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哺乳动物真皮中皮肤渗透剂的分配、扩散系数和清除率

Partitioning, diffusivity and clearance of skin permeants in mammalian dermis.

作者信息

Kretsos Kosmas, Miller Matthew A, Zamora-Estrada Grettel, Kasting Gerald B

机构信息

College of Pharmacy, University of Cincinnati Academic Health Center, Cincinnati, OH 45267-0004, USA.

出版信息

Int J Pharm. 2008 Jan 4;346(1-2):64-79. doi: 10.1016/j.ijpharm.2007.06.020. Epub 2007 Jun 23.

Abstract

The partition coefficients (K(de)) and diffusivities (D(de)) of compounds in mammalian dermis were examined through an analysis of in vitro permeation data obtained from the literature combined with experimental results with the test permeant, (3)H-testosterone. The literature data involved 26 compounds ranging in molecular weight from 18 to 476 Da and four species-human, guinea pig, rat and mouse. Testosterone was studied by permeation and desorption measurements employing excised human dermis in the presence and absence of external serum albumin. Mathematical models for both K(de) and D(de) were developed. The K(de) model involved ionization, binding to extravascular serum proteins and partitioning into a small lipid compartment. The D(de) model employed a free diffusivity with a liquid-like size dependence multiplied by a binding factor derived from K(de). An additional analysis considered in vivo dermal concentration profiles of topically applied permeants. Literature data for 5 of 6 permeants were shown to be well described by a previously published model for capillary clearance in the dermis, which leads to an exponential decay of concentration with depth. Computed decay lengths (1/e values) ranged from 210 to 920 microm, and the corresponding clearance rate constants k(de) ranged from 0.9 x 10(-4) to 14 x 10(-4)s(-1) (n=8). Departures from the exponential decay profile are discussed in terms of non-uniform capillary clearance and incomplete attainment of a steady-state.

摘要

通过分析从文献中获得的体外渗透数据,并结合受试渗透剂[³H]睾酮的实验结果,研究了化合物在哺乳动物真皮中的分配系数(K(de))和扩散系数(D(de))。文献数据涉及26种分子量在18至476 Da之间的化合物以及四种物种——人类、豚鼠、大鼠和小鼠。采用切除的人真皮,在有和没有外源性血清白蛋白存在的情况下,通过渗透和解吸测量研究了睾酮。建立了K(de)和D(de)的数学模型。K(de)模型涉及离子化、与血管外血清蛋白的结合以及分配到一个小的脂质区室。D(de)模型采用具有类液体尺寸依赖性的自由扩散系数,乘以从K(de)导出的结合因子。另一项分析考虑了局部应用渗透剂的体内真皮浓度分布。6种渗透剂中有5种的文献数据已被先前发表的真皮毛细血管清除模型很好地描述,该模型导致浓度随深度呈指数衰减。计算得到的衰减长度(1/e值)范围为210至920微米,相应的清除速率常数k(de)范围为0.9×10⁻⁴至14×10⁻⁴ s⁻¹(n = 8)。根据毛细血管清除不均匀和未完全达到稳态来讨论与指数衰减曲线的偏差。

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