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On the Enigma of the Human Neurenteric Canal

机译:在人类神经管道的emigma上

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Existence and biomedical relevance of the neurenteric canal, a transient midline structure during early neurulation in the human embryo, have been controversially discussed for more than a century by embryologists and clinicians alike. In this study, the authors address the long-standing enigma by high-resolution histology and three-dimensional reconstruction using new and historic histological sections of 5 human 17- to 21-day-old embryos and of 2 marmoset monkey embryos of the species Callithrix jacchus at corresponding stages. The neurenteric canal presents itself as the classical vertical connection between the amniotic cavity and the yolk sac cavity and is lined (a) craniolaterally by a horse-shoe-shaped "hinge of involuting notochordal cells" within Hensen's node and (b) caudally by the receding primitive streak epiblast dorsally and by notochordal plate epithelium ventrally, the latter of which covered the (longitudinal) notochordal canal on its ventral side at the preceding stage. Furthermore, asymmetric parachordal nodal expression in Callithrix and morphological asymmetries within the nodes of the other specimens suggest an early non-cilium-dependent left-right symmetry breaking mode previously postulated for other mammals. We conclude that structure and position of the mammalian neurenteric canal support the notion of its homology with the reptilian blastopore as a whole and with a dorsal segment of the blastopore in amphibia. These new features of the neurenteric canal may further clarify the aetiology of foetal malformations such as junctional neurulation defects, neuroendodermal cysts, and the split notochord syndrome. (c) 2018 S. Karger AG, Basel
机译:神经元管的存在和生物医学相关性,在人胚胎早期神经中的瞬时中线结构,胚胎和临床医生相似地讨论了多世纪以上的多个世纪。在这项研究中,作者通过使用5人17-至21天胚胎的新的和历史组织学部分和物种的21天胚胎和2种Calithrix的Marmoset猴胚胎,通过高分辨率组织学和三维重建来解决长期的谜。在相应阶段的贾海奇。神经元管本身呈现为羊膜腔和卵黄囊腔之间的经典垂直连接,并通过Hensen节点和(b)内的马靴形状的“孔中的旁观孔细胞的铰链突出(a)横向横向将原始的条纹表带介面介于介面和诺奇曲线上皮,后者在前阶段的腹侧覆盖(纵向)旁观。此外,其他标本的节点内的Callithrix和形态不对称中的不对称慢慢慢朗表达表明,预先假定用于其他哺乳动物的早期非纤毛依赖性左右对称断裂模式。我们得出结论,哺乳动物神经化管的结构和位置支持其与爬行动物底囊的同源性的概念整体,并在两栖动物中囊囊囊囊肿的背部。这些神经元管的新特征可以进一步阐明胎儿畸形等胎儿畸形,如结术缺陷,神经腺癌囊肿和分裂脊索综合征。 (c)2018年S. Karger AG,巴塞尔

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