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使用皮肤覆盖式氧电极电化学监测皮肤中天然过氧化氢酶活性。

Electrochemical monitoring of native catalase activity in skin using skin covered oxygen electrode.

机构信息

Department of Biomedical Sciences, Faculty of Health and Society, Malmö University, SE-205 06 Malmö, Sweden; Biofilms - Research Center for Biointerfaces, Malmö University, SE-205 06 Malmö, Sweden.

Bioglan AB, SE-202 13 Malmö, Sweden.

出版信息

Biosens Bioelectron. 2017 Jul 15;93:9-13. doi: 10.1016/j.bios.2017.01.001. Epub 2017 Jan 3.

Abstract

A skin covered oxygen electrode, SCOE, was constructed with the aim to study the enzyme catalase, which is part of the biological antioxidative system present in skin. The electrode was exposed to different concentrations of HO and the amperometric current response was recorded. The observed current is due to HO penetration through the outermost skin barrier (referred to as the stratum corneum, SC) and subsequent catalytic generation of O by catalase present in the underlying viable epidermis and dermis. By tape-stripping the outermost skin layers we demonstrate that SC is a considerable diffusion barrier for HO penetration. Our experiments also indicate that skin contains a substantial amount of catalase, which is sufficient to detoxify HO that reaches the viable epidermis after exposure of skin to high concentrations of peroxide (0.5-1mM HO). Further, we demonstrate that the catalase activity is reduced at acidic pH, as compared with the activity at pH 7.4. Finally, experiments with often used penetration enhancer thymol shows that this compound interferes with the catalase reaction. Health aspect of this is briefly discussed. Summarizing, the results of this work show that the SCOE can be utilized to study a broad spectrum of issues involving the function of skin catalase in particular, and the native biological antioxidative system in skin in general.

摘要

一种皮肤覆盖的氧电极(SCOE)被构建出来,旨在研究酶过氧化氢酶,它是皮肤中存在的生物抗氧化系统的一部分。该电极暴露于不同浓度的 HO 下,并记录电流的安培响应。观察到的电流是由于 HO 通过最外层皮肤屏障(称为角质层,SC)渗透,随后在下面的有活力的表皮和真皮中存在的过氧化氢酶催化生成 O。通过胶带剥离最外层皮肤层,我们证明 SC 是 HO 渗透的相当大的扩散屏障。我们的实验还表明,皮肤中含有大量的过氧化氢酶,足以使皮肤暴露于高浓度过氧化物(0.5-1mM HO)后到达有活力的表皮的 HO 解毒。此外,我们证明与 pH7.4 时的活性相比,过氧化氢酶在酸性 pH 值下的活性降低。最后,用常用的渗透增强剂麝香草酚进行的实验表明,这种化合物会干扰过氧化氢酶反应。简要讨论了这方面的健康问题。总之,这项工作的结果表明,SCOE 可用于研究涉及皮肤过氧化氢酶功能的广泛问题,特别是涉及皮肤中原生生物抗氧化系统的问题。

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