Institute for Bioengineering of Catalonia, Ciber Enfermedades Respiratorias, University of Barcelona, Spain.
Trends Cell Biol. 2011 Nov;21(11):638-46. doi: 10.1016/j.tcb.2011.06.006. Epub 2011 Jul 23.
For a monolayer sheet to migrate cohesively, it has long been suspected that each constituent cell must exert physical forces not only upon its extracellular matrix but also upon neighboring cells. The first comprehensive maps of these distinct force components reveal an unexpected physical picture. Rather than showing smooth and systematic variation within the monolayer, the distribution of physical forces is dominated by heterogeneity, both in space and in time, which emerges spontaneously, propagates over great distances, and cooperates over the span of many cell bodies. To explain the severe ruggedness of this force landscape and its role in collective cell guidance, the well known mechanisms of chemotaxis, durotaxis, haptotaxis are clearly insufficient. In a broad range of epithelial and endothelial cell sheets, collective cell migration is governed instead by a newly discovered emergent mechanism of innately collective cell guidance - plithotaxis.
为了使单层薄片能够进行粘着迁移,人们长期以来一直怀疑每个组成细胞不仅必须对其细胞外基质施加物理力,而且还必须对相邻细胞施加物理力。这些独特力分量的第一张综合图谱揭示了一个出人意料的物理图景。这些物理力的分布不仅在单层内表现出平滑和系统的变化,而且在空间和时间上都具有异质性,这种异质性自发出现、在很大距离上传播,并在许多细胞体的跨度上进行协作。为了解释这种力景观的严重崎岖性及其在细胞集体导向中的作用,趋化性、趋硬性和趋触性等众所周知的机制显然是不够的。在广泛的上皮细胞和内皮细胞薄片中,细胞的集体迁移反而受到一种新发现的固有集体细胞导向的新兴机制——整体定向性的控制。