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解析细胞外基质的力学生物学

Unraveling the Mechanobiology of Extracellular Matrix.

机构信息

Laboratory of Applied Mechanobiology, Institute of Translational Medicine, Department for Health Sciences and Technology, ETH Zürich, CH-8093 Zürich, Switzerland; email:

出版信息

Annu Rev Physiol. 2018 Feb 10;80:353-387. doi: 10.1146/annurev-physiol-021317-121312.

Abstract

Cells need to be anchored to extracellular matrix (ECM) to survive, yet the role of ECM in guiding developmental processes, tissue homeostasis, and aging has long been underestimated. How ECM orchestrates the deterioration of healthy to pathological tissues, including fibrosis and cancer, also remains poorly understood. Inquiring how alterations in ECM fiber tension might drive these processes is timely, as mechanobiology is a rapidly growing field, and many novel mechanisms behind the mechanical forces that can regulate protein, cell, and tissue functions have recently been deciphered. The goal of this article is to review how forces can switch protein functions, and thus cell signaling, and thereby inspire new approaches to exploit the mechanobiology of ECM in regenerative medicine as well as for diagnostic and therapeutic applications. Some of the mechanochemical switching concepts described here for ECM proteins are more general and apply to intracellular proteins as well.

摘要

细胞需要锚定在细胞外基质(ECM)上才能存活,但 ECM 在指导发育过程、组织稳态和衰老方面的作用长期以来被低估了。ECM 如何协调健康组织向病理性组织的恶化,包括纤维化和癌症,也知之甚少。探究 ECM 纤维张力的变化如何驱动这些过程是及时的,因为机械生物学是一个快速发展的领域,最近已经揭示了许多可以调节蛋白质、细胞和组织功能的机械力背后的新机制。本文的目的是综述力如何改变蛋白质的功能,从而改变细胞信号转导,从而为利用 ECM 的机械生物学在再生医学以及诊断和治疗应用中提供新的方法。这里描述的一些 ECM 蛋白的机械化学转换概念更具普遍性,也适用于细胞内蛋白。

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