective intravenous administration. The NEs were extruded at 1 mm/s croshead speed of the loading cell of the texure analyzer (EZ-LX Compact Table-Top Testing Machine, Shimadzu, Japan) with the TrapeziumX software version 1.5 used for data collection and analysis
3. RESULTS AND DISCUSSION
3.1. Physicochemical characterization
The NEs have average size of about 100 nm, with the PDI values below 0.20, indicating suitability for intravenous application. It could be observed from Fig. 1 that the addition of PEGylated phospholipids caused an increase in NE viscosity, as could be expected given that the polyethylene glycols are used in parenteral suspensions as stabilizing - rheology modifying agents [3].
3.2. Injectability assessment
The injectability assessment was performed with syringe-needle system used in our laboratory for intravenous administration in in vivo animal studies. As blood-mimicking solution, 36.6 %, v/v, glycerol solution was used [4]. It could be observed from Fig. 2 that the injectability of NEs depended on their viscosity, with the higher pressure needed to extrude the formulations with the higher PEG2000-DSPE concentration. Even though, to the best of our knowledge, there are no studies investigating the injectability of the intravenous preparations, based on some previous research on subcutaneous model [5], it is recommended the maximum force used to inject the formulations should be kept about 20 N, which would eliminate S3 and S6 from further investigation (Fig. 2).
4. CONCLUSION
The injectability method used in this research proved as a useful tool in screening formulations adequate for prospective intravenous use.
5. REFERENCES
1.	Cilurzo, F., et al. Injectability Evaluation: An Open Issue. AAPS PharmSciTech, 2011. 12(2): 604-609.
2.	Sarmadi, M., et al. Modeling, design, and machine learning-based framework for optimal injectability of microparticle-based drug formulations. Science advances, 2020. 6: eabb6594.
3.	Gullapalli, R. P., Mazzitelli, C. L. Polyethylene glycols in oral and parenteral formulations—A critical review. International Journal of Pharmaceutics, 2015. 496(2): 219-239.
4.	Yousif, M. Y., et al.. Deriving a blood-mimicking fluid for particle image velocimetry in Sylgard-184 vascular models. In Annual International Conference of the IEEE Engineering in Medicine and Biology Society, 2009 (pp. 1412-1415
5.	Watt, R. P., et al. (2019). Injectability as a function of viscosity and dosing materials for subcutaneous administration. International Journal of Pharmaceutics, 2019:554, 376-386.
ACKNOWLEDGMENT
This research was funded by the MESDT, Republic of Serbia through Grant Agreement with University of Belgrade-Faculty of Pharmacy No: 451-03-68/2022-14/200161 and supported by the Science Fund of the Republic of Serbia, GRANT No 7749108, 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 - NanoCellEmоCog.",
journal = "9th BBBB International conference on pharmaceutical sciences; 15th - 17th September, Ljubljana, Slovenia",
title = "A proposal of innovative injectability assessment method for intravenous formulations - case study on PEGylated nanoemulsions",
url = "https://hdl.handle.net/21.15107/rcub_farfar_4269"
}
Đoković, J., Savić, S., Cekić, N.,& Savić, S.. (2022). A proposal of innovative injectability assessment method for intravenous formulations - case study on PEGylated nanoemulsions. in 9th BBBB International conference on pharmaceutical sciences; 15th - 17th September, Ljubljana, Slovenia.
https://hdl.handle.net/21.15107/rcub_farfar_4269
Đoković J, Savić S, Cekić N, Savić S. A proposal of innovative injectability assessment method for intravenous formulations - case study on PEGylated nanoemulsions. in 9th BBBB International conference on pharmaceutical sciences; 15th - 17th September, Ljubljana, Slovenia. 2022;.
https://hdl.handle.net/21.15107/rcub_farfar_4269 .
Đoković, Jelena, Savić, Sanela, Cekić, Nebojša, Savić, Snežana, "A proposal of innovative injectability assessment method for intravenous formulations - case study on PEGylated nanoemulsions" in 9th BBBB International conference on pharmaceutical sciences; 15th - 17th September, Ljubljana, Slovenia (2022),
https://hdl.handle.net/21.15107/rcub_farfar_4269 .

The Impact of the Oil Phase Selection on Physicochemical Properties, Long-Term Stability, In Vitro Performance and Injectability of Curcumin-Loaded PEGylated Nanoemulsions

Đoković, Jelena; Demisli, Sotiria; Savić, Sanela; Marković, Bojan; Cekić, Nebojša D.; Ranđelović, Danijela V.; Mitrović, Jelena; Lunter, Dominique Jasmin; Papadimitriou, Vassiliki; Xenakis, Aristotelis; Savić, Snežana

(MDPI, 2022)

TY  - JOUR
AU  - Đoković, Jelena
AU  - Demisli, Sotiria
AU  - Savić, Sanela
AU  - Marković, Bojan
AU  - Cekić, Nebojša D.
AU  - Ranđelović, Danijela V.
AU  - Mitrović, Jelena
AU  - Lunter, Dominique Jasmin
AU  - Papadimitriou, Vassiliki
AU  - Xenakis, Aristotelis
AU  - Savić, Snežana
PY  - 2022
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/4265
AB  - A nanotechnology-based approach to drug delivery presents one of the biggest trends in biomedical science that can provide increased active concentration, bioavailability, and safety compared to conventional drug-delivery systems. Nanoemulsions stand out amongst other nanocarriers for being biodegradable, biocompatible, and relatively easy to manufacture. For improved drug-delivery properties, longer circulation for the nanoemulsion droplets should be provided, to allow the active to reach the target site. One of the strategies used for this purpose is PEGylation. The aim of this research was assessing the impact of the oil phase selection, soybean or fish oil mixtures with medium chain triglycerides, on the physicochemical characteristics and injectability of curcumin-loaded PEGylated nanoemulsions. Electron paramagnetic resonance spectroscopy demonstrated the structural impact of the oil phase on the stabilizing layer of nanoemulsions, with a more pronounced stabilizing effect of curcumin observed in the fish oil nanoemulsion compared to the soybean oil one. The design of the experiment study, employed to simultaneously assess the impact of the oil phase, different PEGylated phospholipids and their concentrations, as well as the presence of curcumin, showed that not only the investigated factors alone, but also their interactions, had a significant influence on the critical quality attributes of the PEGylated nanoemulsions. Detailed physicochemical characterization of the NEs found all formulations were appropriate for parenteral administration and remained stable during two years of storage, with the preserved antioxidant activity demonstrated by DPPH and FRAP assays. In vitro release studies showed a more pronounced release of curcumin from the fish oil NEs compared to that from the soybean oil ones. The innovative in vitro injectability assessment, designed to mimic intravenous application, proved that all formulations tested in selected experimental setting could be employed in prospective in vivo studies. Overall, the current study shows the importance of oil phase selection when formulating PEGylated nanoemulsions
PB  - MDPI
T2  - Pharmaceutics
T1  - The Impact of the Oil Phase Selection on Physicochemical Properties, Long-Term Stability, In Vitro Performance and Injectability of Curcumin-Loaded PEGylated Nanoemulsions
VL  - 14
IS  - 8
DO  - 10.3390/pharmaceutics14081666
ER  - 
@article{
author = "Đoković, Jelena and Demisli, Sotiria and Savić, Sanela and Marković, Bojan and Cekić, Nebojša D. and Ranđelović, Danijela V. and Mitrović, Jelena and Lunter, Dominique Jasmin and Papadimitriou, Vassiliki and Xenakis, Aristotelis and Savić, Snežana",
year = "2022",
abstract = "A nanotechnology-based approach to drug delivery presents one of the biggest trends in biomedical science that can provide increased active concentration, bioavailability, and safety compared to conventional drug-delivery systems. Nanoemulsions stand out amongst other nanocarriers for being biodegradable, biocompatible, and relatively easy to manufacture. For improved drug-delivery properties, longer circulation for the nanoemulsion droplets should be provided, to allow the active to reach the target site. One of the strategies used for this purpose is PEGylation. The aim of this research was assessing the impact of the oil phase selection, soybean or fish oil mixtures with medium chain triglycerides, on the physicochemical characteristics and injectability of curcumin-loaded PEGylated nanoemulsions. Electron paramagnetic resonance spectroscopy demonstrated the structural impact of the oil phase on the stabilizing layer of nanoemulsions, with a more pronounced stabilizing effect of curcumin observed in the fish oil nanoemulsion compared to the soybean oil one. The design of the experiment study, employed to simultaneously assess the impact of the oil phase, different PEGylated phospholipids and their concentrations, as well as the presence of curcumin, showed that not only the investigated factors alone, but also their interactions, had a significant influence on the critical quality attributes of the PEGylated nanoemulsions. Detailed physicochemical characterization of the NEs found all formulations were appropriate for parenteral administration and remained stable during two years of storage, with the preserved antioxidant activity demonstrated by DPPH and FRAP assays. In vitro release studies showed a more pronounced release of curcumin from the fish oil NEs compared to that from the soybean oil ones. The innovative in vitro injectability assessment, designed to mimic intravenous application, proved that all formulations tested in selected experimental setting could be employed in prospective in vivo studies. Overall, the current study shows the importance of oil phase selection when formulating PEGylated nanoemulsions",
publisher = "MDPI",
journal = "Pharmaceutics",
title = "The Impact of the Oil Phase Selection on Physicochemical Properties, Long-Term Stability, In Vitro Performance and Injectability of Curcumin-Loaded PEGylated Nanoemulsions",
volume = "14",
number = "8",
doi = "10.3390/pharmaceutics14081666"
}
Đoković, J., Demisli, S., Savić, S., Marković, B., Cekić, N. D., Ranđelović, D. V., Mitrović, J., Lunter, D. J., Papadimitriou, V., Xenakis, A.,& Savić, S.. (2022). The Impact of the Oil Phase Selection on Physicochemical Properties, Long-Term Stability, In Vitro Performance and Injectability of Curcumin-Loaded PEGylated Nanoemulsions. in Pharmaceutics
MDPI., 14(8).
https://doi.org/10.3390/pharmaceutics14081666
Đoković J, Demisli S, Savić S, Marković B, Cekić ND, Ranđelović DV, Mitrović J, Lunter DJ, Papadimitriou V, Xenakis A, Savić S. The Impact of the Oil Phase Selection on Physicochemical Properties, Long-Term Stability, In Vitro Performance and Injectability of Curcumin-Loaded PEGylated Nanoemulsions. in Pharmaceutics. 2022;14(8).
doi:10.3390/pharmaceutics14081666 .
Đoković, Jelena, Demisli, Sotiria, Savić, Sanela, Marković, Bojan, Cekić, Nebojša D., Ranđelović, Danijela V., Mitrović, Jelena, Lunter, Dominique Jasmin, Papadimitriou, Vassiliki, Xenakis, Aristotelis, Savić, Snežana, "The Impact of the Oil Phase Selection on Physicochemical Properties, Long-Term Stability, In Vitro Performance and Injectability of Curcumin-Loaded PEGylated Nanoemulsions" in Pharmaceutics, 14, no. 8 (2022),
https://doi.org/10.3390/pharmaceutics14081666 . .
2
2

‘All-natural’ anti-wrinkle emulsion serum with Acmella oleracea extract: A design of experiments (DoE) formulation approach, rheology and in vivo skin performance/efficacy evaluation

Savić, Sanela; Cekić, Nebojša; Savić, Saša; Ilić, Tanja; Savić, Snežana

(John Wiley and Sons Inc, 2021)

TY  - JOUR
AU  - Savić, Sanela
AU  - Cekić, Nebojša
AU  - Savić, Saša
AU  - Ilić, Tanja
AU  - Savić, Snežana
PY  - 2021
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/3936
AB  - Objective: The growing consumers’ preferences and concerns regarding healthy ageing, youthful skin appearance, environmental protection and sustainability have triggered an ever-increasing trend towards natural, eco-friendly and ethically sourced anti-ageing products. Accordingly, this paper describes design and evaluation of novel, safe, effective and high-quality emulsion serums, completely based on ingredients of natural origin, intended for improving facial fine lines and wrinkles. Methods: Model formulations, stabilized by an innovative glycolipid mixed emulsifier (lauryl glucoside/myristyl glucoside/polyglyceryl-6 laurate) and containing Acmella oleracea extract as a model anti-ageing active, were prepared by cold process and fully assessed regarding their rheological behaviour (continuous rotational and oscillatory tests) and physical stability (dynamic-mechanical thermoanalysis – DMTA test). To study and optimize the simultaneous influence of varied formulation factors (emollients and emulsifier concentrations) on critical rheological attributes of the developed serums, a central composite design within ‘design of experiments’ approach was employed. The general skin performance – preliminary safety and anti-wrinkle efficacy of selected model serum, was evaluated in human volunteers, by employing several objective, non-invasive bioengineering techniques. Results: Rheological characterization revealed favourable shear-thinning flow behaviour with yield point, and dominating elastic character (storage modulus G’ > loss modulus G") in both amplitude and frequency sweeps, which together with relatively small structural change obtained in DMTA test indicated overall satisfying rheological and stability properties of formulated serums. From the established design space, and taking into account formulation cost and carbon footprint, promising model serum (desired/optimal apparent viscosity, yield point and loss factor, rather small and constant structural change), containing 15% of emollients and 1% of emulsifier, was chosen for in vivo evaluations. Screening of skin irritation effects revealed the absence of potential irritancy of investigated serum, suggesting overall satisfying skin tolerability/preliminary safety. Silicone skin replica image analysis demonstrated noticeable reduction/improvement in all measured skin wrinkle parameters after only 2 weeks of test serum application in periorbital and perioral areas, indicating its rapid and beneficial effects on the facial expression lines and wrinkles. Conclusion: Altogether, the results corroborate the promising potential of the developed Acmella oleracea extract-loaded emulsion serum as safe, effective and non-invasive natural anti-wrinkle product.
PB  - John Wiley and Sons Inc
T2  - International Journal of Cosmetic Science
T1  - ‘All-natural’ anti-wrinkle emulsion serum with Acmella oleracea extract: A design of experiments (DoE) formulation approach, rheology and in vivo skin performance/efficacy evaluation
DO  - 10.1111/ics.12726
ER  - 
@article{
author = "Savić, Sanela and Cekić, Nebojša and Savić, Saša and Ilić, Tanja and Savić, Snežana",
year = "2021",
abstract = "Objective: The growing consumers’ preferences and concerns regarding healthy ageing, youthful skin appearance, environmental protection and sustainability have triggered an ever-increasing trend towards natural, eco-friendly and ethically sourced anti-ageing products. Accordingly, this paper describes design and evaluation of novel, safe, effective and high-quality emulsion serums, completely based on ingredients of natural origin, intended for improving facial fine lines and wrinkles. Methods: Model formulations, stabilized by an innovative glycolipid mixed emulsifier (lauryl glucoside/myristyl glucoside/polyglyceryl-6 laurate) and containing Acmella oleracea extract as a model anti-ageing active, were prepared by cold process and fully assessed regarding their rheological behaviour (continuous rotational and oscillatory tests) and physical stability (dynamic-mechanical thermoanalysis – DMTA test). To study and optimize the simultaneous influence of varied formulation factors (emollients and emulsifier concentrations) on critical rheological attributes of the developed serums, a central composite design within ‘design of experiments’ approach was employed. The general skin performance – preliminary safety and anti-wrinkle efficacy of selected model serum, was evaluated in human volunteers, by employing several objective, non-invasive bioengineering techniques. Results: Rheological characterization revealed favourable shear-thinning flow behaviour with yield point, and dominating elastic character (storage modulus G’ > loss modulus G") in both amplitude and frequency sweeps, which together with relatively small structural change obtained in DMTA test indicated overall satisfying rheological and stability properties of formulated serums. From the established design space, and taking into account formulation cost and carbon footprint, promising model serum (desired/optimal apparent viscosity, yield point and loss factor, rather small and constant structural change), containing 15% of emollients and 1% of emulsifier, was chosen for in vivo evaluations. Screening of skin irritation effects revealed the absence of potential irritancy of investigated serum, suggesting overall satisfying skin tolerability/preliminary safety. Silicone skin replica image analysis demonstrated noticeable reduction/improvement in all measured skin wrinkle parameters after only 2 weeks of test serum application in periorbital and perioral areas, indicating its rapid and beneficial effects on the facial expression lines and wrinkles. Conclusion: Altogether, the results corroborate the promising potential of the developed Acmella oleracea extract-loaded emulsion serum as safe, effective and non-invasive natural anti-wrinkle product.",
publisher = "John Wiley and Sons Inc",
journal = "International Journal of Cosmetic Science",
title = "‘All-natural’ anti-wrinkle emulsion serum with Acmella oleracea extract: A design of experiments (DoE) formulation approach, rheology and in vivo skin performance/efficacy evaluation",
doi = "10.1111/ics.12726"
}
Savić, S., Cekić, N., Savić, S., Ilić, T.,& Savić, S.. (2021). ‘All-natural’ anti-wrinkle emulsion serum with Acmella oleracea extract: A design of experiments (DoE) formulation approach, rheology and in vivo skin performance/efficacy evaluation. in International Journal of Cosmetic Science
John Wiley and Sons Inc..
https://doi.org/10.1111/ics.12726
Savić S, Cekić N, Savić S, Ilić T, Savić S. ‘All-natural’ anti-wrinkle emulsion serum with Acmella oleracea extract: A design of experiments (DoE) formulation approach, rheology and in vivo skin performance/efficacy evaluation. in International Journal of Cosmetic Science. 2021;.
doi:10.1111/ics.12726 .
Savić, Sanela, Cekić, Nebojša, Savić, Saša, Ilić, Tanja, Savić, Snežana, "‘All-natural’ anti-wrinkle emulsion serum with Acmella oleracea extract: A design of experiments (DoE) formulation approach, rheology and in vivo skin performance/efficacy evaluation" in International Journal of Cosmetic Science (2021),
https://doi.org/10.1111/ics.12726 . .
20
13
9

