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外周冷敏瞬时受体电位通道 TRPM8 在人类皮肤触觉中的作用。

Evidence for the involvement of peripheral cold-sensitive TRPM8 channels in human cutaneous hygrosensation.

机构信息

THERMOSENSELAB, Environmental Ergonomics Research Centre, Loughborough University, Loughborough, United Kingdom.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2020 Mar 1;318(3):R579-R589. doi: 10.1152/ajpregu.00332.2019. Epub 2020 Jan 22.

Abstract

In contrast to other species, humans are believed to lack hygroreceptors for sensing skin wetness. Yet, the molecular basis of human hygrosensation is currently unknown, and it remains unclear whether we possess a receptor-mediated sensing mechanism for skin wetness. The aim of this study was to assess the role of the cutaneous cold-sensitive transient receptor potential melastatin-8 (TRPM8) channel as a molecular mediator of human hygrosensation. To this end, we exploited both the thermal and chemical activation of TRPM8-expressing cutaneous Aδ cold thermoreceptors, and we assessed wetness sensing in healthy young men in response to ) dry skin cooling in the TRPM8 range of thermosensitivity and ) application of the TRPM8 agonist menthol. Our results indicate that ) independently of contact with moisture, a cold-dry stimulus in the TRPM8 range of activation induced wetness perceptions across 12 different body regions and those wetness perceptions varied across the body following regional differences in cold sensitivity; and ) independently of skin cooling, menthol-induced stimulation of TRPM8 triggered wetness perceptions that were greater than those induced by physical dry cooling and by contact with an aqueous cream containing actual moisture. For the first time, we show that the cutaneous cold-sensing TRPM8 channel plays the dual role of cold and wetness sensor in human skin and that this ion channel is a peripheral mediator of human skin wetness perception.

摘要

与其他物种不同,人类被认为缺乏感知皮肤湿润的水感受器。然而,人类触觉感知的分子基础目前尚不清楚,也不清楚我们是否具有受体介导的皮肤湿润感知机制。本研究旨在评估皮肤冷敏瞬时受体电位 melastatin-8(TRPM8)通道作为人类触觉感知分子介质的作用。为此,我们利用表达 TRPM8 的皮肤 Aδ 冷热敏感受器的热和化学激活,并评估健康年轻男性对以下情况的湿润感:)在 TRPM8 热敏范围内干燥皮肤冷却,和)应用 TRPM8 激动剂薄荷醇。我们的结果表明:)独立于与水分接触,TRPM8 激活范围内的冷干刺激会在 12 个不同身体区域引起湿润感,并且这些湿润感会根据冷敏感性的区域差异而在身体上发生变化;)独立于皮肤冷却,薄荷醇诱导的 TRPM8 刺激引发的湿润感大于物理干燥冷却和接触含有实际水分的水性乳膏所引发的湿润感。我们首次表明,皮肤冷敏 TRPM8 通道在人类皮肤中发挥冷觉和湿觉传感器的双重作用,并且该离子通道是人类皮肤湿润感知的外周介质。

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