首页> 外文期刊>International Journal of Pharmaceutics >An improved in vitro method for measuring skin permeability that controls excess hydration of skin using modified Franz diffusion cells.
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An improved in vitro method for measuring skin permeability that controls excess hydration of skin using modified Franz diffusion cells.

机译:一种改进的体外方法,用于测量皮肤渗透性的测量方法,用于使用改性的Franz扩散细胞控制皮肤过量水合的方法。

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摘要

When liquid donors/receivers are used for in vitro skin permeation studies, excess hydration can change skin properties compared to in vivo conditions. A novel in vitro method of determining the permeability of drugs through skin was developed that avoids exposing the membrane to dilute donor/receiver solutions. The drug is dissolved in an unstirred donor gel, and diffuses through a membrane into an unstirred gel receiver that can potentially be adjusted to mimic physiological conditions. Pulsatile microdialysis (PMD) was used to sample local concentrations in the receiver medium, and a model was developed to allow the determination of permeability. For Doxepin HCl, permeabilities through artificial membranes and human cadaver skin were determined using the new and previously reported methods. For artificial membranes that minimally hydrate, the new method gave consistent but slightly lower permeability values. For human cadaver skin, the permeability determined using the new method was 1/6 that of the fully hydrated skin. Limitations of the model, their relations to experimental design and data analysis were evaluated. It was concluded that this method can be applied to characterize membrane permeabilities using experiments that may avoid membrane breakdown and more closely mimic physiological conditions.
机译:当液体供体/接收器用于体外皮肤渗透性研究时,与体内条件相比,过量的水合可以改变皮肤性能。开发了一种确定通过皮肤的药物渗透性的一种新的体外方法,避免将膜暴露于稀释供体/接收器溶液。将该药物溶解在未经思考的供体凝胶中,并将膜扩散到未经读的凝胶接收器中,该凝胶接收器可以潜在地调节以模拟生理条件。脉动微透射菌(PMD)用于在接收介质中对局部浓度进行采样,并且开发了一种模型以允许测定渗透性。对于Doxepin HCl,使用新的和先前报道的方法测定通过人工膜和人尸体皮肤的渗透率。对于最小水合物的人工膜,新方法具有一致但较低的渗透率值。对于人体尸体皮肤,使用新方法测定的渗透率为1/6,其完全水性皮肤的渗透率为1/6。评估模型的局限性,它们与实验设计和数据分析的关系进行了评估。得出结论:使用可以避免膜分解的实验和更密切地模仿生理条件的实验,可以应用这种方法表征膜渗透性。

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