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

Tacrolimus-loaded lecithin-based nanostructured lipid carrier and nanoemulsion with propylene glycol monocaprylate as a liquid lipid: Formulation characterization and assessment of dermal delivery compared to referent ointment

Savić, Vedrana; Ilić, Tanja; Nikolić, Ines; Marković, Bojan; Čalija, Bojan; Cekić, Nebojša; Savić, Snežana

(2019)

TY  - JOUR
AU  - Savić, Vedrana
AU  - Ilić, Tanja
AU  - Nikolić, Ines
AU  - Marković, Bojan
AU  - Čalija, Bojan
AU  - Cekić, Nebojša
AU  - Savić, Snežana
PY  - 2019
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/3454
AB  - Nanostructured lipid carriers (NLC) and nanoemulsions (NE) are colloid carriers which could improve dermal delivery of tacrolimus. The aims of this study were to evaluate effects of different formulation and process parameters on physicochemical characteristics and stability of lecithin-based NLC with glyceryl palmitostearate as solid and propylene glycol monocaprylate as liquid lipid and to compare the influence of different inner structure of tacrolimus-loaded NLC and corresponding NE on physicochemical characteristics, stability, entrapment efficiency, in vitro drug release and overall skin performance. Solid/liquid lipid ratio, total amount of lipids, homogenization pressure and cooling after the preparation were identified as critical variables in NLC development. Moreover, tacrolimus-loaded NLC emerged as more stabile carrier than NE. Differential stripping performed on porcine ear skin revealed significantly higher tacrolimus amount in stratum corneum from nanocarriers compared to referent ointment (Protopic®). Similarly the highest amount of tacrolimus in hair follicles was obtained using NLC (268.54 ± 92.38 ng/cm2), followed by NE (128.17 ± 48.87 ng/cm2) and Protopic® (77.61 ± 43.25 ng/cm2). Contrary, the highest permeation rate through full-thickness porcine ear skin was observed for Protopic®, implying that the selection of experimental setup is critical for reliable skin performance assessment. Overall, developed NLC could be suggested as promising carrier in a form of lotion for tacrolimus dermal delivery.
T2  - International Journal of Pharmaceutics
T1  - Tacrolimus-loaded lecithin-based nanostructured lipid carrier and nanoemulsion with propylene glycol monocaprylate as a liquid lipid: Formulation characterization and assessment of dermal delivery compared to referent ointment
VL  - 569
SP  - 1
EP  - 11
DO  - 10.1016/j.ijpharm.2019.118624
ER  - 
@article{
author = "Savić, Vedrana and Ilić, Tanja and Nikolić, Ines and Marković, Bojan and Čalija, Bojan and Cekić, Nebojša and Savić, Snežana",
year = "2019",
abstract = "Nanostructured lipid carriers (NLC) and nanoemulsions (NE) are colloid carriers which could improve dermal delivery of tacrolimus. The aims of this study were to evaluate effects of different formulation and process parameters on physicochemical characteristics and stability of lecithin-based NLC with glyceryl palmitostearate as solid and propylene glycol monocaprylate as liquid lipid and to compare the influence of different inner structure of tacrolimus-loaded NLC and corresponding NE on physicochemical characteristics, stability, entrapment efficiency, in vitro drug release and overall skin performance. Solid/liquid lipid ratio, total amount of lipids, homogenization pressure and cooling after the preparation were identified as critical variables in NLC development. Moreover, tacrolimus-loaded NLC emerged as more stabile carrier than NE. Differential stripping performed on porcine ear skin revealed significantly higher tacrolimus amount in stratum corneum from nanocarriers compared to referent ointment (Protopic®). Similarly the highest amount of tacrolimus in hair follicles was obtained using NLC (268.54 ± 92.38 ng/cm2), followed by NE (128.17 ± 48.87 ng/cm2) and Protopic® (77.61 ± 43.25 ng/cm2). Contrary, the highest permeation rate through full-thickness porcine ear skin was observed for Protopic®, implying that the selection of experimental setup is critical for reliable skin performance assessment. Overall, developed NLC could be suggested as promising carrier in a form of lotion for tacrolimus dermal delivery.",
journal = "International Journal of Pharmaceutics",
title = "Tacrolimus-loaded lecithin-based nanostructured lipid carrier and nanoemulsion with propylene glycol monocaprylate as a liquid lipid: Formulation characterization and assessment of dermal delivery compared to referent ointment",
volume = "569",
pages = "1-11",
doi = "10.1016/j.ijpharm.2019.118624"
}
Savić, V., Ilić, T., Nikolić, I., Marković, B., Čalija, B., Cekić, N.,& Savić, S.. (2019). Tacrolimus-loaded lecithin-based nanostructured lipid carrier and nanoemulsion with propylene glycol monocaprylate as a liquid lipid: Formulation characterization and assessment of dermal delivery compared to referent ointment. in International Journal of Pharmaceutics, 569, 1-11.
https://doi.org/10.1016/j.ijpharm.2019.118624
Savić V, Ilić T, Nikolić I, Marković B, Čalija B, Cekić N, Savić S. Tacrolimus-loaded lecithin-based nanostructured lipid carrier and nanoemulsion with propylene glycol monocaprylate as a liquid lipid: Formulation characterization and assessment of dermal delivery compared to referent ointment. in International Journal of Pharmaceutics. 2019;569:1-11.
doi:10.1016/j.ijpharm.2019.118624 .
Savić, Vedrana, Ilić, Tanja, Nikolić, Ines, Marković, Bojan, Čalija, Bojan, Cekić, Nebojša, Savić, Snežana, "Tacrolimus-loaded lecithin-based nanostructured lipid carrier and nanoemulsion with propylene glycol monocaprylate as a liquid lipid: Formulation characterization and assessment of dermal delivery compared to referent ointment" in International Journal of Pharmaceutics, 569 (2019):1-11,
https://doi.org/10.1016/j.ijpharm.2019.118624 . .
29
11
27

Curcumin-loaded low-energy nanoemulsions as a prototype of multifunctional vehicles for different administration routes: Physicochemical and in vitro peculiarities important for dermal application

Nikolić, Ines; Lunter, Dominique; Ranđelović, Danijela; Žugić, Ana R.; Tadić, Vanja M.; Marković, Bojan; Cekić, Nebojša; Živković, Lada; Topalović, Dijana; Potparević, Biljana; Daniels, Rolf; Savić, Snežana

(Elsevier Science BV, Amsterdam, 2018)

TY  - JOUR
AU  - Nikolić, Ines
AU  - Lunter, Dominique
AU  - Ranđelović, Danijela
AU  - Žugić, Ana R.
AU  - Tadić, Vanja M.
AU  - Marković, Bojan
AU  - Cekić, Nebojša
AU  - Živković, Lada
AU  - Topalović, Dijana
AU  - Potparević, Biljana
AU  - Daniels, Rolf
AU  - Savić, Snežana
PY  - 2018
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/3084
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  lt  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 Science BV, Amsterdam
T2  - International Journal of Pharmaceutics
T1  - Curcumin-loaded low-energy nanoemulsions as a prototype of multifunctional vehicles for different administration routes: Physicochemical and in vitro peculiarities important for dermal application
VL  - 550
IS  - 1-2
SP  - 333
EP  - 346
DO  - 10.1016/j.ijpharm.2018.08.060
ER  - 
@article{
author = "Nikolić, Ines and Lunter, Dominique and Ranđelović, Danijela and Žugić, Ana R. and Tadić, Vanja M. and Marković, Bojan and Cekić, Nebojša and Živković, Lada and Topalović, Dijana and Potparević, Biljana and Daniels, Rolf and Savić, Snežana",
year = "2018",
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  lt  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 Science BV, Amsterdam",
journal = "International Journal of Pharmaceutics",
title = "Curcumin-loaded low-energy nanoemulsions as a prototype of multifunctional vehicles for different administration routes: Physicochemical and in vitro peculiarities important for dermal application",
volume = "550",
number = "1-2",
pages = "333-346",
doi = "10.1016/j.ijpharm.2018.08.060"
}
Nikolić, I., Lunter, D., Ranđelović, D., Žugić, A. R., Tadić, V. M., Marković, B., Cekić, N., Živković, L., Topalović, D., Potparević, B., Daniels, R.,& Savić, S.. (2018). Curcumin-loaded low-energy nanoemulsions as a prototype of multifunctional vehicles for different administration routes: Physicochemical and in vitro peculiarities important for dermal application. in International Journal of Pharmaceutics
Elsevier Science BV, Amsterdam., 550(1-2), 333-346.
https://doi.org/10.1016/j.ijpharm.2018.08.060
Nikolić I, Lunter D, Ranđelović D, Žugić AR, Tadić VM, Marković B, Cekić N, Živković L, Topalović D, Potparević B, Daniels R, Savić S. Curcumin-loaded low-energy nanoemulsions as a prototype of multifunctional vehicles for different administration routes: Physicochemical and in vitro peculiarities important for dermal application. in International Journal of Pharmaceutics. 2018;550(1-2):333-346.
doi:10.1016/j.ijpharm.2018.08.060 .
Nikolić, Ines, Lunter, Dominique, Ranđelović, Danijela, Žugić, Ana R., Tadić, Vanja M., Marković, Bojan, Cekić, Nebojša, Živković, Lada, Topalović, Dijana, Potparević, Biljana, Daniels, Rolf, Savić, Snežana, "Curcumin-loaded low-energy nanoemulsions as a prototype of multifunctional vehicles for different administration routes: Physicochemical and in vitro peculiarities important for dermal application" in International Journal of Pharmaceutics, 550, no. 1-2 (2018):333-346,
https://doi.org/10.1016/j.ijpharm.2018.08.060 . .
28
21
26

Biocompatible microemulsions for improved dermal delivery of sertaconazole nitrate: Phase behavior study and microstructure influence on drug biopharamaceutical properties

Bubić-Pajić, Nataša; Nikolić, Ines; Mitsou, Evgenia; Papadimitriou, Vassiliki; Xenakis, Aristotelis; Ranđelović, Danijela; Dobričić, Vladimir; Smitran, Aleksandra; Cekić, Nebojša; Čalija, Bojan; Savić, Snežana

(Elsevier Science BV, Amsterdam, 2018)

