Li Feng-qian, Hu Jin-hong
Department of Pharmaceutical Sciences, Changhai Hospital, Second Military Medical University, Shanghai 200433, China.
Yao Xue Xue Bao. 2004 May;39(5):389-91.
To elucidate the mechanism and to present suitable models for the release of sodium ferulate (SF) from hydroxypropyl methylcellulose (HPMC) based matrix tablets.
The characteristics and mechanisms of drug release were analyzed from the point of thermodynamic, swelling and diffusion effect. Despite the classical equation of Higuchi, the semi-empirical power law and quadratic curve were also adopted to analogize the release of SF from HPMC based tablets in vitro.
The first release stage of SF was mainly controlled by Fick diffusion, and the rest SF released mainly according to case II transport process caused by the swelling effect of HPMC. The decreased Tg of HPMC, resulted from the entered water, enhanced the release of SF. The power law was possible for the first released 60% SF, but unfit for the last 40% SF. The quadratic curve expressed equation can illuminate the release of SF.
For the HPMC system, drug release undertakes the Fick diffusion process followed by the extend of polymer chain. The nonlinear quadratic equation might be valuable to explain the entire drug release from HPMC-based delivery system.
阐明阿魏酸钠(SF)从羟丙基甲基纤维素(HPMC)基骨架片中释放的机制,并提供合适的模型。
从热力学、溶胀和扩散效应的角度分析药物释放的特征和机制。除了经典的Higuchi方程外,还采用半经验幂律和二次曲线来模拟SF从HPMC基片剂中的体外释放。
SF的首次释放阶段主要受菲克扩散控制,其余SF主要根据HPMC溶胀效应引起的Ⅱ型转运过程释放。进入的水导致HPMC的玻璃化转变温度降低,增强了SF的释放。幂律适用于首次释放的60%的SF,但不适用于最后40%的SF。二次曲线表达式方程可以阐明SF的释放。
对于HPMC体系,药物释放经历菲克扩散过程,随后聚合物链伸展。非线性二次方程可能有助于解释从HPMC基给药系统中的整个药物释放。