辛伐他汀喷雾干燥三元固体分散体的物理化学性质。加工性、压片性和溶解性。

Hanan Abdalmaula, A. Paradkar, K. Paluch
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引用次数: 0

摘要

辛伐他汀(SMV)是一种难溶性药物,属于生物药品分类系统第二类。提高药物表观溶解度的常用方法是采用喷雾干燥或热熔挤压法制备非晶固体分散体。低玻璃化转变温度(Tg) ASD的喷雾干燥是具有挑战性的,因为材料暴露在接近其Tg的SD出口温度下,可能导致ASD熔化和随后的非晶态药物结晶。假设在ASD中加入易结晶材料可以提高其SD加工性能。此外,假设制备由药物与聚合物(PVP K17、55和150)的非晶态复合材料和结晶性可溶纳米颗粒(NaCl)组成的三元固体分散体(TSD)将改善TSD片的溶出度。以PVP K55和PVP 150为原料制备的SMV- tsds中SMV的溶解速度比二元固体分散更快。抗压性评价表明,SDs片的抗拉强度增加,孔隙率降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physicochemical characterisation of spray dried ternary solid dispersions of simvastatin. Processability, tableting and dissolution.
Simvastatin(SMV) is poorly soluble drug classified as belonging to Class II of BiopharmaceuticsClassification System. Common approach to improve apparent solubility of drugsis production of amorphous solid dispersions (ASD) by means of spray drying(SD) or hot-melt extrusion. Spray drying of low-glass transition temperature(Tg) ASDs is challenging due to the risk of material being exposed to SD outlettemperatures close to its Tg which may result in melting of ASD and subsequentcrystallisation of amorphous drug. It was hypothesised that addition ofeasily-crystallising material to ASD will improve its SD processability. Inaddition, it was hypothesised that produced ternary solid dispersions (TSD)composed of amorphous composite of drug and the polymer (PVP K17, 55 and 150) andcrystalline, soluble nanoparticles (NaCl) will improve dissolution of TSDtablets.  The dissolution of SMV fromTSDs was faster compared with that of binary solid dispersion in case of SMV-TSDsproduced with PVP K55 and 150. The tabletabilityassessment showed increase in compression led to increase in tensile strengthand decrease in porosities of SDs tablets.
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