Mierke Claudia Tanja
Faculty of Physics and Earth Science, Peter Debye Institute of Soft Matter Physics, Biological Physics Division, University of Leipzig, Leipzig, Germany.
Front Cell Dev Biol. 2022 Feb 9;10:789841. doi: 10.3389/fcell.2022.789841. eCollection 2022.
Viscoelasticity and its alteration in time and space has turned out to act as a key element in fundamental biological processes in living systems, such as morphogenesis and motility. Based on experimental and theoretical findings it can be proposed that viscoelasticity of cells, spheroids and tissues seems to be a collective characteristic that demands macromolecular, intracellular component and intercellular interactions. A major challenge is to couple the alterations in the macroscopic structural or material characteristics of cells, spheroids and tissues, such as cell and tissue phase transitions, to the microscopic interferences of their elements. Therefore, the biophysical technologies need to be improved, advanced and connected to classical biological assays. In this review, the viscoelastic nature of cytoskeletal, extracellular and cellular networks is presented and discussed. Viscoelasticity is conceptualized as a major contributor to cell migration and invasion and it is discussed whether it can serve as a biomarker for the cells' migratory capacity in several biological contexts. It can be hypothesized that the statistical mechanics of intra- and extracellular networks may be applied in the future as a powerful tool to explore quantitatively the biomechanical foundation of viscoelasticity over a broad range of time and length scales. Finally, the importance of the cellular viscoelasticity is illustrated in identifying and characterizing multiple disorders, such as cancer, tissue injuries, acute or chronic inflammations or fibrotic diseases.
事实证明,粘弹性及其在时间和空间上的变化是生命系统中基本生物过程(如形态发生和运动)的关键要素。基于实验和理论发现,可以提出细胞、球体和组织的粘弹性似乎是一种集体特征,需要大分子、细胞内成分和细胞间相互作用。一个主要挑战是将细胞、球体和组织的宏观结构或材料特性的变化(如细胞和组织相变)与它们的元素的微观干扰联系起来。因此,生物物理技术需要改进、提升并与经典生物学检测方法相联系。在本综述中,将介绍和讨论细胞骨架、细胞外和细胞网络的粘弹性本质。粘弹性被概念化为细胞迁移和侵袭的主要促成因素,并讨论了它是否可以作为几种生物学背景下细胞迁移能力的生物标志物。可以假设,细胞内和细胞外网络的统计力学未来可能会作为一种强大的工具,用于在广泛的时间和长度尺度上定量探索粘弹性的生物力学基础。最后,细胞粘弹性在识别和表征多种疾病(如癌症、组织损伤、急性或慢性炎症或纤维化疾病)中的重要性得到了说明。