Drug Quality and Registration group, Faculty of Pharmaceutical Sciences, Ghent University, 9000 Ghent, Belgium.
J Pharm Pharm Sci. 2010;13(2):218-30. doi: 10.18433/j3ws33.
In vitro skin/membrane permeation profiling of topical pharmaceuticals is an important overall quality attribute in the evaluation of product consistency and it is also used for IVIVR (in vitro - in vivo relationship) purposes in product development and change control. Franz diffusion cell (FDC) experiments are emerging as a generally accepted methodology in this field, where the choice of operational conditions requires a data-supported justification towards the discriminating power of the test. A response function is therefore proposed to objectively quantify the discriminating power.
We evaluated the usefulness of the proposed response function by studying one of the operational conditions, i.e. the influence of receptor medium composition, on the FDC in vitro penetration behaviour of the model compound testosterone formulated in four different topical preparations, using both artificial membranes and dermatomed human skin.
From the obtained cumulative amount of testosterone in the receptor fluid versus time curves, the permeability coefficient Kp of testosterone from each formulation was calculated. The evaluation of the discriminating power of the different media was performed using our new objective response function based upon an equal spread criterion of normalised Kp values.
We demonstrated significant differences in discriminating power between the different media used, with the overall best results obtained with hydroxypropyl-beta-cyclodextrine (HPBCD) containing media. The proposed new criterion was found to be useful for the rational design of an in vitro diffusion test for transdermal pharmaceuticals.
局部用药物的体外皮肤/膜渗透分析是评估产品一致性的一个重要整体质量属性,也可用于产品开发和变更控制中的 IVIVR(体外-体内关系)目的。Franz 扩散池(FDC)实验在该领域已逐渐成为一种公认的方法,其中操作条件的选择需要根据测试的区分能力提供数据支持的理由。因此提出了一种响应函数来客观地量化区分能力。
我们通过研究其中一种操作条件,即受体介质组成的影响,评估了所提出的响应函数的有用性,使用人工膜和去皮人体皮肤研究了模型化合物睾酮在四种不同局部制剂中的 FDC 体外渗透行为。
从受体液中累积的睾酮量与时间曲线中,计算了每种制剂的睾酮渗透系数 Kp。使用我们基于归一化 Kp 值的均等扩展标准的新客观响应函数来评估不同介质的区分能力。
我们证明了所使用的不同介质之间的区分能力存在显著差异,其中含有羟丙基-β-环糊精(HPBCD)的介质的总体结果最佳。发现所提出的新标准对于设计用于透皮药物的体外扩散试验是有用的。