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dc.creatorKrstić, Marko
dc.creatorIbrić, Svetlana
dc.date.accessioned2019-09-02T11:52:47Z
dc.date.available2019-09-02T11:52:47Z
dc.date.issued2016
dc.identifier.issn0367-598X
dc.identifier.urihttps://farfar.pharmacy.bg.ac.rs/handle/123456789/2618
dc.description.abstractOne of the problems with orally used drugs is their poor solubility, which can be overcome by creating solid self-nanoemulsifying drug delivery systems (SNEDDS). The aim is to choose the appropriate SNEDDS using mixture design and adsorption of SNEDDS on a solid carrier to improve the dissolution rate of carbamazepine. Self-emulsifying drug delivery systems (SEDDS) consisting of oil phase (caprilic-capric triglycerides), a surfactant (Polisorbat 80 and Labrasol (R) (1: 1)) and cosurfactant (Transcutol (R) HP) are formed by applying mixture design. 16 formulations were formulated, where the proportion of lipids, surfactant and cosurfactant were varied (input parameters) in the following ranges: 10-30%, 40-60%, 30-50%, respectively. After dilution of SEDDS with water (90% water), the droplet size and polydispersity index (PdI) of the obtained emulsions (output parameters) were measured using photon correlation spectroscopy. After processing data, appropriate mathematical models that describe the dependence of input and output parameters were selected. The optimized SNEDDS was adsorbed on the carbamazepine and solid carrier physical mixture, containing 20% carbamazepine. Neusilin (R) UFl2, Neusilin (R) FL2, Sylysia (R) 320 and diatomite were used as the carriers. The ratio of SNEDDS: carrier was 1: 1 or 2: 1. Dissolution testing was carried out in the rotation paddles apparatus. Characterization of solid SNEDDS was performed using the hot stage microscopy (HSM), thermogravimetric analysis (TGA), differential scanning calorimetry (DSC), infrared spectrophotometry with Fourier transformation (FT-IR), scanning electron microscopy (SEM) and X-ray diffraction (PXRD). Selected SNEDDS consisting of lipids (21.12%), surfactant (42.24%) and cosurfactant (36.64%) had a droplet size 157.02 +/- 34.09 nm and PdI 0.184 +/- 0.021. Drug release profiles showed that in all formulations dissolution rate increased (the fastest drug release was observed in formulations with Sylysia (R) 320). It can be concluded that in all formulations carbamazepine is present in the thermodynamically most stable polymorphic form III. Formulation of solid SNEDDS can significantly increase dissolution rate of carbamazepine, with conservation of the polymorphic form III CBZ and potentially increased bioavailability.en
dc.publisherSavez hemijskih inženjera, Beograd
dc.relationinfo:eu-repo/grantAgreement/MESTD/Technological Development (TD or TR)/34007/RS//
dc.rightsopenAccess
dc.rights.urihttps://creativecommons.org/licenses/by-nc-nd/4.0/
dc.sourceHemijska industrija
dc.titleApplication of mixture experimental design in formulation and characterization of solid selfnanoemulsifying drug delivery systems containing carbamazepine [Primena dizajna smeše u formulaciji i karakterizaciji čvrstih samo-nanoemulgujućih terapijskih sisten
dc.typearticle
dc.rights.licenseBY-NC-ND
dcterms.abstractКрстић, Марко; Ибрић, Светлана;
dc.citation.volume70
dc.citation.issue5
dc.citation.spage525
dc.citation.epage537
dc.citation.other70(5): 525-537
dc.citation.rankM23
dc.identifier.wos000388029800005
dc.identifier.doi10.2298/HEMIND150623059K
dc.identifier.scopus2-s2.0-84995387463
dc.identifier.fulltexthttps://farfar.pharmacy.bg.ac.rs//bitstream/id/1295/2616.pdf
dc.type.versionpublishedVersion


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