TY  - JOUR
AU  - Bubić-Pajić, Nataša
AU  - Nikolić, Ines
AU  - Mitsou, Evgenia
AU  - Papadimitriou, Vassiliki
AU  - Xenakis, Aristotelis
AU  - Ranđelović, Danijela
AU  - Dobričić, Vladimir
AU  - Smitran, Aleksandra
AU  - Cekić, Nebojša
AU  - Čalija, Bojan
AU  - Savić, Snežana
PY  - 2018
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/3062
AB  - The aim of this study was development of biocompatible topical microemulsions (MEs) for incorporation and improved dermal delivery of sertaconazole nitrate (SN). For this purpose, phase behavior and microstructure of pseudo-ternary glycereth-7-caprylate/caprate (Emanon EV-E, EV)/cosurfactant/Capryol (TM) 90/water systems were investigated. Furhermore, the influence of these properties on the drug skin delivery was also assessed. Expansion of ME single-phase regions with the use of short chain alcohols was a consequence of the more fluid interface when compared to other investigated systems, which was confirmed by electron paramagnetic resonance spectroscopy-EPR. The chosen bicontinuous to inverted bicontinuous formulations were assessed against the ME based on polysorbate 80 as referent sample. Despite incorporation of SN within the selected formulations induced similar alternations in electrical conductivity, viscosity and pH values, obtained EPR spectra suggested different SN localization: within the oil phase (for most of the EV based formulations), or interacting with the interface (polysorbate 80 based formulation). Due to higher in vitro drug release (12.24%-18.53%), ex vivo SN penetration into porcine ear skin (dermal retention Enhancement Ratio (ERO) ranged from 2.66 to 4.25) and pronounced antifungal activity, the chosen MEs represent promising vehicles for dermal delivery of SN in treatment of cutaneous fungal infections. The biopharmaceutical and skin performance differences obtained with different formulations were possible to be explained on the basis of their physicochemical characteristics.
PB  - Elsevier Science BV, Amsterdam
T2  - Journal of Molecular Liquids
T1  - Biocompatible microemulsions for improved dermal delivery of sertaconazole nitrate: Phase behavior study and microstructure influence on drug biopharamaceutical properties
VL  - 272
SP  - 746
EP  - 758
DO  - 10.1016/j.molliq.2018.10.002
ER  - 
@article{
author = "Bubić-Pajić, Nataša and Nikolić, Ines and Mitsou, Evgenia and Papadimitriou, Vassiliki and Xenakis, Aristotelis and Ranđelović, Danijela and Dobričić, Vladimir and Smitran, Aleksandra and Cekić, Nebojša and Čalija, Bojan and Savić, Snežana",
year = "2018",
abstract = "The aim of this study was development of biocompatible topical microemulsions (MEs) for incorporation and improved dermal delivery of sertaconazole nitrate (SN). For this purpose, phase behavior and microstructure of pseudo-ternary glycereth-7-caprylate/caprate (Emanon EV-E, EV)/cosurfactant/Capryol (TM) 90/water systems were investigated. Furhermore, the influence of these properties on the drug skin delivery was also assessed. Expansion of ME single-phase regions with the use of short chain alcohols was a consequence of the more fluid interface when compared to other investigated systems, which was confirmed by electron paramagnetic resonance spectroscopy-EPR. The chosen bicontinuous to inverted bicontinuous formulations were assessed against the ME based on polysorbate 80 as referent sample. Despite incorporation of SN within the selected formulations induced similar alternations in electrical conductivity, viscosity and pH values, obtained EPR spectra suggested different SN localization: within the oil phase (for most of the EV based formulations), or interacting with the interface (polysorbate 80 based formulation). Due to higher in vitro drug release (12.24%-18.53%), ex vivo SN penetration into porcine ear skin (dermal retention Enhancement Ratio (ERO) ranged from 2.66 to 4.25) and pronounced antifungal activity, the chosen MEs represent promising vehicles for dermal delivery of SN in treatment of cutaneous fungal infections. The biopharmaceutical and skin performance differences obtained with different formulations were possible to be explained on the basis of their physicochemical characteristics.",
publisher = "Elsevier Science BV, Amsterdam",
journal = "Journal of Molecular Liquids",
title = "Biocompatible microemulsions for improved dermal delivery of sertaconazole nitrate: Phase behavior study and microstructure influence on drug biopharamaceutical properties",
volume = "272",
pages = "746-758",
doi = "10.1016/j.molliq.2018.10.002"
}
Bubić-Pajić, N., Nikolić, I., Mitsou, E., Papadimitriou, V., Xenakis, A., Ranđelović, D., Dobričić, V., Smitran, A., Cekić, N., Čalija, B.,& Savić, S.. (2018). Biocompatible microemulsions for improved dermal delivery of sertaconazole nitrate: Phase behavior study and microstructure influence on drug biopharamaceutical properties. in Journal of Molecular Liquids
Elsevier Science BV, Amsterdam., 272, 746-758.
https://doi.org/10.1016/j.molliq.2018.10.002
Bubić-Pajić N, Nikolić I, Mitsou E, Papadimitriou V, Xenakis A, Ranđelović D, Dobričić V, Smitran A, Cekić N, Čalija B, Savić S. Biocompatible microemulsions for improved dermal delivery of sertaconazole nitrate: Phase behavior study and microstructure influence on drug biopharamaceutical properties. in Journal of Molecular Liquids. 2018;272:746-758.
doi:10.1016/j.molliq.2018.10.002 .
Bubić-Pajić, Nataša, Nikolić, Ines, Mitsou, Evgenia, Papadimitriou, Vassiliki, Xenakis, Aristotelis, Ranđelović, Danijela, Dobričić, Vladimir, Smitran, Aleksandra, Cekić, Nebojša, Čalija, Bojan, Savić, Snežana, "Biocompatible microemulsions for improved dermal delivery of sertaconazole nitrate: Phase behavior study and microstructure influence on drug biopharamaceutical properties" in Journal of Molecular Liquids, 272 (2018):746-758,
https://doi.org/10.1016/j.molliq.2018.10.002 . .
19
16
20

Parenteral nanoemulsions of risperidone for enhanced brain delivery in acute psychosis: Physicochemical and in vivo performances

Đorđević, Sanela; Santrač, Anja; Cekić, Nebojša; Marković, Bojan; Divović, Branka; Ilić, Tanja; Savić, Miroslav; Savić, Snežana

(Elsevier Science BV, Amsterdam, 2017)

TY  - JOUR
AU  - Đorđević, Sanela
AU  - Santrač, Anja
AU  - Cekić, Nebojša
AU  - Marković, Bojan
AU  - Divović, Branka
AU  - Ilić, Tanja
AU  - Savić, Miroslav
AU  - Savić, Snežana
PY  - 2017
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/2883
AB  - This work aimed to deepen the lately acquired knowledge about parenteral nanoemulsions as carriers for brain delivery of risperidone, a poorly water-soluble antipsychotic drug, through establishing the prospective relationship between their physicochemical, pharmacokinetic, biodistribution, and behavioral performances. For this purpose, two optimized risperidone-loaded nanoemulsions, stabilized by lecithin or lecithin/polysorbate 80 mixture, and costabilized by sodium oleate, were produced by high-pressure homogenization. The characterization revealed the favorable droplet size, narrow size distribution, high surface charge, with proven stability to autoclaving and long-term stability for at least one year at 25 +/- 2 degrees C. Pharmacokinetic and tissue distribution results demonstrated improved plasma, liver, and brain pharmacokinetic parameters, resulting in 1.2-1.5-fold increased relative bioavailability, 1.1-1.8-fold decreased liver distribution, and about 1.3-fold improved brain uptake of risperidone active moiety following intraperitoneal administration of nanoemulsions relative to solution in rats. In behavioral study, investigated nanoemulsions showed pronounced reduction in basal and, more pertinently, amphetamine-induced locomotor activity in rats, with an early onset of antipsychotic action, and this effect lasted at least 90 min after drug injection. Together, these findings corroborate the applicability of parenteral nanoemulsions as carriers for enhanced brain delivery of risperidone, further suggesting their promise in acute psychosis treatment or other emergency situations.
PB  - Elsevier Science BV, Amsterdam
T2  - International Journal of Pharmaceutics
T1  - Parenteral nanoemulsions of risperidone for enhanced brain delivery in acute psychosis: Physicochemical and in vivo performances
VL  - 533
IS  - 2
SP  - 421
EP  - 430
DO  - 10.1016/j.ijpharm.2017.05.051
ER  - 
@article{
author = "Đorđević, Sanela and Santrač, Anja and Cekić, Nebojša and Marković, Bojan and Divović, Branka and Ilić, Tanja and Savić, Miroslav and Savić, Snežana",
year = "2017",
abstract = "This work aimed to deepen the lately acquired knowledge about parenteral nanoemulsions as carriers for brain delivery of risperidone, a poorly water-soluble antipsychotic drug, through establishing the prospective relationship between their physicochemical, pharmacokinetic, biodistribution, and behavioral performances. For this purpose, two optimized risperidone-loaded nanoemulsions, stabilized by lecithin or lecithin/polysorbate 80 mixture, and costabilized by sodium oleate, were produced by high-pressure homogenization. The characterization revealed the favorable droplet size, narrow size distribution, high surface charge, with proven stability to autoclaving and long-term stability for at least one year at 25 +/- 2 degrees C. Pharmacokinetic and tissue distribution results demonstrated improved plasma, liver, and brain pharmacokinetic parameters, resulting in 1.2-1.5-fold increased relative bioavailability, 1.1-1.8-fold decreased liver distribution, and about 1.3-fold improved brain uptake of risperidone active moiety following intraperitoneal administration of nanoemulsions relative to solution in rats. In behavioral study, investigated nanoemulsions showed pronounced reduction in basal and, more pertinently, amphetamine-induced locomotor activity in rats, with an early onset of antipsychotic action, and this effect lasted at least 90 min after drug injection. Together, these findings corroborate the applicability of parenteral nanoemulsions as carriers for enhanced brain delivery of risperidone, further suggesting their promise in acute psychosis treatment or other emergency situations.",
publisher = "Elsevier Science BV, Amsterdam",
journal = "International Journal of Pharmaceutics",
title = "Parenteral nanoemulsions of risperidone for enhanced brain delivery in acute psychosis: Physicochemical and in vivo performances",
volume = "533",
number = "2",
pages = "421-430",
doi = "10.1016/j.ijpharm.2017.05.051"
}
Đorđević, S., Santrač, A., Cekić, N., Marković, B., Divović, B., Ilić, T., Savić, M.,& Savić, S.. (2017). Parenteral nanoemulsions of risperidone for enhanced brain delivery in acute psychosis: Physicochemical and in vivo performances. in International Journal of Pharmaceutics
Elsevier Science BV, Amsterdam., 533(2), 421-430.
https://doi.org/10.1016/j.ijpharm.2017.05.051
Đorđević S, Santrač A, Cekić N, Marković B, Divović B, Ilić T, Savić M, Savić S. Parenteral nanoemulsions of risperidone for enhanced brain delivery in acute psychosis: Physicochemical and in vivo performances. in International Journal of Pharmaceutics. 2017;533(2):421-430.
doi:10.1016/j.ijpharm.2017.05.051 .
Đorđević, Sanela, Santrač, Anja, Cekić, Nebojša, Marković, Bojan, Divović, Branka, Ilić, Tanja, Savić, Miroslav, Savić, Snežana, "Parenteral nanoemulsions of risperidone for enhanced brain delivery in acute psychosis: Physicochemical and in vivo performances" in International Journal of Pharmaceutics, 533, no. 2 (2017):421-430,
https://doi.org/10.1016/j.ijpharm.2017.05.051 . .
43
21
32

Alkyl polyglucoside vs. ethoxylated surfactant-based microemulsions as vehicles for two poorly water-soluble drugs: physicochemical characterization and in vivo skin performance

Bubić-Pajić, Nataša; Todosijević, Marija N.; Vuleta, Gordana; Cekić, Nebojša; Dobričić, Vladimir; Vučen, Sonja; Čalija, Bojan; Lukić, Milica; Ilić, Tanja; Savić, Snežana

(Hrvatsko Farmaceutsko Drustov (HFD)-Croation Pharmaceutical Soc, Zagreb, 2017)

TY  - JOUR
AU  - Bubić-Pajić, Nataša
AU  - Todosijević, Marija N.
AU  - Vuleta, Gordana
AU  - Cekić, Nebojša
AU  - Dobričić, Vladimir
AU  - Vučen, Sonja
AU  - Čalija, Bojan
AU  - Lukić, Milica
AU  - Ilić, Tanja
AU  - Savić, Snežana
PY  - 2017
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/2837
AB  - Two types of biocompatible surfactants were evaluated for their capability to formulate skin-friendly/non-irritant microemulsions as vehicles for two poorly water-soluble model drugs differing in properties and concentrations: alkyl polyglucosides (decyl glucoside and caprylyl/capryl glucoside) and ethoxylated surfactants (glycereth-7-caprylate/caprate and polysorbate 80). Phase behavior, structural inversion and microemulsion solubilization potential for sertaconazole nitrate and adapalene were found to be highly dependent on the surfactants structure and HLB value. Performed characterization (polarized light microscopy, pH, electrical conductivity, rheological, FTIR and DSC measurements) indicated a formulation containing glycereth-7-caprylate/caprate as suitable for incorporation of both drugs, whereas alkyl polyglucoside-based systems did not exhibit satisfying solubilization capacity for sertaconazole nitrate. Further, monitored parameters were strongly affected by sertaconazole nitrate incorporation, while they remained almost unchanged in adapalene-loaded vehicles. In addition, results of the in vivo skin performance study supported acceptable tolerability for all investigated formulations, suggesting selected microemulsions as promising carriers worth exploring further for effective skin delivery of model drugs.
PB  - Hrvatsko Farmaceutsko Drustov (HFD)-Croation Pharmaceutical Soc, Zagreb
T2  - Acta Pharmaceutica
T1  - Alkyl polyglucoside vs. ethoxylated surfactant-based microemulsions as vehicles for two poorly water-soluble drugs: physicochemical characterization and in vivo skin performance
VL  - 67
IS  - 4
SP  - 415
EP  - 439
DO  - 10.1515/acph-2017-0036
ER  - 
@article{
author = "Bubić-Pajić, Nataša and Todosijević, Marija N. and Vuleta, Gordana and Cekić, Nebojša and Dobričić, Vladimir and Vučen, Sonja and Čalija, Bojan and Lukić, Milica and Ilić, Tanja and Savić, Snežana",
year = "2017",
abstract = "Two types of biocompatible surfactants were evaluated for their capability to formulate skin-friendly/non-irritant microemulsions as vehicles for two poorly water-soluble model drugs differing in properties and concentrations: alkyl polyglucosides (decyl glucoside and caprylyl/capryl glucoside) and ethoxylated surfactants (glycereth-7-caprylate/caprate and polysorbate 80). Phase behavior, structural inversion and microemulsion solubilization potential for sertaconazole nitrate and adapalene were found to be highly dependent on the surfactants structure and HLB value. Performed characterization (polarized light microscopy, pH, electrical conductivity, rheological, FTIR and DSC measurements) indicated a formulation containing glycereth-7-caprylate/caprate as suitable for incorporation of both drugs, whereas alkyl polyglucoside-based systems did not exhibit satisfying solubilization capacity for sertaconazole nitrate. Further, monitored parameters were strongly affected by sertaconazole nitrate incorporation, while they remained almost unchanged in adapalene-loaded vehicles. In addition, results of the in vivo skin performance study supported acceptable tolerability for all investigated formulations, suggesting selected microemulsions as promising carriers worth exploring further for effective skin delivery of model drugs.",
publisher = "Hrvatsko Farmaceutsko Drustov (HFD)-Croation Pharmaceutical Soc, Zagreb",
journal = "Acta Pharmaceutica",
title = "Alkyl polyglucoside vs. ethoxylated surfactant-based microemulsions as vehicles for two poorly water-soluble drugs: physicochemical characterization and in vivo skin performance",
volume = "67",
number = "4",
pages = "415-439",
doi = "10.1515/acph-2017-0036"
}
Bubić-Pajić, N., Todosijević, M. N., Vuleta, G., Cekić, N., Dobričić, V., Vučen, S., Čalija, B., Lukić, M., Ilić, T.,& Savić, S.. (2017). Alkyl polyglucoside vs. ethoxylated surfactant-based microemulsions as vehicles for two poorly water-soluble drugs: physicochemical characterization and in vivo skin performance. in Acta Pharmaceutica
Hrvatsko Farmaceutsko Drustov (HFD)-Croation Pharmaceutical Soc, Zagreb., 67(4), 415-439.
https://doi.org/10.1515/acph-2017-0036
Bubić-Pajić N, Todosijević MN, Vuleta G, Cekić N, Dobričić V, Vučen S, Čalija B, Lukić M, Ilić T, Savić S. Alkyl polyglucoside vs. ethoxylated surfactant-based microemulsions as vehicles for two poorly water-soluble drugs: physicochemical characterization and in vivo skin performance. in Acta Pharmaceutica. 2017;67(4):415-439.
doi:10.1515/acph-2017-0036 .
Bubić-Pajić, Nataša, Todosijević, Marija N., Vuleta, Gordana, Cekić, Nebojša, Dobričić, Vladimir, Vučen, Sonja, Čalija, Bojan, Lukić, Milica, Ilić, Tanja, Savić, Snežana, "Alkyl polyglucoside vs. ethoxylated surfactant-based microemulsions as vehicles for two poorly water-soluble drugs: physicochemical characterization and in vivo skin performance" in Acta Pharmaceutica, 67, no. 4 (2017):415-439,
https://doi.org/10.1515/acph-2017-0036 . .
10
8
10

