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首页> 外文期刊>Annual Review of Fluid Mechanics >Fluid Dynamic Mechanism Responsible for Breaking the Left-Right Symmetry of the Human Body:THe Nodal Flow
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Fluid Dynamic Mechanism Responsible for Breaking the Left-Right Symmetry of the Human Body:THe Nodal Flow

机译:负责破坏人体左右对称的流体动力学机制:节流

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A left-right (LR) asymmetric body plan is crucial for the development of the human body. The past decade has seen rapid progress in our understanding of the LR symmetry-breaking process in vertebrate development. A series of experimental studies has demonstrated that leftward movement of fluid at the ventral node, designated nodal flow, is the central process in symmetry breaking. Nodal flow is autonomously generated by the posteriorly tilted rotation of cilia. The underlying fluid dynamic mechanism, especially the importance of viscous interactions between the cilia and the cell surface, has been clarified by theoretical analyses. Recent experiments have suggested how this leftward nodal flow can be interpreted to create LR asymmetry. Specifically, leftward transport of lipoprotein particles, called nodal vesicular parcels (NVPs), was uncovered. Nodal flow thus triggers left-specific signaling pathways by transporting signaling molecules to the left side using NVPs.
机译:左右(LR)不对称人体计划对于人体的发展至关重要。在过去的十年中,我们对脊椎动物发育过程中的LR对称性破坏过程的理解取得了快速进展。一系列实验研究表明,腹侧结点处的流体向左运动(称为节点流)是对称破坏的中心过程。纤毛的向后倾斜旋转自动产生了节流。潜在的流体动力学机制,尤其是纤毛和细胞表面之间的粘性相互作用的重要性,已经通过理论分析得到了阐明。最近的实验表明,如何解释这种向左的节点流以产生LR不对称性。具体而言,未发现称为淋巴结小泡包裹(NVPs)的脂蛋白颗粒的向左运输。因此,节点流通过使用NVP将信号分子传输到左侧而触发了左特异性信号通路。

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