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Neural tube closure: cellular molecular and biomechanical mechanisms

机译:神经管闭合:细胞分子和生物力学机制

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摘要

Neural tube closure has been studied for many decades, across a range of vertebrates, as a paradigm of embryonic morphogenesis. Neurulation is of particular interest in view of the severe congenital malformations – ‘neural tube defects’– that result when closure fails. The process of neural tube closure is complex and involves cellular events such as convergent extension, apical constriction and interkinetic nuclear migration, as well as precise molecular control via the non-canonical Wnt/planar cell polarity pathway, Shh/BMP signalling, and the transcription factors Grhl2/3, Pax3, Cdx2 and Zic2. More recently, biomechanical inputs into neural tube morphogenesis have also been identified. Here, we review these cellular, molecular and biomechanical mechanisms involved in neural tube closure, based on studies of various vertebrate species, focusing on the most recent advances in the field.
机译:作为胚胎形态发生的范例,神经管闭合已经在许多脊椎动物中进行了数十年的研究。鉴于严重的先天畸形-“神经管缺损”-在闭合失败时会导致神经畸变,尤其值得关注。神经管闭合的过程很复杂,涉及细胞事件,例如会聚延伸,顶尖收缩和运动间核迁移,以及通过非规范的Wnt /平面细胞极性途径,Shh / BMP信号传导和转录进行的精确分子控制。因素Grhl2 / 3,Pax3,Cdx2和Zic2。最近,也已经确定了神经管形态发生的生物力学输入。在这里,我们基于对各种脊椎动物的研究,重点介绍了该领域的最新进展,回顾了涉及神经管闭合的细胞,分子和生物力学机制。

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