Tacrolimus loaded biocompatible lecithin-based microemulsions with improved skin penetration: Structure characterization and in vitro/in vivo performances

Savić, Vedrana; Todosijević, Marija N.; Ilić, Tanja; Lukić, Milica; Mitsou, Evgenia; Papadimitriou, Vassiliki; Avramiotis, Spyridon; Marković, Bojan; Cekić, Nebojša; Savić, Snežana

(Elsevier Science BV, Amsterdam, 2017)

TY  - JOUR
AU  - Savić, Vedrana
AU  - Todosijević, Marija N.
AU  - Ilić, Tanja
AU  - Lukić, Milica
AU  - Mitsou, Evgenia
AU  - Papadimitriou, Vassiliki
AU  - Avramiotis, Spyridon
AU  - Marković, Bojan
AU  - Cekić, Nebojša
AU  - Savić, Snežana
PY  - 2017
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/2823
AB  - In order to improve skin penetration of tacrolimus we aimed to develop potentially non-irritant, lecithin-based microemulsions containing ethanol, isopropanol and/or propylene glycol as cosurfactants, varying caprylic/capric triglycerides and propylene glycol monocaprylate as oil phase. The influence of excipients on the size of microemulsion region in pseudo-ternary phase diagrams and their ability to form different types of microemulsions was evaluated. The comprehensive physicochemical characterization of microemulsions and the evaluation of their structure was performed, while the localization of tacrolimus in microemulsions was further investigated using electron paramagnetic resonance spectroscopy. Moreover, stability studies proved no change in tacrolimus content during one year of storage at room temperature. In addition, in vivo skin performance indicated no skin irritation potential of blank microemulsions, whereas in vitro release testing using Franz diffusion cells showed superior release rate of tacrolimus from microemulsions (0.98 +/- 0.10 and 0.92 +/- 0.11 mu g/cm(2)/h for two bicontinuous and 1.00 +/- 0.24 mu g/cm(2)/h for oil-in-water microemulsion) compared to referent Protopic ointment (0.15 +/- 0.08 mu g/cm(2)/h). Furthermore, ex vivo penetration assessed through porcine ear skin using tape stripping, confirmed superiority of two microemulsions related to the reference, implying developed microemulsions as promising carriers for dermal delivery of tacrolimus.
PB  - Elsevier Science BV, Amsterdam
T2  - International Journal of Pharmaceutics
T1  - Tacrolimus loaded biocompatible lecithin-based microemulsions with improved skin penetration: Structure characterization and in vitro/in vivo performances
VL  - 529
IS  - 1-2
SP  - 491
EP  - 505
DO  - 10.1016/j.ijpharm.2017.07.036
ER  - 
@article{
author = "Savić, Vedrana and Todosijević, Marija N. and Ilić, Tanja and Lukić, Milica and Mitsou, Evgenia and Papadimitriou, Vassiliki and Avramiotis, Spyridon and Marković, Bojan and Cekić, Nebojša and Savić, Snežana",
year = "2017",
abstract = "In order to improve skin penetration of tacrolimus we aimed to develop potentially non-irritant, lecithin-based microemulsions containing ethanol, isopropanol and/or propylene glycol as cosurfactants, varying caprylic/capric triglycerides and propylene glycol monocaprylate as oil phase. The influence of excipients on the size of microemulsion region in pseudo-ternary phase diagrams and their ability to form different types of microemulsions was evaluated. The comprehensive physicochemical characterization of microemulsions and the evaluation of their structure was performed, while the localization of tacrolimus in microemulsions was further investigated using electron paramagnetic resonance spectroscopy. Moreover, stability studies proved no change in tacrolimus content during one year of storage at room temperature. In addition, in vivo skin performance indicated no skin irritation potential of blank microemulsions, whereas in vitro release testing using Franz diffusion cells showed superior release rate of tacrolimus from microemulsions (0.98 +/- 0.10 and 0.92 +/- 0.11 mu g/cm(2)/h for two bicontinuous and 1.00 +/- 0.24 mu g/cm(2)/h for oil-in-water microemulsion) compared to referent Protopic ointment (0.15 +/- 0.08 mu g/cm(2)/h). Furthermore, ex vivo penetration assessed through porcine ear skin using tape stripping, confirmed superiority of two microemulsions related to the reference, implying developed microemulsions as promising carriers for dermal delivery of tacrolimus.",
publisher = "Elsevier Science BV, Amsterdam",
journal = "International Journal of Pharmaceutics",
title = "Tacrolimus loaded biocompatible lecithin-based microemulsions with improved skin penetration: Structure characterization and in vitro/in vivo performances",
volume = "529",
number = "1-2",
pages = "491-505",
doi = "10.1016/j.ijpharm.2017.07.036"
}
Savić, V., Todosijević, M. N., Ilić, T., Lukić, M., Mitsou, E., Papadimitriou, V., Avramiotis, S., Marković, B., Cekić, N.,& Savić, S.. (2017). Tacrolimus loaded biocompatible lecithin-based microemulsions with improved skin penetration: Structure characterization and in vitro/in vivo performances. in International Journal of Pharmaceutics
Elsevier Science BV, Amsterdam., 529(1-2), 491-505.
https://doi.org/10.1016/j.ijpharm.2017.07.036
Savić V, Todosijević MN, Ilić T, Lukić M, Mitsou E, Papadimitriou V, Avramiotis S, Marković B, Cekić N, Savić S. Tacrolimus loaded biocompatible lecithin-based microemulsions with improved skin penetration: Structure characterization and in vitro/in vivo performances. in International Journal of Pharmaceutics. 2017;529(1-2):491-505.
doi:10.1016/j.ijpharm.2017.07.036 .
Savić, Vedrana, Todosijević, Marija N., Ilić, Tanja, Lukić, Milica, Mitsou, Evgenia, Papadimitriou, Vassiliki, Avramiotis, Spyridon, Marković, Bojan, Cekić, Nebojša, Savić, Snežana, "Tacrolimus loaded biocompatible lecithin-based microemulsions with improved skin penetration: Structure characterization and in vitro/in vivo performances" in International Journal of Pharmaceutics, 529, no. 1-2 (2017):491-505,
https://doi.org/10.1016/j.ijpharm.2017.07.036 . .
43
31
44

Influence of Polycation Functional Properties on Polyanion Micro/Nanoparticles for NSAIDs Reinforced via Polyelectrolyte Complexation: Alginate-Chitosan Case Study

Čalija, Bojan; Cekić, Nebojša; Milić, Jela

(Elsevier Inc., 2017)

TY  - CHAP
AU  - Čalija, Bojan
AU  - Cekić, Nebojša
AU  - Milić, Jela
PY  - 2017
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/2789
AB  - In the last 2 decades, numerous studies have been carried out to synthesize biodegradable and nontoxic micro- and nanoparticulate carriers for nonsteroidal anti-inflammatory drugs. The potential benefits of these carriers are reduction of dosing frequency and minimization of side effects due to prolonged/delayed drug release, increased selectivity for target tissues and possibility of direct administration to the site of action.This chapter discusses characteristics of alginate-based micro- and nanoparticles reinforced with chitosan and gives an overview of the techniques commonly used for preparation of these drug carriers. It is focused on the chitosans' functionality-related characteristics, such as molecular weight and viscosity, and their influence on feasibility of the alginate-chitosan particulate carriers for oral delivery of nonsteroidal anti-inflammatory drugs. Additionally, chitosan's structure, safety, and overall characteristics are discussed in detail for better understanding.
PB  - Elsevier Inc.
T2  - Microsized and Nanosized Carriers for Nonsteroidal Anti-Inflammatory Drugs: Formulation Challenges a
T1  - Influence of Polycation Functional Properties on Polyanion Micro/Nanoparticles for NSAIDs Reinforced via Polyelectrolyte Complexation: Alginate-Chitosan Case Study
SP  - 133
EP  - 160
DO  - 10.1016/B978-0-12-804017-1.00005-4
ER  - 
@inbook{
author = "Čalija, Bojan and Cekić, Nebojša and Milić, Jela",
year = "2017",
abstract = "In the last 2 decades, numerous studies have been carried out to synthesize biodegradable and nontoxic micro- and nanoparticulate carriers for nonsteroidal anti-inflammatory drugs. The potential benefits of these carriers are reduction of dosing frequency and minimization of side effects due to prolonged/delayed drug release, increased selectivity for target tissues and possibility of direct administration to the site of action.This chapter discusses characteristics of alginate-based micro- and nanoparticles reinforced with chitosan and gives an overview of the techniques commonly used for preparation of these drug carriers. It is focused on the chitosans' functionality-related characteristics, such as molecular weight and viscosity, and their influence on feasibility of the alginate-chitosan particulate carriers for oral delivery of nonsteroidal anti-inflammatory drugs. Additionally, chitosan's structure, safety, and overall characteristics are discussed in detail for better understanding.",
publisher = "Elsevier Inc.",
journal = "Microsized and Nanosized Carriers for Nonsteroidal Anti-Inflammatory Drugs: Formulation Challenges a",
booktitle = "Influence of Polycation Functional Properties on Polyanion Micro/Nanoparticles for NSAIDs Reinforced via Polyelectrolyte Complexation: Alginate-Chitosan Case Study",
pages = "133-160",
doi = "10.1016/B978-0-12-804017-1.00005-4"
}
Čalija, B., Cekić, N.,& Milić, J.. (2017). Influence of Polycation Functional Properties on Polyanion Micro/Nanoparticles for NSAIDs Reinforced via Polyelectrolyte Complexation: Alginate-Chitosan Case Study. in Microsized and Nanosized Carriers for Nonsteroidal Anti-Inflammatory Drugs: Formulation Challenges a
Elsevier Inc.., 133-160.
https://doi.org/10.1016/B978-0-12-804017-1.00005-4
Čalija B, Cekić N, Milić J. Influence of Polycation Functional Properties on Polyanion Micro/Nanoparticles for NSAIDs Reinforced via Polyelectrolyte Complexation: Alginate-Chitosan Case Study. in Microsized and Nanosized Carriers for Nonsteroidal Anti-Inflammatory Drugs: Formulation Challenges a. 2017;:133-160.
doi:10.1016/B978-0-12-804017-1.00005-4 .
Čalija, Bojan, Cekić, Nebojša, Milić, Jela, "Influence of Polycation Functional Properties on Polyanion Micro/Nanoparticles for NSAIDs Reinforced via Polyelectrolyte Complexation: Alginate-Chitosan Case Study" in Microsized and Nanosized Carriers for Nonsteroidal Anti-Inflammatory Drugs: Formulation Challenges a (2017):133-160,
https://doi.org/10.1016/B978-0-12-804017-1.00005-4 . .
5
4

Polymeric Microparticles and Inorganic Micro/Nanoparticulate Drug Carriers: An Overview and Pharmaceutical Application

Krajišnik, Danina; Čalija, Bojan; Cekić, Nebojša

(Elsevier Inc., 2017)

TY  - CHAP
AU  - Krajišnik, Danina
AU  - Čalija, Bojan
AU  - Cekić, Nebojša
PY  - 2017
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/2785
AB  - Recent expansion of innovative micro- and nanosized drug carriers has been driven by utilization of materials with improved functional properties, along with employment of innovative preparation techniques. Various materials of both natural and synthetic origin, with diverse physicochemical properties, ranging from polymers to structured porous inorganic materials have been investigated as starting materials for preparation of these carriers.This chapter focuses on characteristics, methods of preparation/functionalization of micro- and nanosized carriers consisting of these two distinct groups of materials. In addition, their potential application in up-to-date drug delivery is discussed.
PB  - Elsevier Inc.
T2  - Microsized and Nanosized Carriers for Nonsteroidal Anti-Inflammatory Drugs: Formulation Challenges a
T1  - Polymeric Microparticles and Inorganic Micro/Nanoparticulate Drug Carriers: An Overview and Pharmaceutical Application
SP  - 33
EP  - 67
DO  - 10.1016/B978-0-12-804017-1.00002-9
ER  - 
@inbook{
author = "Krajišnik, Danina and Čalija, Bojan and Cekić, Nebojša",
year = "2017",
abstract = "Recent expansion of innovative micro- and nanosized drug carriers has been driven by utilization of materials with improved functional properties, along with employment of innovative preparation techniques. Various materials of both natural and synthetic origin, with diverse physicochemical properties, ranging from polymers to structured porous inorganic materials have been investigated as starting materials for preparation of these carriers.This chapter focuses on characteristics, methods of preparation/functionalization of micro- and nanosized carriers consisting of these two distinct groups of materials. In addition, their potential application in up-to-date drug delivery is discussed.",
publisher = "Elsevier Inc.",
journal = "Microsized and Nanosized Carriers for Nonsteroidal Anti-Inflammatory Drugs: Formulation Challenges a",
booktitle = "Polymeric Microparticles and Inorganic Micro/Nanoparticulate Drug Carriers: An Overview and Pharmaceutical Application",
pages = "33-67",
doi = "10.1016/B978-0-12-804017-1.00002-9"
}
Krajišnik, D., Čalija, B.,& Cekić, N.. (2017). Polymeric Microparticles and Inorganic Micro/Nanoparticulate Drug Carriers: An Overview and Pharmaceutical Application. in Microsized and Nanosized Carriers for Nonsteroidal Anti-Inflammatory Drugs: Formulation Challenges a
Elsevier Inc.., 33-67.
https://doi.org/10.1016/B978-0-12-804017-1.00002-9
Krajišnik D, Čalija B, Cekić N. Polymeric Microparticles and Inorganic Micro/Nanoparticulate Drug Carriers: An Overview and Pharmaceutical Application. in Microsized and Nanosized Carriers for Nonsteroidal Anti-Inflammatory Drugs: Formulation Challenges a. 2017;:33-67.
doi:10.1016/B978-0-12-804017-1.00002-9 .
Krajišnik, Danina, Čalija, Bojan, Cekić, Nebojša, "Polymeric Microparticles and Inorganic Micro/Nanoparticulate Drug Carriers: An Overview and Pharmaceutical Application" in Microsized and Nanosized Carriers for Nonsteroidal Anti-Inflammatory Drugs: Formulation Challenges a (2017):33-67,
https://doi.org/10.1016/B978-0-12-804017-1.00002-9 . .
10
8

Diazepam-loaded parenteral nanoemulsions: Physicochemical characterization and in vitro release study

Đorđević, Sanela; Isailović, Tanja; Cekić, Nebojša; Vuleta, Gordana; Savić, Snežana

(Savez farmaceutskih udruženja Srbije, Beograd, 2016)

