Malandrino Andrea, Mak Michael, Kamm Roger D, Moeendarbary Emad
Institute for Bioengineering of Catalonia, Barcelona, Spain.
European Molecular Biology Laboratory, Barcelona, Spain.
Extreme Mech Lett. 2018 May;21:25-34. doi: 10.1016/j.eml.2018.02.003.
The extracellular matrix (ECM) performs many critical functions, one of which is to provide structural and mechanical integrity, and many of the constituent proteins have clear mechanical roles. The composition and structural characteristics of the ECM are widely variable among different tissues, suiting diverse functional needs. In diseased tissues, particularly solid tumors, the ECM is complex and influences disease progression. Cancer and stromal cells can significantly influence the matrix composition and structure and thus the mechanical properties of the tumor microenvironment (TME). In this review, we describe the interactions that give rise to the structural heterogeneity of the ECM and present the techniques that are widely employed to measure ECM properties and remodeling dynamics. Furthermore, we review the tools for measuring the distinct nature of cell-ECM interactions within the TME.
细胞外基质(ECM)执行许多关键功能,其中之一是提供结构和机械完整性,并且许多组成蛋白具有明确的机械作用。ECM的组成和结构特征在不同组织中差异很大,以适应各种功能需求。在患病组织中,尤其是实体瘤,ECM很复杂并影响疾病进展。癌细胞和基质细胞可显著影响基质组成和结构,进而影响肿瘤微环境(TME)的机械性能。在本综述中,我们描述了导致ECM结构异质性的相互作用,并介绍了广泛用于测量ECM特性和重塑动力学的技术。此外,我们还综述了用于测量TME内细胞与ECM相互作用独特性质的工具。