体外扩散池的设计与验证。2温度、搅拌和膜对17-戊酸倍他米松渗透的影响。

Acta pharmaceutica Nordica Pub Date : 1992-01-01
E W Smith, J M Haigh
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引用次数: 0

摘要

设计并验证了体外渗透细胞用于监测17-戊酸倍他米松的跨膜渗透。该设计利用了常见的实验室设备,并尽可能多地结合了其他设计的有益功能。强调了在实验前充分验证电池水动力性能的重要性。在不同温度、不同搅拌速率、不同合成膜和生物膜条件下,通过监测肉豆酸异丙酯溶液中17-戊酸倍他米松在纯化肉豆酸异丙酯受体相中的扩散情况,对细胞进行了验证。水动力学验证的结果与其他研究人员的数据一致,表明渗透细胞对这些实验参数足够敏感。膜评估的结果允许适当选择屏障材料进行有代表性的透皮实验。虽然人类和猪的角质层/表皮具有相似的扩散特性,但无毛小鼠皮肤似乎是这些研究中最方便的动物膜。尽管硅酮和纤维素膜在这一应用中似乎是有用的,但多孔过滤膜和蛋壳膜对17-戊酸倍他米松的扩散没有足够的区别,无法提供有用的体外渗透数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In vitro diffusion cell design and validation. II. Temperature, agitation and membrane effects on betamethasone 17-valerate permeation.

An in vitro permeation cell has been designed and validated for use in monitoring the transmembrane permeation of betamethasone 17-valerate. The design utilizes common laboratory equipment and incorporates as many beneficial features as possible from other designs. The importance of fully validating the hydrodynamic performance of the cell prior to experimentation is stressed. The cell was validated by monitoring the diffusion of betamethasone 17-valerate in isopropyl myristate solution into purified isopropyl myristate receptor phase at different temperatures, different agitation rates and through different synthetic and biological membranes. The results of the hydrodynamic validation agree with data from other researchers and show that the permeation cell is adequately sensitive to these experimental parameters. The results of the membrane evaluation allow appropriate selection of the barrier material for representative transdermal experiments to be conducted. While human and porcine stratum corneum/epidermis are similar in diffusive properties, hairless mouse skin appears to be the most convenient animal membrane for these studies. Although silicone and cellulose membranes appear to be useful in this application, porous filter membranes and egg-shell membranes are insufficiently discriminatory to betamethasone 17-valerate diffusion to provide useful in vitro permeation data.

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