a Department of Pharmacy, Faculty of Pharmacy , Al-Zaytoonah University of Jordan , Amman , Jordan.
Pharm Dev Technol. 2018 Dec;23(10):1168-1176. doi: 10.1080/10837450.2018.1536996.
The objective of this study was to investigate the effect of the physiological parameters (pH, buffer capacity, and ionic strength) of the gastrointestinal (GI) fluid on the dissolution behavior of the class II weakly acidic (BCS class IIa) drug valsartan. A series of dissolution studies was carried out on Diovan immediate release tablets using media that cover the physiological range of pH (1.2-7.8), buffer capacity (0-0.047 M/ΔpH), and ionic strength (0-0.4 mol/L) of the GI fluid during fasted and fed states using the conventional USP II apparatus. Valsartan exhibited pH- and buffer capacity-dependent dissolution behavior, where valsartan release was slow and incomplete in media simulating gastric fluid with low pH, and fast and complete in media simulating intestinal fluid with high pH. In addition, the rate of valsartan release increased with increasing the buffer capacity of the dissolution medium. In water and NaCl solutions, valsartan release was incomplete and the dissolution profiles were similar regardless of the ionic strength of the medium, indicating an ionic strength-independent dissolution behavior. These results highlight the significant effect of the physiological parameters of the GI fluid on the dissolution behavior of BCS class IIa drugs.
本研究旨在探讨胃肠道(GI)液的生理参数(pH 值、缓冲能力和离子强度)对 II 类弱酸性(BCS 类 IIa)药物缬沙坦溶解行为的影响。使用涵盖 GI 液在空腹和进食状态下的生理 pH 值(1.2-7.8)、缓冲能力(0-0.047M/ΔpH)和离子强度(0-0.4mol/L)范围的介质,对 Diovan 即释片进行了一系列溶解研究,使用常规 USP II 仪器。缬沙坦表现出 pH 值和缓冲能力依赖性的溶解行为,其中在模拟低 pH 值胃液的介质中,缬沙坦的释放缓慢且不完全,而在模拟高 pH 值肠液的介质中,释放快速且完全。此外,随着溶解介质缓冲能力的增加,缬沙坦的释放速率增加。在水和 NaCl 溶液中,缬沙坦的释放不完全,并且无论介质的离子强度如何,溶解曲线相似,表明其具有离子强度非依赖性的溶解行为。这些结果强调了 GI 液的生理参数对 BCS 类 IIa 药物溶解行为的显著影响。