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Interstitial fluid osmolarity modulates the action of differential tissue surface tension in progenitor cell segregation during gastrulation

机译:间质液渗透压调节胃蠕动过程中祖细胞分离过程中不同组织表面张力的作用。

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摘要

The segregation of different cell types into distinct tissues is a fundamental process in metazoan development. Differences in cell adhesion and cortex tension are commonly thought to drive cell sorting by regulating tissue surface tension (TST). However, the role that differential TST plays in cell segregation within the developing embryo is as yet unclear. Here, we have analyzed the role of differential TST for germ layer progenitor cell segregation during zebrafish gastrulation. Contrary to previous observations that differential TST drives germ layer progenitor cell segregation in vitro, we show that germ layers display indistinguishable TST within the gastrulating embryo, arguing against differential TST driving germ layer progenitor cell segregation in vivo. We further show that the osmolarity of the interstitial fluid (IF) is an important factor that influences germ layer TST in vivo, and that lower osmolarity of the IF compared with standard cell culture medium can explain why germ layers display differential TST in culture but not in vivo. Finally, we show that directed migration of mesendoderm progenitors is required for germ layer progenitor cell segregation and germ layer formation.
机译:不同细胞类型分离成不同组织是后生动物发育的基本过程。通常认为细胞粘附力和皮质张力的差异通过调节组织表面张力(TST)来驱动细胞分选。但是,尚不清楚TST差异在发育中的胚胎细胞分离中所起的作用。在这里,我们分析了斑马鱼胃动过程中差异型TST对胚层祖细胞分离的作用。与以前的观察结果不同,TST在体外驱动了生殖层祖细胞的分离,我们发现胚层在胃胚内显示出难以区分的TST,这与在体内差异的TST驱动的胚层祖细胞的分离有关。我们进一步表明,组织液(IF)的渗透压是影响体内胚层TST的重要因素,与标准细胞培养基相比,IF的较低渗透压可以解释为什么胚层在培养中显示出不同的TST而不是体内。最后,我们表明中胚层祖细胞的定向迁移是胚层祖细胞分离和胚层形成所必需的。

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