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离体动物皮肤和人体表皮的被动电学性质

平其能, 赵次英   

  1. 中国药科大学, 南京 210009
  • 收稿日期:1997-07-02 修回日期:1998-03-23 出版日期:1998-06-15 发布日期:1998-06-15

Passive Electrical Properties of Animal Skin and Human Epidermal Membranes In vitro

Qi-Neng Ping, Ci-Ying Zhao   

  1. China Pharmaceutical University, Nanjing 210009
  • Received:1997-07-02 Revised:1998-03-23 Online:1998-06-15 Published:1998-06-15

摘要: 研究和比较了三种无毛实验动物离体皮肤和人体表皮在离子电导中的被动电学性质, 发现48小时水合过程显著和连续地降低动物皮肤的阻抗, 而人体表皮则保持阻抗相对稳定。但是在各水合时间, 在连续升高的脉冲电压与产生的电流之间无论动物皮肤或人体表皮都呈现类似的非线性关系, 只是对电压变化的敏感程度不同, 其相关方程为: V = (4ARF/T)Sinh-1(BI)。式中参数A的大小反映了敏感性的大小。与人体表皮比较, 无毛小鼠和无毛豚鼠对电压更为敏感, 而无毛大鼠相对不敏感。长时间施加电压得到相同结果, 但电阻的显著改变总是发生在电压开始或停止后的短时间内。

关键词: 离子电导, 皮肤, 电阻, 水合

Abstract: The suitability of three animal skin species as the model for iontophoresis study was discussed based on the current density measurement, compared with the electrical properties of the human epidermal membrane (HEM) in vitro. The hydration during 48 h period significantly and continuously decreased the animal skin resistance and had much smaller influence on the HEM. The relationship between the pulse voltage and the current across these skin models was similar to those of HEM in different hydration status, but there were some variations in the extent due to the various sensitivities. The profiles could be simulated by the equation of V = (4ARF/T)Sinh-1(BI). The parameters A reflected the sensitivity of the skin species to the electrical field. The hairless mouse skin and hairless guinea pig skin were more sensitive than the HEM, the sensitivity of the hairless rat skin was the lowest among the skin species. The results were further proved by the tests of long period voltage regimens, but it was found that significant alteration of the skin resistance occurred in the very short time as the electrical field was set up or discontinued.

Key words: Iontophoresis, Skin, Electrical resistance, Hydration

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