Faculty of Mechanical Engineering, Technion - Israel Institute of Technology, Haifa 32000, Israel.
Faculty of Mechanical Engineering, Technion - Israel Institute of Technology, Haifa 32000, Israel.
Semin Cell Dev Biol. 2017 Nov;71:99-105. doi: 10.1016/j.semcdb.2017.06.010. Epub 2017 Jun 16.
Communication between cells enables them to coordinate their activity and is crucial for the differentiation, development, and function of tissues and multicellular organisms. Cell-cell communication is discussed almost exclusively as having a chemical or electrical origin. Only recently, a new mode of cell communication was elucidated: mechanical communication through the extracellular matrix (ECM). Cells can communicate mechanically by responding either to mechanical deformations generated by their neighbors or to a change in the mechanical properties of the ECM induced by a neighboring cell. This newly resolved mode of communication possesses unique features that complement the cellular ability to receive and share information, and to consequently act in a cooperative way with surrounding cells. Herein, we review several examples of mechanical communication, discuss their unique properties, and comment on the major challenges facing the field.
细胞间的通讯使它们能够协调其活动,对于组织和多细胞生物的分化、发育和功能至关重要。细胞间通讯几乎完全被认为具有化学或电学起源。直到最近,一种新的细胞通讯模式才被阐明:通过细胞外基质(ECM)进行机械通讯。细胞可以通过响应来自其邻居的机械变形或响应相邻细胞引起的 ECM 机械性质的变化来进行机械通讯。这种新解析的通讯模式具有独特的特征,补充了细胞接收和共享信息的能力,并能够与周围细胞以合作的方式进行交互。在此,我们综述了几种机械通讯的例子,讨论了它们的独特性质,并对该领域面临的主要挑战进行了评论。