Formulation and optimization of spray-dried amlodipine solid dispersion for enhanced oral absorption

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초록

Objective: To enhance the oral absorption of photosensitive amlodipine free base, which exhibits a slow dissolution rate and low permeability characteristics, an amorphous solid dispersion system was formulated and characterized. Material and methods: The solid dispersion was prepared by dispersing the amlodipine free base in excess dextrin (1:10 by weight) using a spray-drying technique in the presence of a minimum amount (0.9% w/w) of SLS as an absorption enhancer. The dextrin-based solid dispersion of amlodipine (Amlo-SD) was evaluated in term of formulation, characterization and in vivo absorption study, as well as the spray-drying process was also optimized. Results and discussion: The Amlo-SD particles were spherical with a smooth surface and an average particle size of 12.9 mu m. Amlodipine was dispersed in an amorphous state and its content remained uniform in the Amlo-SD. The physicochemical stability of the Amlo-SD was maintained at room temperature for 6 months and the photostability was considerably improved. The dissolution of the Amlo-SD was much faster than that of amlodipine at pH 1.2 and 6.8. Amlo-SD produced significantly higher plasma concentrations of amlodipine in rats than amlodipine alone. Amlo-SD with and without SLS provided 2.8- and 2.0-fold increase in AUC, respectively: the difference seems to be attributed to a permeability enhancement effect by SLS. Conclusion: The Amlo-SD with SLS system is a potential formulation option for amlodipine.

키워드

Amlodipinedextrindissolution rateoral absorptionpermeabilitysolid dispersionWATER-SOLUBLE DRUGT-G DRUGIN-VITROBIOAVAILABILITYDISSOLUTIONSYSTEMSPHOTOSTABILITYBIOEQUIVALENCEDESIGNFORMS
제목
Formulation and optimization of spray-dried amlodipine solid dispersion for enhanced oral absorption
저자
Jang, Dong-JinSim, TaeyongOh, Euichaul
DOI
10.3109/03639045.2012.723218
발행일
2013-07
유형
Article
저널명
Drug Development and Industrial Pharmacy
39
7
페이지
1133 ~ 1141