Department of Pathology and Immunology, University of Geneva, 1211 Geneva, Switzerland.
Department of Dermatology, Geneva University Hospitals, 1211 Geneva, Switzerland.
Cells. 2022 Jun 25;11(13):2026. doi: 10.3390/cells11132026.
In the process of mechanotransduction, the cells in the body perceive and interpret mechanical stimuli to maintain tissue homeostasis and respond to the environmental changes. Increasing evidence points towards dysregulated mechanotransduction as a pathologically relevant factor in human diseases, including inflammatory conditions. Skin is the organ that constantly undergoes considerable mechanical stresses, and the ability of mechanical factors to provoke inflammatory processes in the skin has long been known, with the Koebner phenomenon being an example. However, the molecular mechanisms and key factors linking mechanotransduction and cutaneous inflammation remain understudied. In this review, we outline the key players in the tissue's mechanical homeostasis, the available data, and the gaps in our current understanding of their aberrant regulation in chronic cutaneous inflammation. We mainly focus on psoriasis as one of the most studied skin inflammatory diseases; we also discuss mechanotransduction in the context of skin fibrosis as a result of chronic inflammation. Even though the role of mechanotransduction in inflammation of the simple epithelia of internal organs is being actively studied, we conclude that the mechanoregulation in the stratified epidermis of the skin requires more attention in future translational research.
在机械转导过程中,体内的细胞感知和解释机械刺激,以维持组织内稳态并响应环境变化。越来越多的证据表明,机械转导失调是包括炎症在内的人类疾病的一个与病理相关的因素。皮肤是不断承受相当大机械压力的器官,机械因素在皮肤中引发炎症过程的能力早已为人所知,Koebner 现象就是一个例子。然而,将机械转导与皮肤炎症联系起来的分子机制和关键因素仍研究不足。在这篇综述中,我们概述了组织机械内稳态的关键参与者,以及现有数据,和我们目前对其在慢性皮肤炎症中异常调节的理解差距。我们主要关注银屑病作为研究最多的皮肤炎症性疾病之一;我们还讨论了机械转导在慢性炎症导致的皮肤纤维化中的作用。尽管机械转导在内部器官简单上皮炎症中的作用正在被积极研究,但我们得出结论,在未来的转化研究中,需要更多地关注分层表皮的机械调节。