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首页> 外文期刊>Seminars in cell and developmental biology >Pulling together: Tissue-generated forces that drive lumen morphogenesis
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Pulling together: Tissue-generated forces that drive lumen morphogenesis

机译:齐心协力:组织生成的力推动管腔形态发生

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Mechanical interactions are essential for bending and shaping tissues during morphogenesis. A common feature of nearly all internal organs is the formation of a tubular network consisting of an epithelium that surrounds a central lumen. Lumen formation during organogenesis requires precisely coordinated mechanical and biochemical interactions. Whereas many genetic regulators of lumen formation have been identified, relatively little is known about the mechanical cues that drive lumen morphogenesis. Lumens can be shaped by a variety of physical behaviors including wrapping a sheet of cells around a hollow core, rearranging cells to expose a lumenal cavity, or elongating a tube via cell migration, though many of the details underlying these movements remain poorly understood. It is essential to define how forces generated by individual cells cooperate to produce the tissue-level forces that drive organogenesis. Transduction of mechanical forces relies on several conserved processes including the contraction of cytoskeletal networks or expansion of lumens through increased fluid pressure. The morphogenetic events that drive lumen formation serve as a model for similar mechanical processes occurring throughout development. To understand how lumenal networks arise, it will be essential to investigate how biochemical and mechanical processes integrate to generate complex structures from comparatively simple interactions. (C) 2016 Elsevier Ltd. All rights reserved.
机译:机械相互作用对于在形态发生过程中弯曲和塑造组织至关重要。几乎所有内部​​器官的共同特征是形成管状网络,该网络由围绕中央管腔的上皮组成。器官发生过程中的管腔形成需要精确协调的机械和生化相互作用。尽管已经确定了许多管腔形成的遗传调节因子,但对驱动管腔形态发生的机械提示知之甚少。管腔可以通过多种物理行为来成形,包括在中空的核芯周围包裹一片细胞,重新排列细胞以暴露腔腔或通过细胞迁移使管伸长,尽管这些运动背后的许多细节仍知之甚少。定义单个细胞产生的力如何协同产生驱动器官发生的组织水平力至关重要。机械力的传导依赖于几个保守的过程,包括细胞骨架网络的收缩或通过增加的流体压力使管腔膨胀。驱动管腔形成的形态发生事件可作为整个发育过程中发生的类似机械过程的模型。为了了解管腔网络是如何产生的,研究生化和机械过程如何通过相对简单的相互作用生成复杂结构至关重要。 (C)2016 Elsevier Ltd.保留所有权利。

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