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Cell traction in collective cell migration and morphogenesis: The chase and run mechanism

机译:集体细胞迁移和形态发生中的细胞牵引:追逐和运行机制

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摘要

Directional collective cell migration plays an important role in development, physiology, and disease. An increasing number of studies revealed key aspects of how cells coordinate their movement through distances surpassing several cell diameters. While physical modeling and measurements of forces during collective cell movements helped to reveal key mechanisms, most of these studies focus on tightly connected epithelial cultures. Less is known about collective migration of mesenchymal cells. A typical example of such behavior is the migration of the neural crest cells, which migrate large distances as a group. A recent study revealed that this persistent migration is aided by the interaction between the neural crest and the neighboring placode cells, whereby neural crest chase the placodes via chemotaxis, but upon contact both populations undergo contact inhibition of locomotion and a rapid reorganization of cellular traction. The resulting asymmetric traction field of the placodes forces them to run away from the chasers. We argue that this chase and run interaction may not be specific only to the neural crest system, but could serve as the underlying mechanism for several morphogenetic processes involving collective cell migration.
机译:定向集体细胞迁移在发育,生理学和疾病中起重要作用。越来越多的研究揭示了细胞如何协调其移动超过几个细胞直径的距离的关键方面。虽然物理模型和集体细胞运动过程中的力量测量有助于揭示关键机制,但这些研究大多数集中在紧密连接的上皮培养上。关于间充质细胞的集体迁移知之甚少。这种行为的典型示例是神经c细胞的迁移,神经neural细胞作为一个整体迁移远距离。最近的一项研究表明,神经persistent与邻近斑块细胞之间的相互作用有助于这种持续的迁移,从而使神经c通过趋化性追赶斑块,但是一旦接触,这两个种群都受到运动的接触抑制和细胞牵引力的快速重组。所产生的基板不对称牵引场迫使它们从追赶者逃走。我们认为,这种追赶和奔跑的相互作用可能不仅是特定于神经c系统,而是可以作为涉及集体细胞迁移的几种形态发生过程的潜在机制。

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