University of Michigan, College of Pharmacy, Ann Arbor, MI, USA.
Biopharm Drug Dispos. 2012 Oct;33(7):378-402. doi: 10.1002/bdd.1803. Epub 2012 Sep 4.
In vitro dissolution methodologies that adequately capture the oral bioperformance of solid dosage forms are critical tools needed to aid formulation development. Such methodologies must encompass important physiological parameters and be designed with drug properties in mind. Two-phase dissolution apparatuses, which contain an aqueous phase in which the drug dissolves (representing the dissolution/solubility component) and an organic phase into which the drug partitions (representing the absorption component), have the potential to provide meaningful predictions of in vivo oral bioperformance for some BCS II, and possibly some BCS IV drug products. Before such an apparatus can be evaluated properly, it is important to understand the kinetics of drug substance partitioning from the aqueous to the organic medium. A mass transport analysis was performed of the kinetics of partitioning of drug substance solutions from the aqueous to the organic phase of a two-phase dissolution apparatus. Major assumptions include pseudo-steady-state conditions, a dilute aqueous solution and diffusion-controlled transport. Input parameters can be measured or estimated a priori. This paper presents the theory and derivation of our analysis, compares it with a recent kinetic approach, and demonstrates its effectiveness in predicting in vitro partitioning profiles of three BCS II weak acids in four different in vitro two-phase dissolution apparatuses. Very importantly, the paper discusses how a two-phase apparatus can be scaled to reflect in vivo absorption kinetics and for which drug substances the two-phase dissolution systems may be appropriate tools for measuring oral bioperformance.
体外溶解方法学是一种重要的工具,可用于辅助制剂开发,以充分捕捉固体制剂的口服生物性能。此类方法学必须包含重要的生理参数,并充分考虑药物特性。两相溶解装置包含一个水相(其中药物溶解,代表溶解/溶解度部分)和一个有机相(其中药物分配,代表吸收部分),有可能为某些 BCS II 和可能的某些 BCS IV 药物产品提供有意义的体内口服生物性能预测。在适当评估此类装置之前,了解药物从水相向有机相分配的动力学非常重要。对药物从两相溶解装置的水相到有机相的分配动力学进行了质量传递分析。主要假设包括准稳态条件、稀水溶液和扩散控制的传输。输入参数可以预先测量或估计。本文介绍了我们分析的理论和推导,将其与最近的动力学方法进行了比较,并展示了其在预测三种 BCS II 弱酸性药物在四种不同体外两相溶解装置中的体外分配曲线方面的有效性。非常重要的是,本文讨论了如何将两相装置进行缩放以反映体内吸收动力学,以及对于哪些药物,两相溶解系统可能是测量口服生物性能的合适工具。