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具有局部传输区域的透化皮肤数值模型。

A numerical model of permeabilized skin with local transport regions.

作者信息

Pavselj Natasa, Miklavcic Damijan

机构信息

Faculty of Electrical Engineering, University of Ljubljana, SI-1000 Ljubljana, Slovenia.

出版信息

IEEE Trans Biomed Eng. 2008 Jul;55(7):1927-30. doi: 10.1109/TBME.2008.919730.

Abstract

The protective function of skin and hence its low permeability presents a formidable obstacle in therapeutical applications such as transdermal drug delivery and gene delivery in skin. One of the methods to temporarily increase skin permeability is electroporation, creating aqueous pathways across lipid-based structures by means of electric pulses. Also, the application of electric pulses to biological cells causes increased permeability of cell membrane, thus enabling the uptake of larger molecules that otherwise cannot cross the membrane, such as drug molecules or DNA, into the cell. The creation of localized sites of increased molecular transport termed local transport regions (LTRs) can be observed during electroporation, as well as changes in the bulk electric properties of skin layers. We modeled these phenomena with a numerical model and compared the output of the model with our own in vivo experiments and previously published results of skin electroporation and a good agreement was obtained. With the model presented, we used the available data to describe the nonlinear process of skin electropermeabilization from the aspect of tissue conductivity changes and the presence of local transport regions in the permeabilized stratum corneum. The observations derived from various in vivo experiments by different authors were thus confirmed theoretically.

摘要

皮肤的保护功能及其低渗透性在诸如经皮给药和皮肤基因递送等治疗应用中构成了巨大障碍。暂时增加皮肤渗透性的方法之一是电穿孔,即通过电脉冲在基于脂质的结构中创建水性通道。此外,对生物细胞施加电脉冲会导致细胞膜渗透性增加,从而使原本无法穿过细胞膜的较大分子(如药物分子或DNA)能够进入细胞。在电穿孔过程中,可以观察到形成了称为局部转运区域(LTRs)的分子转运增加的局部位点,以及皮肤层整体电学性质的变化。我们用一个数值模型对这些现象进行了建模,并将模型输出与我们自己的体内实验以及先前发表的皮肤电穿孔结果进行了比较,结果吻合良好。利用所提出的模型,我们从组织电导率变化和角质层通透化中局部转运区域的存在方面,用现有数据描述了皮肤电通透化的非线性过程。不同作者从各种体内实验得出的观察结果因此在理论上得到了证实。

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