重新审视人类胚胎的神经发育

T. Nakatsu, K. Shiota
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引用次数: 2

摘要

过去,人们普遍认为,人类神经管的闭合始于未来颈部水平,并像拉链扣闭合一样在颅脑和尾部进行。这种连续闭合模型最近受到了挑战,对处于神经发育阶段的人类胚胎的观察显示,人类神经管的闭合始于多个部位。在许多其他动物物种中已经观察到神经管的多位点关闭,但不同物种的神经管关闭的起始位点和过程是不同的。因此,在将实验动物正常和异常的神经发育数据外推到人类身上时,我们应该谨慎。近年来在小鼠遗传学和发育生物学方面的研究表明,神经管缺陷在病因和病理上都具有很大的异质性。导致人类神经管缺陷的基因突变在很大程度上是未知的,但对人类神经管缺陷病例的分子研究及其与小鼠基因组数据的比较应该为人类神经管缺陷提供分子基础。
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Neurulation in the human embryo revisited
ABSTRACT It used to be widely accepted that neural tube closure in the human initiates at the level of the future neck and proceeds both cranially and caudally like zip fastener closing. This continuous closure model was recently challenged, and observation of human embryos at the neurulation stage revealed that the closure of the human neural tube initiates at multiple sites. Multi‐site closure of the neural tube has been observed in many other animal species, but the initiation sites and the process of neural tube closure are variable among species. Therefore we should be careful when extrapolating the data of normal and abnormal neurulation in laboratory animals to the human. Recent studies in mouse genetics and developmental biology have shown that neural tube defects are quite heterogeneous both etiologically and pathogenetically. Gene mutations responsible for human neural tube defects are largely unknown, but molecular studies of human cases of neural tube defects and their comparison with the mouse genome data should provide a molecular basis for human neural tube defects.
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