TY  - JOUR
AU  - Đorđević, Sanela
AU  - Isailović, Tanja
AU  - Cekić, Nebojša
AU  - Vuleta, Gordana
AU  - Savić, Snežana
PY  - 2016
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/2731
AB  - The aim of the present study was to develop parenteral nanoemulsions containing increasing content of oil phase (20, 30 and 40%, w/w of medium-chain triglycerides-soybean oil mixture at 4:1 ratio), stabilized by lecithin-polysorbate 80 mixture, and to assess their feasibility as carriers for poorly water-soluble psychopharmacological drugs. To this purpose, nanoemulsions loaded with diazepam as a model drug were prepared through high pressure homogenization and characterized regarding droplet size, polydispersity, surface charge, viscosity, pH value, and electrical conductivity. Furthermore, the in vitro release of diazepam from developed nanoemulsions was examined using reverse dialysis bag technique, and drug release kinetics was evaluated through several mathematical models. After preparation, all formulations revealed small mean droplet size (206 ± 7 nm), with narrow size distribution (0.116 ± 0.012) and zeta potential around -50 mV, complying with pharmacopoeial requirements (USP 39-NF 34), wherein there were no significant changes in monitored parameters after one year of storage at 25 ± 2°C. In vitro drug release study demonstrated that 40-50% of diazepam was released from actual nanoemulsions within 1 h, while the kinetic release process could be described by Korsmeyer-Peppas model. The results obtained suggest that formulated parenteral nanoemulsions might be promising carriers for rapid delivery of lipophilic, poorly water-soluble psychopharmacological drugs.
AB  - Cilj ovog istraživanja bio je da se razviju parenteralne nanoemulzije sa rastućom koncentracijom uljane faze (20, 30 i 40% smeše triglicerida srednje dužine lanca i sojinog ulja u odnosu 4:1), stabilizovane kombinacijom lecitina i polisorbata 80, i da se proceni njihova pogodnost kao nosača za slabo rastvorljive psihofarmakološke lekovite supstance. U tu svrhu, homogenizacijom pod visokim pritiskom izrađene su nanoemulzije sa diazepamom kao model lekovitom supstancom i okarakterisane u pogledu veličine kapi, indeksa polidisperznosti, površinskog naelektrisanja, viskoziteta, pH vrednosti i električne provodljivosti. Takođe, primenom reverzne tehnike sa dijaliznim vrećicama procenjena je brzina oslobađanja diazepama iz razvijenih nanoemulzija, uz karakterizaciju dobijenih profila oslobađanja primenom različitih matematičkih modela. Nakon izrade, sve formulacije imale su malu prosečnu veličinu kapi (206 ± 7 nm), sa uskom raspodelom veličina (0,116 ± 0,012) i zeta potencijalom oko -50 mV, što je u skladu sa farmakopejskim zahtevima (USP 39-NF 34) pri čemu se vrednosti navedenih parametara nisu značajno promenile nakon godinu dana čuvanja na 25 ± 2°C. In vitro ispitivanje brzine oslobađanja pokazalo je da se 40-50% diazepama oslobodi iz ispitivanih nanoemulzija tokom 1 h, pri čemu se kinetika oslobađanja može opisati Korsmeyer-Peppas modelom. Dobijeni rezultati ukazuju da formulisane parenteralne nanoemulzije predstavljaju obećavajuće nosače za brzu isporuku slabo rastvorljivih psihofarmakoloških lekovitih supstanci.
PB  - Savez farmaceutskih udruženja Srbije, Beograd
T2  - Arhiv za farmaciju
T1  - Diazepam-loaded parenteral nanoemulsions: Physicochemical characterization and in vitro release study
T1  - Parenteralne nanoemulzije diazepama - fizičkohemijska karakterizacija i in vitro ispitivanje brzine oslobađanja
VL  - 66
IS  - 1
SP  - 24
EP  - 41
DO  - 10.5937/arhfarm1601024D
ER  - 
@article{
author = "Đorđević, Sanela and Isailović, Tanja and Cekić, Nebojša and Vuleta, Gordana and Savić, Snežana",
year = "2016",
abstract = "The aim of the present study was to develop parenteral nanoemulsions containing increasing content of oil phase (20, 30 and 40%, w/w of medium-chain triglycerides-soybean oil mixture at 4:1 ratio), stabilized by lecithin-polysorbate 80 mixture, and to assess their feasibility as carriers for poorly water-soluble psychopharmacological drugs. To this purpose, nanoemulsions loaded with diazepam as a model drug were prepared through high pressure homogenization and characterized regarding droplet size, polydispersity, surface charge, viscosity, pH value, and electrical conductivity. Furthermore, the in vitro release of diazepam from developed nanoemulsions was examined using reverse dialysis bag technique, and drug release kinetics was evaluated through several mathematical models. After preparation, all formulations revealed small mean droplet size (206 ± 7 nm), with narrow size distribution (0.116 ± 0.012) and zeta potential around -50 mV, complying with pharmacopoeial requirements (USP 39-NF 34), wherein there were no significant changes in monitored parameters after one year of storage at 25 ± 2°C. In vitro drug release study demonstrated that 40-50% of diazepam was released from actual nanoemulsions within 1 h, while the kinetic release process could be described by Korsmeyer-Peppas model. The results obtained suggest that formulated parenteral nanoemulsions might be promising carriers for rapid delivery of lipophilic, poorly water-soluble psychopharmacological drugs., Cilj ovog istraživanja bio je da se razviju parenteralne nanoemulzije sa rastućom koncentracijom uljane faze (20, 30 i 40% smeše triglicerida srednje dužine lanca i sojinog ulja u odnosu 4:1), stabilizovane kombinacijom lecitina i polisorbata 80, i da se proceni njihova pogodnost kao nosača za slabo rastvorljive psihofarmakološke lekovite supstance. U tu svrhu, homogenizacijom pod visokim pritiskom izrađene su nanoemulzije sa diazepamom kao model lekovitom supstancom i okarakterisane u pogledu veličine kapi, indeksa polidisperznosti, površinskog naelektrisanja, viskoziteta, pH vrednosti i električne provodljivosti. Takođe, primenom reverzne tehnike sa dijaliznim vrećicama procenjena je brzina oslobađanja diazepama iz razvijenih nanoemulzija, uz karakterizaciju dobijenih profila oslobađanja primenom različitih matematičkih modela. Nakon izrade, sve formulacije imale su malu prosečnu veličinu kapi (206 ± 7 nm), sa uskom raspodelom veličina (0,116 ± 0,012) i zeta potencijalom oko -50 mV, što je u skladu sa farmakopejskim zahtevima (USP 39-NF 34) pri čemu se vrednosti navedenih parametara nisu značajno promenile nakon godinu dana čuvanja na 25 ± 2°C. In vitro ispitivanje brzine oslobađanja pokazalo je da se 40-50% diazepama oslobodi iz ispitivanih nanoemulzija tokom 1 h, pri čemu se kinetika oslobađanja može opisati Korsmeyer-Peppas modelom. Dobijeni rezultati ukazuju da formulisane parenteralne nanoemulzije predstavljaju obećavajuće nosače za brzu isporuku slabo rastvorljivih psihofarmakoloških lekovitih supstanci.",
publisher = "Savez farmaceutskih udruženja Srbije, Beograd",
journal = "Arhiv za farmaciju",
title = "Diazepam-loaded parenteral nanoemulsions: Physicochemical characterization and in vitro release study, Parenteralne nanoemulzije diazepama - fizičkohemijska karakterizacija i in vitro ispitivanje brzine oslobađanja",
volume = "66",
number = "1",
pages = "24-41",
doi = "10.5937/arhfarm1601024D"
}
Đorđević, S., Isailović, T., Cekić, N., Vuleta, G.,& Savić, S.. (2016). Diazepam-loaded parenteral nanoemulsions: Physicochemical characterization and in vitro release study. in Arhiv za farmaciju
Savez farmaceutskih udruženja Srbije, Beograd., 66(1), 24-41.
https://doi.org/10.5937/arhfarm1601024D
Đorđević S, Isailović T, Cekić N, Vuleta G, Savić S. Diazepam-loaded parenteral nanoemulsions: Physicochemical characterization and in vitro release study. in Arhiv za farmaciju. 2016;66(1):24-41.
doi:10.5937/arhfarm1601024D .
Đorđević, Sanela, Isailović, Tanja, Cekić, Nebojša, Vuleta, Gordana, Savić, Snežana, "Diazepam-loaded parenteral nanoemulsions: Physicochemical characterization and in vitro release study" in Arhiv za farmaciju, 66, no. 1 (2016):24-41,
https://doi.org/10.5937/arhfarm1601024D . .
3
4

Biocompatible Nanoemulsions for Improved Aceclofenac Skin Delivery: Formulation Approach Using Combined Mixture-Process Experimental Design

Isailović, Tanja; Đorđević, Sanela; Marković, Bojan; Randelović, Danijela; Cekić, Nebojša; Lukić, Milica; Pantelić, Ivana; Daniels, Rolf; Savić, Snežana

(Elsevier Science Inc, New York, 2016)

TY  - JOUR
AU  - Isailović, Tanja
AU  - Đorđević, Sanela
AU  - Marković, Bojan
AU  - Randelović, Danijela
AU  - Cekić, Nebojša
AU  - Lukić, Milica
AU  - Pantelić, Ivana
AU  - Daniels, Rolf
AU  - Savić, Snežana
PY  - 2016
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/2716
AB  - We aimed to develop lecithin-based nanoemulsions intended for effective aceclofenac (ACF) skin delivery utilizing sucrose esters [sucrose palmitate (SP) and sucrose stearate (SS)] as additional stabilizers and penetration enhancers. To find the suitable surfactant mixtures and levels of process variables (homogenization pressure and number of cycles-high pressure homogenization manufacturing method) that result in drug-loaded nanoemulsions with minimal droplet size and narrow size distribution, a combined mixture-process experimental design was employed. Based on optimization data, selected nanoemulsions were evaluated regarding morphology, surface charge, drug-excipient interactions, physical stability, and in vivo skin performances (skin penetration and irritation potential). The predicted physicochemical properties and storage stability were proved satisfying for ACF-loaded nanoemulsions containing 2% of SP in the blend with 0%-1% of SS and 1%-2% of egg lecithin (produced at 50 degrees C/20 cycles/800 bar). Additionally, the in vivo tape stripping demonstrated superior ACF skin absorption from these nanoemulsions, particularly from those containing 2% of SP, 0.5% of SS, and 1.5% of egg lecithin, when comparing with the sample costabilized by conventional surfactant-polysorbate 80. In summary, the combined mixture-process experimental design was shown as a feasible tool for formulation development of multisurfactant-based nanosized delivery systems with potentially improved overall product performances.
PB  - Elsevier Science Inc, New York
T2  - Journal of Pharmaceutical Sciences
T1  - Biocompatible Nanoemulsions for Improved Aceclofenac Skin Delivery: Formulation Approach Using Combined Mixture-Process Experimental Design
VL  - 105
IS  - 1
SP  - 308
EP  - 323
DO  - 10.1002/jps.24706
ER  - 
@article{
author = "Isailović, Tanja and Đorđević, Sanela and Marković, Bojan and Randelović, Danijela and Cekić, Nebojša and Lukić, Milica and Pantelić, Ivana and Daniels, Rolf and Savić, Snežana",
year = "2016",
abstract = "We aimed to develop lecithin-based nanoemulsions intended for effective aceclofenac (ACF) skin delivery utilizing sucrose esters [sucrose palmitate (SP) and sucrose stearate (SS)] as additional stabilizers and penetration enhancers. To find the suitable surfactant mixtures and levels of process variables (homogenization pressure and number of cycles-high pressure homogenization manufacturing method) that result in drug-loaded nanoemulsions with minimal droplet size and narrow size distribution, a combined mixture-process experimental design was employed. Based on optimization data, selected nanoemulsions were evaluated regarding morphology, surface charge, drug-excipient interactions, physical stability, and in vivo skin performances (skin penetration and irritation potential). The predicted physicochemical properties and storage stability were proved satisfying for ACF-loaded nanoemulsions containing 2% of SP in the blend with 0%-1% of SS and 1%-2% of egg lecithin (produced at 50 degrees C/20 cycles/800 bar). Additionally, the in vivo tape stripping demonstrated superior ACF skin absorption from these nanoemulsions, particularly from those containing 2% of SP, 0.5% of SS, and 1.5% of egg lecithin, when comparing with the sample costabilized by conventional surfactant-polysorbate 80. In summary, the combined mixture-process experimental design was shown as a feasible tool for formulation development of multisurfactant-based nanosized delivery systems with potentially improved overall product performances.",
publisher = "Elsevier Science Inc, New York",
journal = "Journal of Pharmaceutical Sciences",
title = "Biocompatible Nanoemulsions for Improved Aceclofenac Skin Delivery: Formulation Approach Using Combined Mixture-Process Experimental Design",
volume = "105",
number = "1",
pages = "308-323",
doi = "10.1002/jps.24706"
}
Isailović, T., Đorđević, S., Marković, B., Randelović, D., Cekić, N., Lukić, M., Pantelić, I., Daniels, R.,& Savić, S.. (2016). Biocompatible Nanoemulsions for Improved Aceclofenac Skin Delivery: Formulation Approach Using Combined Mixture-Process Experimental Design. in Journal of Pharmaceutical Sciences
Elsevier Science Inc, New York., 105(1), 308-323.
https://doi.org/10.1002/jps.24706
Isailović T, Đorđević S, Marković B, Randelović D, Cekić N, Lukić M, Pantelić I, Daniels R, Savić S. Biocompatible Nanoemulsions for Improved Aceclofenac Skin Delivery: Formulation Approach Using Combined Mixture-Process Experimental Design. in Journal of Pharmaceutical Sciences. 2016;105(1):308-323.
doi:10.1002/jps.24706 .
Isailović, Tanja, Đorđević, Sanela, Marković, Bojan, Randelović, Danijela, Cekić, Nebojša, Lukić, Milica, Pantelić, Ivana, Daniels, Rolf, Savić, Snežana, "Biocompatible Nanoemulsions for Improved Aceclofenac Skin Delivery: Formulation Approach Using Combined Mixture-Process Experimental Design" in Journal of Pharmaceutical Sciences, 105, no. 1 (2016):308-323,
https://doi.org/10.1002/jps.24706 . .
25
15
20

Parenteral nanoemulsions as promising carriers for brain delivery of risperidone: Design, characterization and in vivo pharmacokinetic evaluation

Đorđević, Sanela; Cekić, Nebojša; Savić, Miroslav; Isailović, Tanja; Ranđelović, Danijela; Marković, Bojan; Savić, Saša R.; Timić-Stamenić, Tamara; Daniels, Rolf; Savić, Snežana

(Elsevier Science BV, Amsterdam, 2015)

