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Effects of Alternating Current Frequency and Permeation Enhancers upon Human Epidermal Membrane

机译:交流频率和渗透促进剂对人表皮膜的影响

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摘要

Previous studies have demonstrated the ability of AC iontophoresis to control skin resistance in different transdermal iontophoresis applications. The objectives of the present study were to (a) identify the alternating current (AC) frequency for the optimization of AC pore induction of human epidermal membrane (HEM) and (b) determine the effects of chemical permeation enhancers upon the extent of pore induction under AC conditions. Experiments with a synthetic membrane system were first conducted as the control. In these synthetic membrane experiments, the electrical resistance of the membrane remained essentially constant, suggesting constant electromobility of the background electrolyte ions under the AC conditions studied. In the HEM experiments, the electrical resistance data showed that higher applied voltages were required to induce the same extent of pore induction in HEM at AC frequency of 1 kHz compared with those at 30 Hz. Even higher voltages were needed at AC frequencies of 10 kHz and higher. AC frequency also influenced the recovery of HEM electrical resistance after AC iontophoresis application. An optimal AC frequency region for effective pore induction and least sensation was proposed. Permeation enhancers were shown to enhance pore induction in HEM during AC iontophoresis. The enhancers reversibly reduced the AC voltage required to sustain a constant state of pore induction in HEM during AC iontophoresis, consistent with the mechanism of lipid lamellae electroporation in the stratum corneum.
机译:先前的研究表明,AC离子电渗疗法在不同的透皮离子电渗疗法应用中能够控制皮肤抵抗力。本研究的目的是(a)确定交流电(AC)频率以优化人表皮膜(HEM)的AC毛孔诱导,以及(b)确定化学渗透促进剂对毛孔诱导程度的影响在交流条件下。首先用合成膜系统进行实验作为对照。在这些合成膜实验中,膜的电阻基本保持恒定,表明在研究的AC条件下背景电解质离子的恒定电迁移率。在HEM实验中,电阻数据显示,与30 Hz的交流电相比,在1 kHz的交流电频率下,在HEM中诱导相同程度的孔感应需要更高的施加电压。在10 kHz或更高的交流频率下甚至需要更高的电压。交流电频率也影响了交流电电渗疗法应用后HEM电阻的恢复。提出了一种有效的诱导毛孔和减少感觉的最佳交流频率区域。研究表明,渗透增强剂可增强AC离子电渗疗法期间HEM中的孔诱导。增强剂可逆地降低了在交流电电渗入过程中维持HEM中恒定的孔诱导状态所需的交流电压,这与角质层中脂质薄片的电穿孔机制一致。

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