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Mechanism of Enhanced Dermal Permeation of 4-Cyanophenol and Methyl Paraben from Saturated Aqueous Solutions Containing Both Solutes

机译:含有两种溶质的饱和水溶液中4-氰基苯酚和对羟基苯甲酸甲酯透皮渗透的机理

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摘要

Dermal permeation through human epidermis and uptake into isolated human stratum corneum (SC) that was and was not delipidized were measured for 2 model compounds, 4-cyanophenol (CP) and methyl paraben (MP), from saturated aqueous solutions containing 1 or both compounds. Because the solutions were in equilibrium with the pure CP and MP, the thermodynamic activity of the compounds was constant. Compared with compounds that are known permeation enhancers, MP and CP would not normally be expected to act as enhancers. Nevertheless, when both compounds were present, the steady-state fluxes through the epidermis increased by factors of 5.2 and 2.6 for MP and CP, respectively. Within the variability of the measurements, this increase in MP flux is consistent with the 6.4-fold increase in the SC uptake, which occurs primarily into the nonlipid regions of the SC. In contrast, the 1.6-fold increase in CP uptake when MP is present is too small to explain the increase in CP flux. These results suggest that CP enhances the skin permeation of MP by primarily increasing the solubility of MP in the SC, especially in the nonlipid regions, while MP increases the skin permeation of CP by enhancing both the solubility and diffusivity of CP in the SC.
机译:从包含一种或两种化合物的饱和水溶液中测定了2种模型化合物4-氰基苯酚(CP)和对羟基苯甲酸甲酯(MP)的透过人表皮的皮肤渗透性以及被脂化和未被脂化的离体人角质层(SC)的吸收。 。由于溶液与纯CP和MP处于平衡状态,因此化合物的热力学活性是恒定的。与已知的渗透促进剂相比,MP和CP通常不会充当促进剂。但是,当同时存在这两种化合物时,通过表皮的稳态通量对于MP和CP分别增加了5.2和2.6倍。在测量的可变性内,MP通量的这种增加与SC摄取的6.4倍增加一致,这主要发生在SC的非脂质区域。相反,当MP存在时,CP吸收的1.6倍增加太小,不足以解释CP通量的增加。这些结果表明CP通过主要增加MP在SC中,特别是在非脂质区域中的溶解度来增强MP的皮肤渗透,而MP通过增强CP在SC中的溶解度和扩散性来增加CP的皮肤渗透。

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