TY  - JOUR
AU  - Đorđević, Sanela
AU  - Cekić, Nebojša
AU  - Savić, Miroslav
AU  - Isailović, Tanja
AU  - Ranđelović, Danijela
AU  - Marković, Bojan
AU  - Savić, Saša R.
AU  - Timić-Stamenić, Tamara
AU  - Daniels, Rolf
AU  - Savić, Snežana
PY  - 2015
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/2346
AB  - This paper describes design and evaluation of parenteral lecithin-based nanoemulsions intended for brain delivery of risperidone, a poorly water-soluble psychopharmacological drug. The nanoemulsions were prepared through cold/hot high pressure homogenization and characterized regarding droplet size, polydispersity, surface charge, morphology, drug-vehicle interactions, and physical stability. To estimate the simultaneous influence of nanoemulsion formulation and preparation parameters-co-emulsifier type, aqueous phase type, homogenization temperature-on the critical quality attributes of developed nanoemulsions, a general factorial experimental design was applied. From the established design space and stability data, promising risperidone-loaded nanoemulsions (mean size about 160 nm, size distribution  lt 0.15, zeta potential around -50 mV), containing sodium oleate in the aqueous phase and polysorbate 80, poloxamer 188 or Solutol (R) HS15 as co-emulsifier, were produced by hot homogenization and their ability to improve risperidone delivery to the brain was assessed in rats. Pharmacokinetic study demonstrated erratic brain profiles of risperidone following intraperitoneal administration in selected nanoemulsions, most probably due to their different droplet surface properties (different composition of the stabilizing layer). Namely, polysorbate 80-costabilized nanoemulsion showed increased (1.4-7.4-fold higher) risperidone brain availability compared to other nanoemulsions and drug solution, suggesting this nanoemulsion as a promising carrier worth exploring further for brain targeting.
PB  - Elsevier Science BV, Amsterdam
T2  - International Journal of Pharmaceutics
T1  - Parenteral nanoemulsions as promising carriers for brain delivery of risperidone: Design, characterization and in vivo pharmacokinetic evaluation
VL  - 493
IS  - 1-2
SP  - 40
EP  - 54
DO  - 10.1016/j.ijpharm.2015.07.007
ER  - 
@article{
author = "Đorđević, Sanela and Cekić, Nebojša and Savić, Miroslav and Isailović, Tanja and Ranđelović, Danijela and Marković, Bojan and Savić, Saša R. and Timić-Stamenić, Tamara and Daniels, Rolf and Savić, Snežana",
year = "2015",
abstract = "This paper describes design and evaluation of parenteral lecithin-based nanoemulsions intended for brain delivery of risperidone, a poorly water-soluble psychopharmacological drug. The nanoemulsions were prepared through cold/hot high pressure homogenization and characterized regarding droplet size, polydispersity, surface charge, morphology, drug-vehicle interactions, and physical stability. To estimate the simultaneous influence of nanoemulsion formulation and preparation parameters-co-emulsifier type, aqueous phase type, homogenization temperature-on the critical quality attributes of developed nanoemulsions, a general factorial experimental design was applied. From the established design space and stability data, promising risperidone-loaded nanoemulsions (mean size about 160 nm, size distribution  lt 0.15, zeta potential around -50 mV), containing sodium oleate in the aqueous phase and polysorbate 80, poloxamer 188 or Solutol (R) HS15 as co-emulsifier, were produced by hot homogenization and their ability to improve risperidone delivery to the brain was assessed in rats. Pharmacokinetic study demonstrated erratic brain profiles of risperidone following intraperitoneal administration in selected nanoemulsions, most probably due to their different droplet surface properties (different composition of the stabilizing layer). Namely, polysorbate 80-costabilized nanoemulsion showed increased (1.4-7.4-fold higher) risperidone brain availability compared to other nanoemulsions and drug solution, suggesting this nanoemulsion as a promising carrier worth exploring further for brain targeting.",
publisher = "Elsevier Science BV, Amsterdam",
journal = "International Journal of Pharmaceutics",
title = "Parenteral nanoemulsions as promising carriers for brain delivery of risperidone: Design, characterization and in vivo pharmacokinetic evaluation",
volume = "493",
number = "1-2",
pages = "40-54",
doi = "10.1016/j.ijpharm.2015.07.007"
}
Đorđević, S., Cekić, N., Savić, M., Isailović, T., Ranđelović, D., Marković, B., Savić, S. R., Timić-Stamenić, T., Daniels, R.,& Savić, S.. (2015). Parenteral nanoemulsions as promising carriers for brain delivery of risperidone: Design, characterization and in vivo pharmacokinetic evaluation. in International Journal of Pharmaceutics
Elsevier Science BV, Amsterdam., 493(1-2), 40-54.
https://doi.org/10.1016/j.ijpharm.2015.07.007
Đorđević S, Cekić N, Savić M, Isailović T, Ranđelović D, Marković B, Savić SR, Timić-Stamenić T, Daniels R, Savić S. Parenteral nanoemulsions as promising carriers for brain delivery of risperidone: Design, characterization and in vivo pharmacokinetic evaluation. in International Journal of Pharmaceutics. 2015;493(1-2):40-54.
doi:10.1016/j.ijpharm.2015.07.007 .
Đorđević, Sanela, Cekić, Nebojša, Savić, Miroslav, Isailović, Tanja, Ranđelović, Danijela, Marković, Bojan, Savić, Saša R., Timić-Stamenić, Tamara, Daniels, Rolf, Savić, Snežana, "Parenteral nanoemulsions as promising carriers for brain delivery of risperidone: Design, characterization and in vivo pharmacokinetic evaluation" in International Journal of Pharmaceutics, 493, no. 1-2 (2015):40-54,
https://doi.org/10.1016/j.ijpharm.2015.07.007 . .
67
38
66

Chitosan-based Polyelectrolyte Complexes: Characteristics and Application in Formulation of Particulate Drug Carriers

Čalija, Bojan; Cekić, Nebojša; Milić, Jela

(Wiley, 2015)

TY  - CHAP
AU  - Čalija, Bojan
AU  - Cekić, Nebojša
AU  - Milić, Jela
PY  - 2015
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/2480
AB  - Over the past few decades, chitosans have gained great attention in the field of biomedicine. Unique cationic nature, biocompatibility, biodegradability, origin from renewable sources, and diversity make these biopolymers good candidates for micro- and nanoencapsulation of cells, genes, proteins, and structurally different drugs. Under suitable conditions, these polycations can interact with various polyanions, creating assemblies known as polyelectrolyte complexes (PECs) with physicochemical properties that significantly differ from those of the individual polymers. The reversible nature of interaction between comprising polymers and stimuli-responsive nature, particularly the pH sensitivity, makes PECs suitable for drug delivery applications. This chapter summarizes basic principles of polyelectrolyte complexation and discusses the importance of experimental conditions (e.g., pH value and ionic strength of the reaction medium, concentration, and ratio of individual polymers) and the influence of relevant functional properties of chitosans (e.g., molecular weight, degree of deacetylation, and viscosity) on this process. The chapter discusses in detail the overall effect of chitosan-based PECs on morphology, encapsulation efficiency, stability, and drug release properties of anionic-based particulate drug carriers. Finally, a brief overview of various physicochemical and biopharmaceutical techniques that can be applied for characterization of these complexes and related particulate drug carriers is presented.
PB  - Wiley
T2  - Advanced Theranostics Materials
T1  - Chitosan-based Polyelectrolyte Complexes: Characteristics and Application in Formulation of Particulate Drug Carriers
SP  - 235
EP  - 270
DO  - 10.1002/9781118998922.ch9
ER  - 
@inbook{
author = "Čalija, Bojan and Cekić, Nebojša and Milić, Jela",
year = "2015",
abstract = "Over the past few decades, chitosans have gained great attention in the field of biomedicine. Unique cationic nature, biocompatibility, biodegradability, origin from renewable sources, and diversity make these biopolymers good candidates for micro- and nanoencapsulation of cells, genes, proteins, and structurally different drugs. Under suitable conditions, these polycations can interact with various polyanions, creating assemblies known as polyelectrolyte complexes (PECs) with physicochemical properties that significantly differ from those of the individual polymers. The reversible nature of interaction between comprising polymers and stimuli-responsive nature, particularly the pH sensitivity, makes PECs suitable for drug delivery applications. This chapter summarizes basic principles of polyelectrolyte complexation and discusses the importance of experimental conditions (e.g., pH value and ionic strength of the reaction medium, concentration, and ratio of individual polymers) and the influence of relevant functional properties of chitosans (e.g., molecular weight, degree of deacetylation, and viscosity) on this process. The chapter discusses in detail the overall effect of chitosan-based PECs on morphology, encapsulation efficiency, stability, and drug release properties of anionic-based particulate drug carriers. Finally, a brief overview of various physicochemical and biopharmaceutical techniques that can be applied for characterization of these complexes and related particulate drug carriers is presented.",
publisher = "Wiley",
journal = "Advanced Theranostics Materials",
booktitle = "Chitosan-based Polyelectrolyte Complexes: Characteristics and Application in Formulation of Particulate Drug Carriers",
pages = "235-270",
doi = "10.1002/9781118998922.ch9"
}
Čalija, B., Cekić, N.,& Milić, J.. (2015). Chitosan-based Polyelectrolyte Complexes: Characteristics and Application in Formulation of Particulate Drug Carriers. in Advanced Theranostics Materials
Wiley., 235-270.
https://doi.org/10.1002/9781118998922.ch9
Čalija B, Cekić N, Milić J. Chitosan-based Polyelectrolyte Complexes: Characteristics and Application in Formulation of Particulate Drug Carriers. in Advanced Theranostics Materials. 2015;:235-270.
doi:10.1002/9781118998922.ch9 .
Čalija, Bojan, Cekić, Nebojša, Milić, Jela, "Chitosan-based Polyelectrolyte Complexes: Characteristics and Application in Formulation of Particulate Drug Carriers" in Advanced Theranostics Materials (2015):235-270,
https://doi.org/10.1002/9781118998922.ch9 . .
5
5

A full factorial design in the formulation of diazepam parenteral nanoemulsions: Physicochemical characterization and stability evaluation

Cekić, Nebojša; Đorđević, Sanela; Savić, Saša R.; Savić, Snežana

(Univerzitet u Nišu - Tehnološki fakultet, Leskovac, 2015)

TY  - JOUR
AU  - Cekić, Nebojša
AU  - Đorđević, Sanela
AU  - Savić, Saša R.
AU  - Savić, Snežana
PY  - 2015
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/2351
AB  - Using the experimental design methodology, we have developed and characterized nanoemulsions for a parenteral delivery using diazepam as a model drug. The formulations containing 20 or 30% (w/w) of medium chain triglycerides or the mixture of medium chain triglycerides and soybean oil as the oil phase, soybean lecithin and polysorbate 80 as emulsifiers, and a phosphate buffer solution as the aqueous phase were prepared by cold high pressure homogenization. The obtained nanoemulsions were evaluated in terms of droplet size, size distribution, surface charge, drug-vehicle interactions and physical stability. To evaluate the effects of the oil phase type, oil content and drug presence, as well as their interactions on critical quality attributes of nanoemulsions, a three-factor two-level full factorial design was applied. After the preparation, all nanoemulsions revealed small spherical droplets in the range 170-210 nm, with the narrow droplet size distribution ( lt  0.15) and the surface charge about -60 mV. The experimental design results indicated that not only factors alone (oil type, oil content, presence of drug), but their interactions also had a significant effect on the nanoemulsion droplet size, polydispersity index, and zeta potential. During two months of storage at 25°C, all nanoemulsions formulated with the medium chain triglycerides-soybean oil mixture (4:1, w/w) remained physically stable, without considerable changes in monitored parameters. Physicochemical characteristics and stability of these nanoemulsions demonstrated their suitability for parenteral drug delivery.
AB  - Cilj ovog rada bio je da se primenom metodologije eksperimentalnog dizajna razviju parenteralne nanoemulzije sa diazepamom kao model lekovitom supstancom i da se sprovede njihova sveobuhvatna fizičkohemijska karakterizacija. Metodom homogenizacije pod visokim pritiskom na sobnoj temperaturi izrađene su placebo i nanoemulzije sa lekom, stabilizovane smešom lecitina i polisorbata 80, variranjem udela i vrste uljane faze - 20 i 30% (m/m) triglicerida srednje dužine lanca ili smeše triglicerida srednje dužine lanca i sojinog ulja u odnosu 4:1. Dobijene nanoemulzije okarakterisane su u pogledu veličine i raspodele veličina kapi, površinskog naelektrisanja, interakcija lek-nosač i fizičke stabilnosti. U cilju procene istovremenog uticaja vrste uljane faze, udela ulja i prisustva leka, kao i njihovih interakcija, na kritične atribute kvaliteta nanoemulzija, primenjen je pun faktorski dizajn sa tri faktora na dva nivoa. Nakon izrade, sve formulacije nanoemulzija imale su malu veličinu kapi u opsegu 170-210 nm, sa veoma uskom raspodelom veličina (ispod 0,15) i površinskim naelektrisanjem oko -60 mV. Rezultati eksperimentalnog dizajna pokazali su da ne samo pojedinačni faktori (vrsta ulja, koncentracija ulja, prisustvo leka), nego i njihove interakcije, značajno utiču na veličinu kapi, indeks polidisperznosti i zeta potencijal ispitivanih nanoemulzija. Tokom 2 meseca čuvanja na 25°C, sve nanoemulzije formulisane sa smešom triglicerida srednje dužine lanca i sojinog ulja kao uljanom fazom bile su fizički stabilne, bez značajnih promena u praćenim parametrima. Fizičkohemijske karakteristike i stabilnost navedenih nanoemulzija ukazuju da one mogu biti potencijalni nosači za parenteralnu isporuku lekovitih supstanci.
PB  - Univerzitet u Nišu - Tehnološki fakultet, Leskovac
T2  - Advanced Technologies
T1  - A full factorial design in the formulation of diazepam parenteral nanoemulsions: Physicochemical characterization and stability evaluation
T1  - Pun faktorski dizajn u formulaciji parenteralnih nanoemulzija sa diazepamom - fizičkohemijska karakterizacija i procena stabilnosti
VL  - 4
IS  - 1
SP  - 69
EP  - 77
DO  - 10.5937/savteh1501069C
ER  - 
@article{
author = "Cekić, Nebojša and Đorđević, Sanela and Savić, Saša R. and Savić, Snežana",
year = "2015",
abstract = "Using the experimental design methodology, we have developed and characterized nanoemulsions for a parenteral delivery using diazepam as a model drug. The formulations containing 20 or 30% (w/w) of medium chain triglycerides or the mixture of medium chain triglycerides and soybean oil as the oil phase, soybean lecithin and polysorbate 80 as emulsifiers, and a phosphate buffer solution as the aqueous phase were prepared by cold high pressure homogenization. The obtained nanoemulsions were evaluated in terms of droplet size, size distribution, surface charge, drug-vehicle interactions and physical stability. To evaluate the effects of the oil phase type, oil content and drug presence, as well as their interactions on critical quality attributes of nanoemulsions, a three-factor two-level full factorial design was applied. After the preparation, all nanoemulsions revealed small spherical droplets in the range 170-210 nm, with the narrow droplet size distribution ( lt  0.15) and the surface charge about -60 mV. The experimental design results indicated that not only factors alone (oil type, oil content, presence of drug), but their interactions also had a significant effect on the nanoemulsion droplet size, polydispersity index, and zeta potential. During two months of storage at 25°C, all nanoemulsions formulated with the medium chain triglycerides-soybean oil mixture (4:1, w/w) remained physically stable, without considerable changes in monitored parameters. Physicochemical characteristics and stability of these nanoemulsions demonstrated their suitability for parenteral drug delivery., Cilj ovog rada bio je da se primenom metodologije eksperimentalnog dizajna razviju parenteralne nanoemulzije sa diazepamom kao model lekovitom supstancom i da se sprovede njihova sveobuhvatna fizičkohemijska karakterizacija. Metodom homogenizacije pod visokim pritiskom na sobnoj temperaturi izrađene su placebo i nanoemulzije sa lekom, stabilizovane smešom lecitina i polisorbata 80, variranjem udela i vrste uljane faze - 20 i 30% (m/m) triglicerida srednje dužine lanca ili smeše triglicerida srednje dužine lanca i sojinog ulja u odnosu 4:1. Dobijene nanoemulzije okarakterisane su u pogledu veličine i raspodele veličina kapi, površinskog naelektrisanja, interakcija lek-nosač i fizičke stabilnosti. U cilju procene istovremenog uticaja vrste uljane faze, udela ulja i prisustva leka, kao i njihovih interakcija, na kritične atribute kvaliteta nanoemulzija, primenjen je pun faktorski dizajn sa tri faktora na dva nivoa. Nakon izrade, sve formulacije nanoemulzija imale su malu veličinu kapi u opsegu 170-210 nm, sa veoma uskom raspodelom veličina (ispod 0,15) i površinskim naelektrisanjem oko -60 mV. Rezultati eksperimentalnog dizajna pokazali su da ne samo pojedinačni faktori (vrsta ulja, koncentracija ulja, prisustvo leka), nego i njihove interakcije, značajno utiču na veličinu kapi, indeks polidisperznosti i zeta potencijal ispitivanih nanoemulzija. Tokom 2 meseca čuvanja na 25°C, sve nanoemulzije formulisane sa smešom triglicerida srednje dužine lanca i sojinog ulja kao uljanom fazom bile su fizički stabilne, bez značajnih promena u praćenim parametrima. Fizičkohemijske karakteristike i stabilnost navedenih nanoemulzija ukazuju da one mogu biti potencijalni nosači za parenteralnu isporuku lekovitih supstanci.",
publisher = "Univerzitet u Nišu - Tehnološki fakultet, Leskovac",
journal = "Advanced Technologies",
title = "A full factorial design in the formulation of diazepam parenteral nanoemulsions: Physicochemical characterization and stability evaluation, Pun faktorski dizajn u formulaciji parenteralnih nanoemulzija sa diazepamom - fizičkohemijska karakterizacija i procena stabilnosti",
volume = "4",
number = "1",
pages = "69-77",
doi = "10.5937/savteh1501069C"
}
Cekić, N., Đorđević, S., Savić, S. R.,& Savić, S.. (2015). A full factorial design in the formulation of diazepam parenteral nanoemulsions: Physicochemical characterization and stability evaluation. in Advanced Technologies
Univerzitet u Nišu - Tehnološki fakultet, Leskovac., 4(1), 69-77.
https://doi.org/10.5937/savteh1501069C
Cekić N, Đorđević S, Savić SR, Savić S. A full factorial design in the formulation of diazepam parenteral nanoemulsions: Physicochemical characterization and stability evaluation. in Advanced Technologies. 2015;4(1):69-77.
doi:10.5937/savteh1501069C .
Cekić, Nebojša, Đorđević, Sanela, Savić, Saša R., Savić, Snežana, "A full factorial design in the formulation of diazepam parenteral nanoemulsions: Physicochemical characterization and stability evaluation" in Advanced Technologies, 4, no. 1 (2015):69-77,
https://doi.org/10.5937/savteh1501069C . .

