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Electroporation of mammalian skin: a mechanism to enhance transdermal drug delivery.

机译:哺乳动物皮肤的电穿孔:增强透皮药物传递的机制。

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摘要

Mammalian skin owes its remarkable barrier function to its outermost and dead layer, the stratum corneum. Transdermal transport through this region occurs predominantly through intercellular lipids, organized largely in bilayers. Electroporation is the creation of aqueous pores in lipid bilayers by the application of a short (microseconds to milliseconds) electric pulse. Our measurements suggest that electroporation occurs in the intercellular lipid bilayers of the stratum corneum by a mechanism involving transient structural changes. Flux increases up to 4 orders of magnitude were observed with human skin in vitro for three polar molecules having charges between -1 and -4 and molecular weights up to slightly more than 1000. Similar flux increases were observed in vivo with animal skin. These results may have significance for drug delivery and other medical applications.
机译:哺乳动物的皮肤由于其最外层和死亡层即角质层而具有出色的屏障功能。通过该区域的透皮运输主要通过细胞间脂质发生,该脂质主要以双层形式组织。电穿孔是通过施加短(微秒至毫秒)电脉冲在脂质双层中形成水孔。我们的测量表明,电穿孔通过涉及瞬时结构变化的机制发生在角质层的细胞间脂质双层中。对于三种极性分子,其电荷在-1和-4之间并且分子量最高略高于1000,在体外人类皮肤中观察到的通量增加高达4个数量级。在动物皮肤中,在体内观察到了相似的通量增加。这些结果对于药物递送和其他医学应用可能具有重要意义。

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