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Collagen fibril flow and tissue translocation coupled to fibroblast migration in 3D collagen matrices

机译:胶原蛋白原纤维流动和组织移位与成纤维细胞在3D胶原蛋白基质中的迁移相关

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摘要

In nested collagen matrices, human fibroblasts migrate from cell-containing dermal equivalents into surrounding cell-free outer matrices. Time-lapse microscopy showed that in addition to cell migration, collagen fibril flow occurred in the outer matrix toward the interface with the dermal equivalent. Features of this flow suggested that it depends on the same cell motile machinery that normally results in cell migration. Collagen fibril flow was capable of producing large-scale tissue translocation as shown by closure of a similar to 1-mm gap between paired dermal equivalents in floating, nested collagen matrices. Our findings demonstrate that when fibroblasts interact with collagen matrices, tractional force exerted by the cells can couple to matrix translocation as well as to cell migration.
机译:在嵌套的胶原蛋白基质中,人类成纤维细胞从含细胞的真皮等效物迁移到周围的无细胞外部基质中。延时显微镜显示,除细胞迁移外,胶原蛋白原纤维流还发生在外基质中,与真皮等效物的界面。该流的特征表明,它依赖于通常导致细胞迁移的相同细胞运动机制。胶原蛋白原纤维流能够产生大规模的组织移位,如通过封闭浮动的嵌套胶原蛋白基质中的成对真皮等效物之间接近1毫米的间隙所示。我们的发现表明,当成纤维细胞与胶原蛋白基质相互作用时,细胞施加的牵引力可以与基质移位以及细胞迁移耦合。

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