Sucrose ester-based biocompatible microemulsions as vehicles for aceclofenac as a model drug: formulation approach using D-optimal mixture design

Todosijević, Marija N.; Cekić, Nebojša; Savić, Miroslav; Gasperlin, Mirjana; Ranđelović, Danijela; Savić, Snežana

(Springer, New York, 2014)

TY  - JOUR
AU  - Todosijević, Marija N.
AU  - Cekić, Nebojša
AU  - Savić, Miroslav
AU  - Gasperlin, Mirjana
AU  - Ranđelović, Danijela
AU  - Savić, Snežana
PY  - 2014
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/2125
AB  - We assessed the functionality of sucrose esters (sucrose laurate, myristate, palmitate, and stearate), relatively innocuous nonionic surfactants, in formulation of biocompatible microemulsions. The putative influence of surfactant structure on the extension of microemulsion region was explored through the construction of the pseudo-ternary phase diagrams for the isopropyl myristate/sucrose ester-isopropyl alcohol/water system, using the titration method and mixture experimental approach. Minor changes in surfactant tail length strongly affected the microemulsion area boundaries. D-optimal mixture design proved to be highly applicable in detecting the microemulsion regions. Examination of conductivity, rheology, and thermal behavior of the selected sucrose laurate and sucrose myristate-based microemulsions, upon dilution with water, indicated existence of percolation threshold and suggested the phase inversion from water-in-oil to oil-in-water via a bicontinuous structure. Atomic force micrographs confirmed the suggested type of microemulsions and were valuable in further exploring their inner structure. The solubilization capacity of aceclofenac as a model drug has decreased as the water volume fraction in microemulsion increased. High surfactant concentration and the measured solubility of aceclofenac in microemulsion components suggested that the interfacial film may mostly contribute to aceclofenac solubilization.
PB  - Springer, New York
T2  - Colloid and Polymer Science
T1  - Sucrose ester-based biocompatible microemulsions as vehicles for aceclofenac as a model drug: formulation approach using D-optimal mixture design
VL  - 292
IS  - 12
SP  - 3061
EP  - 3076
DO  - 10.1007/s00396-014-3351-4
ER  - 
@article{
author = "Todosijević, Marija N. and Cekić, Nebojša and Savić, Miroslav and Gasperlin, Mirjana and Ranđelović, Danijela and Savić, Snežana",
year = "2014",
abstract = "We assessed the functionality of sucrose esters (sucrose laurate, myristate, palmitate, and stearate), relatively innocuous nonionic surfactants, in formulation of biocompatible microemulsions. The putative influence of surfactant structure on the extension of microemulsion region was explored through the construction of the pseudo-ternary phase diagrams for the isopropyl myristate/sucrose ester-isopropyl alcohol/water system, using the titration method and mixture experimental approach. Minor changes in surfactant tail length strongly affected the microemulsion area boundaries. D-optimal mixture design proved to be highly applicable in detecting the microemulsion regions. Examination of conductivity, rheology, and thermal behavior of the selected sucrose laurate and sucrose myristate-based microemulsions, upon dilution with water, indicated existence of percolation threshold and suggested the phase inversion from water-in-oil to oil-in-water via a bicontinuous structure. Atomic force micrographs confirmed the suggested type of microemulsions and were valuable in further exploring their inner structure. The solubilization capacity of aceclofenac as a model drug has decreased as the water volume fraction in microemulsion increased. High surfactant concentration and the measured solubility of aceclofenac in microemulsion components suggested that the interfacial film may mostly contribute to aceclofenac solubilization.",
publisher = "Springer, New York",
journal = "Colloid and Polymer Science",
title = "Sucrose ester-based biocompatible microemulsions as vehicles for aceclofenac as a model drug: formulation approach using D-optimal mixture design",
volume = "292",
number = "12",
pages = "3061-3076",
doi = "10.1007/s00396-014-3351-4"
}
Todosijević, M. N., Cekić, N., Savić, M., Gasperlin, M., Ranđelović, D.,& Savić, S.. (2014). Sucrose ester-based biocompatible microemulsions as vehicles for aceclofenac as a model drug: formulation approach using D-optimal mixture design. in Colloid and Polymer Science
Springer, New York., 292(12), 3061-3076.
https://doi.org/10.1007/s00396-014-3351-4
Todosijević MN, Cekić N, Savić M, Gasperlin M, Ranđelović D, Savić S. Sucrose ester-based biocompatible microemulsions as vehicles for aceclofenac as a model drug: formulation approach using D-optimal mixture design. in Colloid and Polymer Science. 2014;292(12):3061-3076.
doi:10.1007/s00396-014-3351-4 .
Todosijević, Marija N., Cekić, Nebojša, Savić, Miroslav, Gasperlin, Mirjana, Ranđelović, Danijela, Savić, Snežana, "Sucrose ester-based biocompatible microemulsions as vehicles for aceclofenac as a model drug: formulation approach using D-optimal mixture design" in Colloid and Polymer Science, 292, no. 12 (2014):3061-3076,
https://doi.org/10.1007/s00396-014-3351-4 . .
22
17
19

A new class of emulsion systems - Fast inverted o/w emulsions: Formulation approach, physical stability and colloidal structure

Korać, Radava; Krajišnik, Danina; Savić, Snežana; Pantelić, Ivana; Jovancić, Petar; Cekić, Nebojša; Milić, Jela

(Elsevier Science BV, Amsterdam, 2014)

TY  - JOUR
AU  - Korać, Radava
AU  - Krajišnik, Danina
AU  - Savić, Snežana
AU  - Pantelić, Ivana
AU  - Jovancić, Petar
AU  - Cekić, Nebojša
AU  - Milić, Jela
PY  - 2014
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/2084
AB  - The fast inverted oil-in-water (o/w) emulsions named SWOP (SWitch Oil Phase) emulsions have been investigated with particular reference to physicochemical characteristics. Emulsions (oil-in-water (o/w) and water-in-oil (w/o)) are widely used in cosmetic and pharmaceutical formulations. Fast inverted o/w emulsions have been introduced as an alternative. The combination of appropriate w/o emulsifiers, anionic surfactants and polymeric stabilizers is essential for the formation of these emulsions. Samples of investigated, fast inverted o/w emulsion were prepared by hot-hot emulsification procedure using the combination of a w/o polymeric emulsifier (polyglyceryl-2 dipolyhydroxystearate) with a mild surfactant (sodium lauryl glucoside carboxylate (and) lauryl glucoside) in ratio 4:1.5 with addition of a stabilizing polymer (sodium polyacrylate). In the same manner, reference o/w and w/o emulsions were prepared. Investigated and reference emulsions were compared according to their physicochemical characteristics, structural characteristics, and their stability under the foreseen storage conditions and under the stress conditions employing the centrifugation test, pH, conductivity, rheological and contact angle measurements, microscopic observation, differential scanning calorimetry and thermogravimetric analysis. The samples of investigated and reference o/w emulsions were stable during three months storage at room temperature, while the samples of reference w/o emulsion showed phase separation. Only the samples of investigated emulsion remained stable in centrifugation test taken after the six freeze-thaw cycles. Oscillatory rheology indicated that the elastic modulus was dominant for both the investigated and the reference o/w emulsions due to the presence of gel structures, but the values of maximal apparent viscosity of the investigated emulsion which increased due to the temperature changes and the higher yield stress values that were obtained for the reference o/w emulsion indicated that the reference o/w emulsion had a stronger gel structure. Analysis of all the emulsions using polarization microscopy showed that the reference o/w emulsion had a more regular and a more rigid structure than the investigated emulsion. Obtained DSC and TGA results indicated that the SWOP emulsion showed a much faster evaporation of the water than the reference o/w emulsion which is in fine agreement with results from the contact angle measurements, i.e., the inversion point for the SWOP emulsion was attained in less than 15 min in comparison with the reference o/w emulsion. Generally, the fast inverted, SWOP emulsion showed better characteristics in comparison with the reference o/w and w/o emulsions making it suitable for the wide range of applications.
PB  - Elsevier Science BV, Amsterdam
T2  - Colloids and Surfaces A: Physicochemical and Engineering Aspects
T1  - A new class of emulsion systems - Fast inverted o/w emulsions: Formulation approach, physical stability and colloidal structure
VL  - 461
SP  - 267
EP  - 278
DO  - 10.1016/j.colsurfa.2014.08.005
ER  - 
@article{
author = "Korać, Radava and Krajišnik, Danina and Savić, Snežana and Pantelić, Ivana and Jovancić, Petar and Cekić, Nebojša and Milić, Jela",
year = "2014",
abstract = "The fast inverted oil-in-water (o/w) emulsions named SWOP (SWitch Oil Phase) emulsions have been investigated with particular reference to physicochemical characteristics. Emulsions (oil-in-water (o/w) and water-in-oil (w/o)) are widely used in cosmetic and pharmaceutical formulations. Fast inverted o/w emulsions have been introduced as an alternative. The combination of appropriate w/o emulsifiers, anionic surfactants and polymeric stabilizers is essential for the formation of these emulsions. Samples of investigated, fast inverted o/w emulsion were prepared by hot-hot emulsification procedure using the combination of a w/o polymeric emulsifier (polyglyceryl-2 dipolyhydroxystearate) with a mild surfactant (sodium lauryl glucoside carboxylate (and) lauryl glucoside) in ratio 4:1.5 with addition of a stabilizing polymer (sodium polyacrylate). In the same manner, reference o/w and w/o emulsions were prepared. Investigated and reference emulsions were compared according to their physicochemical characteristics, structural characteristics, and their stability under the foreseen storage conditions and under the stress conditions employing the centrifugation test, pH, conductivity, rheological and contact angle measurements, microscopic observation, differential scanning calorimetry and thermogravimetric analysis. The samples of investigated and reference o/w emulsions were stable during three months storage at room temperature, while the samples of reference w/o emulsion showed phase separation. Only the samples of investigated emulsion remained stable in centrifugation test taken after the six freeze-thaw cycles. Oscillatory rheology indicated that the elastic modulus was dominant for both the investigated and the reference o/w emulsions due to the presence of gel structures, but the values of maximal apparent viscosity of the investigated emulsion which increased due to the temperature changes and the higher yield stress values that were obtained for the reference o/w emulsion indicated that the reference o/w emulsion had a stronger gel structure. Analysis of all the emulsions using polarization microscopy showed that the reference o/w emulsion had a more regular and a more rigid structure than the investigated emulsion. Obtained DSC and TGA results indicated that the SWOP emulsion showed a much faster evaporation of the water than the reference o/w emulsion which is in fine agreement with results from the contact angle measurements, i.e., the inversion point for the SWOP emulsion was attained in less than 15 min in comparison with the reference o/w emulsion. Generally, the fast inverted, SWOP emulsion showed better characteristics in comparison with the reference o/w and w/o emulsions making it suitable for the wide range of applications.",
publisher = "Elsevier Science BV, Amsterdam",
journal = "Colloids and Surfaces A: Physicochemical and Engineering Aspects",
title = "A new class of emulsion systems - Fast inverted o/w emulsions: Formulation approach, physical stability and colloidal structure",
volume = "461",
pages = "267-278",
doi = "10.1016/j.colsurfa.2014.08.005"
}
Korać, R., Krajišnik, D., Savić, S., Pantelić, I., Jovancić, P., Cekić, N.,& Milić, J.. (2014). A new class of emulsion systems - Fast inverted o/w emulsions: Formulation approach, physical stability and colloidal structure. in Colloids and Surfaces A: Physicochemical and Engineering Aspects
Elsevier Science BV, Amsterdam., 461, 267-278.
https://doi.org/10.1016/j.colsurfa.2014.08.005
Korać R, Krajišnik D, Savić S, Pantelić I, Jovancić P, Cekić N, Milić J. A new class of emulsion systems - Fast inverted o/w emulsions: Formulation approach, physical stability and colloidal structure. in Colloids and Surfaces A: Physicochemical and Engineering Aspects. 2014;461:267-278.
doi:10.1016/j.colsurfa.2014.08.005 .
Korać, Radava, Krajišnik, Danina, Savić, Snežana, Pantelić, Ivana, Jovancić, Petar, Cekić, Nebojša, Milić, Jela, "A new class of emulsion systems - Fast inverted o/w emulsions: Formulation approach, physical stability and colloidal structure" in Colloids and Surfaces A: Physicochemical and Engineering Aspects, 461 (2014):267-278,
https://doi.org/10.1016/j.colsurfa.2014.08.005 . .
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Nanoemulsions produced by varying the type of emulsifier and oil content: Effect of formulation and process parameters on the characteristics and physical stability

