Wang Kang, Wen Dongsheng, Xu Xuewen, Zhao Rui, Jiang Feipeng, Yuan Shengqin, Zhang Yifan, Gao Ya, Li Qingfeng
Department of Plastic and Reconstructive Surgery, Shanghai Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China.
Department of Burn and Plastic Surgery, West China Hospital, Sichuan University, Chengdu, Sichuan, China.
Front Mol Biosci. 2023 Mar 8;10:1132353. doi: 10.3389/fmolb.2023.1132353. eCollection 2023.
Skin fibrosis is a physiopathological process featuring the excessive deposition of extracellular matrix (ECM), which is the main architecture that provides structural support and constitutes the microenvironment for various cellular behaviors. Recently, increasing interest has been drawn to the relationship between the mechanical properties of the ECM and the initiation and modulation of skin fibrosis, with the engagement of a complex network of signaling pathways, the activation of mechanosensitive proteins, and changes in immunoregulation and metabolism. Simultaneous with the progression of skin fibrosis, the stiffness of ECM increases, which in turn perturbs mechanical and humoral homeostasis to drive cell fate toward an outcome that maintains and enhances the fibrosis process, thus forming a pro-fibrotic "positive feedback loop". In this review, we highlighted the central role of the ECM and its dynamic changes at both the molecular and cellular levels in skin fibrosis. We paid special attention to signaling pathways regulated by mechanical cues in ECM remodeling. We also systematically summarized antifibrotic interventions targeting the ECM, hopefully enlightening new strategies for fibrotic diseases.
皮肤纤维化是一种以细胞外基质(ECM)过度沉积为特征的生理病理过程,ECM是提供结构支持并构成各种细胞行为微环境的主要架构。最近,ECM的机械特性与皮肤纤维化的起始和调节之间的关系引起了越来越多的关注,这涉及复杂的信号通路网络、机械敏感蛋白的激活以及免疫调节和代谢的变化。随着皮肤纤维化的进展,ECM的硬度增加,这反过来又扰乱了机械和体液稳态,驱使细胞命运走向维持和增强纤维化过程的结果,从而形成促纤维化的“正反馈回路”。在本综述中,我们强调了ECM在皮肤纤维化中在分子和细胞水平的核心作用及其动态变化。我们特别关注ECM重塑中机械信号调节的信号通路。我们还系统总结了针对ECM的抗纤维化干预措施,希望能为纤维化疾病启发新的策略。