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肾脏发育过程中帽状间充质细胞的聚集受到对输尿管芽尖的吸引、排斥和黏附作用的影响。

Cap mesenchyme cell swarming during kidney development is influenced by attraction, repulsion, and adhesion to the ureteric tip.

作者信息

Combes Alexander N, Lefevre James G, Wilson Sean, Hamilton Nicholas A, Little Melissa H

机构信息

Department of Anatomy & Neuroscience, University of Melbourne, Melbourne 3010 VIC, Australia; Murdoch Childrens Research Institute, Flemington Rd, Parkville, Melbourne, 3052 VIC, Australia.

Division of Genomics of Development and Disease, Institute for Molecular Bioscience, The University of Queensland, Brisbane, QLD 4072, Australia.

出版信息

Dev Biol. 2016 Oct 15;418(2):297-306. doi: 10.1016/j.ydbio.2016.06.028. Epub 2016 Jun 23.

Abstract

Morphogenesis of the mammalian kidney requires reciprocal interactions between two cellular domains at the periphery of the developing organ: the tips of the epithelial ureteric tree and adjacent regions of cap mesenchyme. While the presence of the cap mesenchyme is essential for ureteric branching, how it is specifically maintained at the tips is unclear. Using ex vivo timelapse imaging we show that cells of the cap mesenchyme are highly motile. Individual cap mesenchyme cells move within and between cap domains. They also attach and detach from the ureteric tip across time. Timelapse tracks collected for >800 cells showed evidence that this movement was largely stochastic, with cell autonomous migration influenced by opposing attractive, repulsive and cell adhesion cues. The resulting swarming behaviour maintains a distinct cap mesenchyme domain while facilitating dynamic remodelling in response to underlying changes in the tip.

摘要

哺乳动物肾脏的形态发生需要发育中器官外周两个细胞区域之间的相互作用

上皮输尿管树的尖端和帽状间充质的相邻区域。虽然帽状间充质的存在对于输尿管分支至关重要,但尚不清楚它如何在尖端特异性维持。通过体外延时成像,我们发现帽状间充质细胞具有高度的运动性。单个帽状间充质细胞在帽状区域内和之间移动。它们还会随着时间的推移附着和脱离输尿管尖端。对800多个细胞收集的延时追踪显示,这种运动在很大程度上是随机的,细胞自主迁移受相反的吸引、排斥和细胞粘附信号的影响。由此产生的集群行为维持了一个独特的帽状间充质区域,同时促进了对尖端潜在变化做出反应的动态重塑。

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