Đorđević, Sanela; Cekić, Nebojša; Isailović, Tanja; Milić, Jela; Vuleta, Gordana; Lazić, Miodrag; Savić, Snežana

(Savez hemijskih inženjera, Beograd, 2013)

TY  - JOUR
AU  - Đorđević, Sanela
AU  - Cekić, Nebojša
AU  - Isailović, Tanja
AU  - Milić, Jela
AU  - Vuleta, Gordana
AU  - Lazić, Miodrag
AU  - Savić, Snežana
PY  - 2013
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/2064
AB  - The aim of the present study was to prepare oil-in-water nanoemulsions stabilized with a novel natural alkyl polyglucoside surfactant and to compare them with corresponding lecithin/polysorbate 80-based nanoemulsions in terms of physicochemical properties and physical stability. Nanoemulsions were prepared by high pressure homogenization, using 20, 30 and 40 mass% medium chain triglyceride as oil phase, and 4, 6 and 8 mass% lecithin/polysorbate 80 mixture (1/1) or caprylyl/capryl glucoside as emulsifiers. The effects of emulsifier type, emulsifier concentration and oil content were investigated with respect to changes in particle size, particle size distribution, surface charge and physical stability. The influence of production parameters (number of homogenization cycles, type of homogenization process, homogenization pressure) on particle size was also investigated. Analysis was performed by photon correlation spectroscopy, laser diffraction, zeta potential, pH and electrical conductivity measurements. All the produced formulations revealed a small droplet size ranging from 147 to 228 nm and a very narrow size distribution (polydispersity index range 0.072-0.124). Zeta potentials were found to be about -20 and -50 mV for nanoemulsions stabilized with lecithin/polysorbate 80 and caprylyl/capryl glucoside, respectively. The results obtained from the stability studies (6 months at 25 °C and 1 month at 40 °C) indicated that nanoemulsion stability was influenced by their composition. The results also suggested the most appropriate production parameters: 9 homogenization cycles, homogenization pressure of 500 bar and discontinuous process of homogenization.
AB  - Cilj ovog istraživanja bio je da se homogenizacijom pod visokim pritiskom izrade nanoemulzije stabilizovane alkil poliglukozidnim (APG) emulgatorom i da se njihove karakteristike i fizička stabilnost uporede sa nanoemulzijama stabilizovanim standardnom kombinacijom lecitina (L) i polisorbata 80 (P80). U istraživanju je praćen uticaj parametara formulacije, i to vrste i koncentracije emulgatora (smeša L/P80 vs. APG, u koncentraciji od 4, 6 i 8%) i koncentracije uljane faze (20, 30 i 40% trigliceridi srednje dužine lanca) na veličinu i raspodelu veličina kapi, zeta potencijal (ζ) i fizičku stabilnost nanoemulzija. Takođe je praćen uticaj procesnih parametara (postupak, pritisak i broj ciklusa homogenizacije) na veličinu kapi i indeks polidisperznosti (PdI), u cilju identifikovanja optimalnih uslova za izradu nanoemulzija. Dobijeni rezultati pokazuju da postoji uticaj sastava formulacije na karakteristike (L/P80 nanoemulzije: veličina kapi 147-156 nm, ζ oko -20 mV; APG nanoemulzije: veličina kapi 165-228 nm, ζ oko -50 mV) i fizičku stabilnost ispitivanih nanoemulzija, i da se diskontinualnim postupkom homogenizacije (9 ciklusa, 500 bar) mogu dobiti nanoemulzije optimalnih svojstava (veličina kapi, PdI).
PB  - Savez hemijskih inženjera, Beograd
T2  - Hemijska industrija
T1  - Nanoemulsions produced by varying the type of emulsifier and oil content: Effect of formulation and process parameters on the characteristics and physical stability
T1  - Nanoemulzije dobijene variranjem tipa emulgatora i udela masne faze - uticaj formulacije i procesnih parametara na karakteristike i fizičku stabilnost
VL  - 67
IS  - 5
SP  - 795
EP  - 809
DO  - 10.2298/HEMIND120905005D
ER  - 
@article{
author = "Đorđević, Sanela and Cekić, Nebojša and Isailović, Tanja and Milić, Jela and Vuleta, Gordana and Lazić, Miodrag and Savić, Snežana",
year = "2013",
abstract = "The aim of the present study was to prepare oil-in-water nanoemulsions stabilized with a novel natural alkyl polyglucoside surfactant and to compare them with corresponding lecithin/polysorbate 80-based nanoemulsions in terms of physicochemical properties and physical stability. Nanoemulsions were prepared by high pressure homogenization, using 20, 30 and 40 mass% medium chain triglyceride as oil phase, and 4, 6 and 8 mass% lecithin/polysorbate 80 mixture (1/1) or caprylyl/capryl glucoside as emulsifiers. The effects of emulsifier type, emulsifier concentration and oil content were investigated with respect to changes in particle size, particle size distribution, surface charge and physical stability. The influence of production parameters (number of homogenization cycles, type of homogenization process, homogenization pressure) on particle size was also investigated. Analysis was performed by photon correlation spectroscopy, laser diffraction, zeta potential, pH and electrical conductivity measurements. All the produced formulations revealed a small droplet size ranging from 147 to 228 nm and a very narrow size distribution (polydispersity index range 0.072-0.124). Zeta potentials were found to be about -20 and -50 mV for nanoemulsions stabilized with lecithin/polysorbate 80 and caprylyl/capryl glucoside, respectively. The results obtained from the stability studies (6 months at 25 °C and 1 month at 40 °C) indicated that nanoemulsion stability was influenced by their composition. The results also suggested the most appropriate production parameters: 9 homogenization cycles, homogenization pressure of 500 bar and discontinuous process of homogenization., Cilj ovog istraživanja bio je da se homogenizacijom pod visokim pritiskom izrade nanoemulzije stabilizovane alkil poliglukozidnim (APG) emulgatorom i da se njihove karakteristike i fizička stabilnost uporede sa nanoemulzijama stabilizovanim standardnom kombinacijom lecitina (L) i polisorbata 80 (P80). U istraživanju je praćen uticaj parametara formulacije, i to vrste i koncentracije emulgatora (smeša L/P80 vs. APG, u koncentraciji od 4, 6 i 8%) i koncentracije uljane faze (20, 30 i 40% trigliceridi srednje dužine lanca) na veličinu i raspodelu veličina kapi, zeta potencijal (ζ) i fizičku stabilnost nanoemulzija. Takođe je praćen uticaj procesnih parametara (postupak, pritisak i broj ciklusa homogenizacije) na veličinu kapi i indeks polidisperznosti (PdI), u cilju identifikovanja optimalnih uslova za izradu nanoemulzija. Dobijeni rezultati pokazuju da postoji uticaj sastava formulacije na karakteristike (L/P80 nanoemulzije: veličina kapi 147-156 nm, ζ oko -20 mV; APG nanoemulzije: veličina kapi 165-228 nm, ζ oko -50 mV) i fizičku stabilnost ispitivanih nanoemulzija, i da se diskontinualnim postupkom homogenizacije (9 ciklusa, 500 bar) mogu dobiti nanoemulzije optimalnih svojstava (veličina kapi, PdI).",
publisher = "Savez hemijskih inženjera, Beograd",
journal = "Hemijska industrija",
title = "Nanoemulsions produced by varying the type of emulsifier and oil content: Effect of formulation and process parameters on the characteristics and physical stability, Nanoemulzije dobijene variranjem tipa emulgatora i udela masne faze - uticaj formulacije i procesnih parametara na karakteristike i fizičku stabilnost",
volume = "67",
number = "5",
pages = "795-809",
doi = "10.2298/HEMIND120905005D"
}
Đorđević, S., Cekić, N., Isailović, T., Milić, J., Vuleta, G., Lazić, M.,& Savić, S.. (2013). Nanoemulsions produced by varying the type of emulsifier and oil content: Effect of formulation and process parameters on the characteristics and physical stability. in Hemijska industrija
Savez hemijskih inženjera, Beograd., 67(5), 795-809.
https://doi.org/10.2298/HEMIND120905005D
Đorđević S, Cekić N, Isailović T, Milić J, Vuleta G, Lazić M, Savić S. Nanoemulsions produced by varying the type of emulsifier and oil content: Effect of formulation and process parameters on the characteristics and physical stability. in Hemijska industrija. 2013;67(5):795-809.
doi:10.2298/HEMIND120905005D .
Đorđević, Sanela, Cekić, Nebojša, Isailović, Tanja, Milić, Jela, Vuleta, Gordana, Lazić, Miodrag, Savić, Snežana, "Nanoemulsions produced by varying the type of emulsifier and oil content: Effect of formulation and process parameters on the characteristics and physical stability" in Hemijska industrija, 67, no. 5 (2013):795-809,
https://doi.org/10.2298/HEMIND120905005D . .
1
1
2

pH-sensitive microparticles for oral drug delivery based on alginate/oligochitosan/Eudragit (R) L100-55 "sandwich" polyelectrolyte complex

Čalija, Bojan; Cekić, Nebojša; Savić, Snežana; Daniels, Rolf; Marković, Bojan; Milić, Jela

(Elsevier Science BV, Amsterdam, 2013)

TY  - JOUR
AU  - Čalija, Bojan
AU  - Cekić, Nebojša
AU  - Savić, Snežana
AU  - Daniels, Rolf
AU  - Marković, Bojan
AU  - Milić, Jela
PY  - 2013
UR  - https://farfar.pharmacy.bg.ac.rs/handle/123456789/1969
AB  - The primary objective of this study was to investigate the influence of the oligochitosan-Eudragit (R) L100-55 polyelectrolyte complex (OCH-EL PEC) on the pH-sensitivity of Eudragit (R) L100-55-treated alginate-oligochitosan microparticles. In order to achieve this, three types of naproxen-loaded microparticles were prepared under mild and environmentally friendly conditions using a custom made device with coaxial air flow: Ca-alginate (Ca-ALG), alginate-oligochitosan (ALG-OCH) and alginate-oligochitosan-Eudragit (R) L100-55 (ALG-OCH-EL) microparticles. After drying, the microparticles were subjected to microscopic analysis, and physicochemical and biopharmaceutical characterization. The non-covalent interaction between OCH and EL and the formation of OCH-EL PEC during the preparation procedure of the particles were verified by thermal and FT-IR analysis. The obtained particles exhibited acceptable sphericity and surface roughness due to the presence of the drug crystals (Ca-ALG particles) and OCH-EL PEC (ALG-OCH-EL particles). It was found that reinforcement of the ALG-OCH particles with OCH-EL PEC had no significant effect on the relatively high encapsulation efficiencies (>74.4%). The results of drug release studies confirmed the ability of ALG-OCH PEC to sustain drug release at pH 6.8 and 7.4. However, this PEC showed enhanced sensitivity to an acidic environment and to simulated intestinal fluid (pH 6.8) after prior exposure to an acidic medium. Additional treatment of ALG-OCH particles with EL and formation of "sandwich" ALG-OCH-EL PEC was essential not only to improve stability and decrease drug release in acidic medium, but also to achieve sustained release after the pH of dissolution medium was raised to 6.8. The obtained results suggested that ALG-OCH-EL microparticles have promising potential as pH-sensitive multiparticulate drug carriers for oral delivery of NSAIDs.
PB  - Elsevier Science BV, Amsterdam
T2  - Colloids and Surfaces B: Biointerfaces
T1  - pH-sensitive microparticles for oral drug delivery based on alginate/oligochitosan/Eudragit (R) L100-55 "sandwich" polyelectrolyte complex
VL  - 110
SP  - 395
EP  - 402
DO  - 10.1016/j.colsurfb.2013.05.016
ER  - 
@article{
author = "Čalija, Bojan and Cekić, Nebojša and Savić, Snežana and Daniels, Rolf and Marković, Bojan and Milić, Jela",
year = "2013",
abstract = "The primary objective of this study was to investigate the influence of the oligochitosan-Eudragit (R) L100-55 polyelectrolyte complex (OCH-EL PEC) on the pH-sensitivity of Eudragit (R) L100-55-treated alginate-oligochitosan microparticles. In order to achieve this, three types of naproxen-loaded microparticles were prepared under mild and environmentally friendly conditions using a custom made device with coaxial air flow: Ca-alginate (Ca-ALG), alginate-oligochitosan (ALG-OCH) and alginate-oligochitosan-Eudragit (R) L100-55 (ALG-OCH-EL) microparticles. After drying, the microparticles were subjected to microscopic analysis, and physicochemical and biopharmaceutical characterization. The non-covalent interaction between OCH and EL and the formation of OCH-EL PEC during the preparation procedure of the particles were verified by thermal and FT-IR analysis. The obtained particles exhibited acceptable sphericity and surface roughness due to the presence of the drug crystals (Ca-ALG particles) and OCH-EL PEC (ALG-OCH-EL particles). It was found that reinforcement of the ALG-OCH particles with OCH-EL PEC had no significant effect on the relatively high encapsulation efficiencies (>74.4%). The results of drug release studies confirmed the ability of ALG-OCH PEC to sustain drug release at pH 6.8 and 7.4. However, this PEC showed enhanced sensitivity to an acidic environment and to simulated intestinal fluid (pH 6.8) after prior exposure to an acidic medium. Additional treatment of ALG-OCH particles with EL and formation of "sandwich" ALG-OCH-EL PEC was essential not only to improve stability and decrease drug release in acidic medium, but also to achieve sustained release after the pH of dissolution medium was raised to 6.8. The obtained results suggested that ALG-OCH-EL microparticles have promising potential as pH-sensitive multiparticulate drug carriers for oral delivery of NSAIDs.",
publisher = "Elsevier Science BV, Amsterdam",
journal = "Colloids and Surfaces B: Biointerfaces",
title = "pH-sensitive microparticles for oral drug delivery based on alginate/oligochitosan/Eudragit (R) L100-55 "sandwich" polyelectrolyte complex",
volume = "110",
pages = "395-402",
doi = "10.1016/j.colsurfb.2013.05.016"
}
Čalija, B., Cekić, N., Savić, S., Daniels, R., Marković, B.,& Milić, J.. (2013). pH-sensitive microparticles for oral drug delivery based on alginate/oligochitosan/Eudragit (R) L100-55 "sandwich" polyelectrolyte complex. in Colloids and Surfaces B: Biointerfaces
Elsevier Science BV, Amsterdam., 110, 395-402.
https://doi.org/10.1016/j.colsurfb.2013.05.016
Čalija B, Cekić N, Savić S, Daniels R, Marković B, Milić J. pH-sensitive microparticles for oral drug delivery based on alginate/oligochitosan/Eudragit (R) L100-55 "sandwich" polyelectrolyte complex. in Colloids and Surfaces B: Biointerfaces. 2013;110:395-402.
doi:10.1016/j.colsurfb.2013.05.016 .
Čalija, Bojan, Cekić, Nebojša, Savić, Snežana, Daniels, Rolf, Marković, Bojan, Milić, Jela, "pH-sensitive microparticles for oral drug delivery based on alginate/oligochitosan/Eudragit (R) L100-55 "sandwich" polyelectrolyte complex" in Colloids and Surfaces B: Biointerfaces, 110 (2013):395-402,
https://doi.org/10.1016/j.colsurfb.2013.05.016 . .
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