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Effect of diffusive direction across the skin on the penetration profile of chemicals in vitro

机译:皮肤上扩散方向对体外化学物质渗透特性的影响

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摘要

Skin has various types of transporters and is a biochemically active organ. These aspects of skin influence the distribution of chemicals in skin and their elimination from skin. The biochemical and histological variations of the skin must be taken into account when conducting transdermal penetration research. Here we used hairless mouse skin to investigate the percutaneous absorption of chemicals in vitro from the stratum corneum (SC) side to the viable skin (VS) side (forward direction) and from the VS side to the SC side (backward direction). We examined the effects of molecular weight, lipophilicity (Log K_(o/w)), electric charge, and the molecular structure of penetrants. The penetration flux of verapamil hydrochloride (VRP) for the backward direction was 3.2 times larger than that for the forward direction. The flux values of benzoic acid (BA) and para-hydroxybenzoic acid (pHBA) for the forward direction were 2.1 and 4.6 times larger than those for the backward direction, respectively. This directional difference was caused by the active transporter for VRP, the histological distribution of BA solubility, and the intermolecular hydrogen bonding between pHBA and skin tissue in the stripped skin. Across intact skin, in contrast, there was no difference in the skin penetration profile between the forward direction and backward directions.
机译:皮肤具有各种转运蛋白,是一种生物化学活性器官。皮肤的这些方面影响化学物质在皮肤中的分布及其从皮肤中的清除。进行透皮渗透研究时,必须考虑皮肤的生化和组织学变化。在这里,我们使用无毛小鼠皮肤研究了体外化学物质从角质层(SC)侧到存活皮肤(VS)侧(向前)以及从VS侧到SC侧(向后)的经皮吸收。我们检查了分子量,亲脂性(Log K_(o / w)),电荷和渗透剂分子结构的影响。盐酸维拉帕米(VRP)的向后方向的渗透通量是向前方向的3.2倍。正向的苯甲酸(BA)和对羟基苯甲酸(pHBA)的通量值分别是反向的2.1和4.6倍。这种方向差异是由VRP的活性转运蛋白,BA溶解度的组织学分布以及剥离的皮肤中pHBA和皮肤组织之间的分子间氢键引起的。相反,在完整皮肤上,向前和向后的皮肤渗透曲线没有差异。

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