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Characterization of damaged skin by impedance spectroscopy: Mechanical damage

机译:阻抗光谱损伤皮肤的特征:机械损伤

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Purpose: Electrochemical impedance spectroscopy is a convenient method that has been used to characterize skin barrier function, which affects drug delivery into and through the skin. The objective of this study was to relate changes in skin barrier function arising from mechanical damage to changes in the impedance spectra. These observations are compared in a companion paper to changes in chemically damaged skin. Methods: Electrical impedance and the permeation of a non-polar compound were measured before and after human cadaver skin was damaged by needle puncture. Results: The impedance responses of all skin samples were consistent with an equivalent circuit model with a resistor and constant phase element (CPE) in parallel. Pinhole-damaged skin exhibited a lower resistance pathway acting in parallel with the skin resistance without changing the CPE behavior. The characteristic frequency of the impedance scans determined after needle puncture increased by an amount that could be predicted. The flux of 4-cyanophenol increased by a small but significant amount that did not correlate with the hole resistance calculated under the assumption that the resistance of the surrounding skin did not change. Conclusions: Skin impedance measurements are sensitive to irreversible damage caused by exposure to puncture with a needle.
机译:目的:电化学阻抗光谱是一种方便的方法,用于表征皮肤屏障功能,这会影响药物输送到和穿过皮肤。本研究的目的是在阻抗光谱变化中涉及从机械损伤产生的皮肤屏障功能的变化。将这些观察结果与伴侣纸进行比较,以改变化学受损皮肤。方法:在人尸体皮肤损坏之前和之后测量非极性化合物的电阻抗和非极性化合物的渗透。结果:所有皮肤样品的阻抗响应与具有电阻器和恒定相元素(CPE)的等效电路模型一致。针孔损坏的皮肤表现出较低的电阻途径,其与皮肤电阻平行,而不改变CPE行为。在针刺后测定的阻抗扫描的特征频率增加可以预测的量。 4-氰基苯酚的通量增加了小但显着的量,没有与假设围绕皮肤的阻力没有改变的空穴阻力不相关。结论:皮肤阻抗测量对由于暴露于针刺而引起的不可逆损伤敏感。

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