Sun Bo
Department of Physics, Oregon State University, Corvallis, OR 97331, USA.
Cell Rep Phys Sci. 2021 Aug 18;2(8). doi: 10.1016/j.xcrp.2021.100515. Epub 2021 Jul 28.
As a major component of the human body, the extracellular matrix (ECM) is a complex biopolymer network. The ECM not only hosts a plethora of biochemical interactions but also defines the physical microenvironment of cells. The physical properties of the ECM, such as its geometry and mechanics, are critical to physiological processes and diseases such as morphogenesis, wound healing, and cancer. This review provides a brief introduction to the recent progress in understanding the mechanics of ECM for researchers who are interested in learning about this relatively new subject of biophysics. This review covers the mechanics of a single ECM fiber (nanometer scale), the micromechanics of ECM (micrometer scale), and bulk rheology (greater than millimeter scale). Representative experimental measurements and basic theoretical models are introduced side by side. After discussing the physics of ECM mechanics, the review concludes by commenting on the role of ECM mechanics in healthy and tumorigenic tissues and the open questions that call for future studies at the interface of fundamental physics, engineering, and medical sciences.
作为人体的主要组成部分,细胞外基质(ECM)是一个复杂的生物聚合物网络。ECM不仅承载着大量的生化相互作用,还定义了细胞的物理微环境。ECM的物理特性,如几何形状和力学性质,对于诸如形态发生、伤口愈合和癌症等生理过程和疾病至关重要。本综述为有兴趣了解这一相对较新的生物物理学科的研究人员简要介绍了在理解ECM力学方面的最新进展。本综述涵盖了单个ECM纤维的力学(纳米尺度)、ECM的微观力学(微米尺度)和整体流变学(大于毫米尺度)。同时介绍了代表性的实验测量和基本理论模型。在讨论了ECM力学的物理学之后,本综述通过评论ECM力学在健康组织和致瘤组织中的作用以及在基础物理学、工程学和医学科学交叉领域中需要未来研究的开放性问题来结束。