Institute of Biomaterials and Biomedical Engineering and Department of Chemical Engineering and Applied Chemistry, University of Toronto, Toronto, ON, Canada M5S 3E5.
Proc Natl Acad Sci U S A. 2014 Feb 4;111(5):1807-12. doi: 10.1073/pnas.1321852111. Epub 2014 Jan 21.
Directed migration of groups of cells is a critical aspect of tissue morphogenesis that ensures proper tissue organization and, consequently, function. Cells moving in groups, unlike single cells, must coordinate their migratory behavior to maintain tissue integrity. During directed migration, cells are guided by a combination of mechanical and chemical cues presented by neighboring cells and the surrounding extracellular matrix. One important class of signals that guide cell migration includes topographic cues. Although the contact guidance response of individual cells to topographic cues has been extensively characterized, little is known about the response of groups of cells to topographic cues, the impact of such cues on cell-cell coordination within groups, and the transmission of nonautonomous contact guidance information between neighboring cells. Here, we explore these phenomena by quantifying the migratory response of confluent monolayers of epithelial and fibroblast cells to contact guidance cues provided by grooved topography. We show that, in both sparse clusters and confluent sheets, individual cells are contact-guided by grooves and show more coordinated behavior on grooved versus flat substrates. Furthermore, we demonstrate both in vitro and in silico that the guidance signal provided by a groove can propagate between neighboring cells in a confluent monolayer, and that the distance over which signal propagation occurs is not significantly influenced by the strength of cell-cell junctions but is an emergent property, similar to cellular streaming, triggered by mechanical exclusion interactions within the collective system.
细胞群的定向迁移是组织形态发生的一个关键方面,它确保了组织的正常结构和功能。与单细胞不同,成群移动的细胞必须协调它们的迁移行为以维持组织的完整性。在定向迁移过程中,细胞受到来自相邻细胞和周围细胞外基质的机械和化学线索的组合引导。一类重要的引导细胞迁移的信号包括地形线索。尽管单个细胞对地形线索的接触引导反应已经得到了广泛的描述,但对于细胞群对地形线索的反应、这些线索对细胞间协调的影响以及相邻细胞之间非自主接触引导信息的传递知之甚少。在这里,我们通过量化上皮细胞和成纤维细胞的融合单层对沟槽提供的接触引导线索的迁移反应来探索这些现象。我们表明,在稀疏的簇和融合的薄片中,单个细胞都被沟槽所引导,并且在沟槽和平面基底上表现出更协调的行为。此外,我们在体外和计算机模拟中证明,沟槽提供的引导信号可以在融合单层中的相邻细胞之间传播,并且信号传播的距离不会受到细胞-细胞连接强度的显著影响,而是一种类似于细胞流的涌现特性,由集体系统内的机械排斥相互作用触发。