Faculty of Technology and Metallurgy, Department of Chemical Engineering, University of Belgrade, Belgrade, Serbia.
Department of Physics, Lancaster University, Lancaster, LA1 4YB, UK.
Eur Biophys J. 2024 Nov;53(7-8):355-372. doi: 10.1007/s00249-024-01721-z. Epub 2024 Sep 10.
The maintenance of homeostasis and the retention of ordered epithelial cell self-organization are essential for morphogenesis, wound healing, and the spread of cancer across the epithelium. However, cell-cell interactions in an overcrowded environment introduce a diversity of complications. Such interactions arise from an interplay between the cell compressive and shear stress components that accompany increased cell packing density. They can lead to various kinds of cell rearrangement such as: the epithelial-to-mesenchymal cell state transition; live cell extrusion; and cell jamming. All of these scenarios of cell rearrangement under mechanical stress relate to changes in the strengths of the cell-cell and cell-matrix adhesion contacts. The objective of this review study is twofold: first, to provide a comprehensive summary of the biological and physical factors influencing the effects of cell mechanical stress on cell-cell interactions, and the consequences of these interactions for the status of cell-cell and cell-matrix adhesion contacts; and secondly, to offer a bio-physical/mathematical analysis of the aforementioned biological aspects. By presenting these two approaches in conjunction, we seek to highlight the intricate nature of biological systems, which manifests in the form of complex bio-physical/mathematical equations. Furthermore, the juxtaposition of these apparently disparate approaches underscores the importance of conducting experiments to determine the multitude of parameters that contribute to the development of these intricate bio-physical/mathematical models.
维持内稳态和保持有序的上皮细胞自我组织对于形态发生、伤口愈合和癌症在上皮组织中的扩散是至关重要的。然而,在拥挤的环境中,细胞间的相互作用会引入各种复杂情况。这种相互作用源于细胞压缩和剪切应力成分的相互作用,这些成分伴随着细胞堆积密度的增加而出现。它们可以导致各种细胞重排,如上皮细胞到间充质细胞状态的转变、活细胞挤出和细胞堵塞。所有这些在机械应力下的细胞重排情况都与细胞-细胞和细胞-基质黏附接触的强度变化有关。本综述研究的目的有两个:首先,全面总结影响细胞机械应力对细胞间相互作用的生物学和物理因素,以及这些相互作用对细胞-细胞和细胞-基质黏附接触状态的影响;其次,对上述生物学方面进行生物物理/数学分析。通过结合呈现这两种方法,我们旨在强调生物系统的复杂性,这种复杂性表现为复杂的生物物理/数学方程的形式。此外,这些明显不同的方法并列强调了进行实验以确定对这些复杂的生物物理/数学模型的发展有贡献的众多参数的重要性。