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体外新鲜切除的人皮肤中β-雌二醇的转运:各皮肤层中的扩散与代谢

Transport of beta-estradiol in freshly excised human skin in vitro: diffusion and metabolism in each skin layer.

作者信息

Liu P, Higuchi W I, Ghanem A H, Good W R

机构信息

Department of Pharmaceutics and Pharmaceutical Chemistry, University of Utah, Salt Lake City 84112.

出版信息

Pharm Res. 1994 Dec;11(12):1777-84. doi: 10.1023/a:1018975602818.

Abstract

This paper describes an experimental and theoretical evaluation of beta-estradiol (E2) transport in post-surgery fresh human skin in vitro. Necessary auxiliary experimental methods were newly developed for these studies. The experimental fluxes of E2 and the metabolite, estrone (E1), using the dermis, stripped skin, and split-thickness skin were consistent with a model considering the human skin as a three-layer (stratum corneum, viable epidermis, and dermis) membrane with the enzyme activity mainly residing in the basal layer of the viable epidermis. The diffusion and metabolism parameters for each skin layer were determined in the overall transdermal transport of E2. Compared to fresh hairless mouse skin, fresh human skin appears more resistant to the stratum corneum diffusion of E2 and is much less capable of metabolizing E2 to E1. These in vitro results have been extrapolated to the possible in vivo human skin situation with blood vessels directly beneath the viable epidermis providing "sink" conditions a short distance from the dermo-epidermal junction. The model analysis has demonstrated that there would be less metabolism and that a much smaller amount of the transdermal metabolite (E1) would be taken up by the blood capillary due to the shorter dermis path length for permeants in vivo than in the in vitro case using dermatomed split-thickness skin.

摘要

本文描述了β-雌二醇(E2)在体外手术后新鲜人皮肤中转运的实验和理论评估。为这些研究新开发了必要的辅助实验方法。使用真皮、去皮皮肤和断层皮肤时,E2及其代谢物雌酮(E1)的实验通量与将人皮肤视为三层(角质层、有活力的表皮和真皮)膜的模型一致,酶活性主要存在于有活力表皮的基底层。在E2的整体透皮转运中确定了各皮肤层的扩散和代谢参数。与新鲜无毛小鼠皮肤相比,新鲜人皮肤对E2的角质层扩散似乎更具抗性,并且将E2代谢为E1的能力要小得多。这些体外结果已外推至可能的体内人皮肤情况,即有活力表皮正下方的血管在距真皮-表皮交界处短距离处提供“汇”条件。模型分析表明,由于体内渗透物的真皮路径长度比使用皮肤切片机切取的断层皮肤的体外情况短,因此代谢会更少,并且透皮代谢物(E1)被毛细血管吸收的量也会少得多。

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