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迷走神经嵴内用于肠神经系统形成的精细尺度差异。

Fine scale differences within the vagal neural crest for enteric nervous system formation.

作者信息

Simkin Johanna E, Zhang Dongcheng, Stamp Lincon A, Newgreen Donald F

机构信息

Murdoch Children's Research Institute, Royal Children's Hospital, Parkville 3052, Victoria, Australia.

Murdoch Children's Research Institute, Royal Children's Hospital, Parkville 3052, Victoria, Australia.

出版信息

Dev Biol. 2019 Feb 1;446(1):22-33. doi: 10.1016/j.ydbio.2018.11.007. Epub 2018 Nov 16.

Abstract

The enteric nervous system is mostly derived from vagal neural crest (NC) cells adjacent to somites (s)1-7. We used in ovo focal fluorescent vital dyes and focal electroporation of fluorophore-encoding plasmids in quail embryos to investigate NC cell migration to the foregut initially and later throughout the entire gut. NC cells of different somite-level origins were largely separate until reaching the foregut at about QE2.5, when all routes converged. By QE3.5, NC cells of different somite-levels became mixed, although s1-s2 NC cells were mainly confined to rostral foregut. Mid-vagal NC-derived cells (s3 and s4 level) arrived earliest at the foregut, and occurred in greatest number. By QE6.5 ENS was present from foregut to hindgut. Mid-vagal NC-derived cells occurred in greatest numbers from foregut to distal hindgut. NC-derived cells of s2, s5, and s6 levels were fewer and were widely distributed but were never observed in the distal hindgut. Rostro-vagal (s1) and caudo-vagal (s7) levels were few and restricted to the foregut. Single somite levels of quail neural tube/NC from s1 to s8 were combined with chick aneural ChE4.5 midgut and hindgut and the ensemble was grown on the chorio-allantoic membrane for 6 days. This tests ENS-forming competence in the absence of intra-segmental competition between NC cells, of differential influences of segmental paraxial tissues, and of positional advantage. All vagal NC-levels, but not s8 level, furnished enteric plexuses in the recipient gut, but the density of both ENS cells in total and neurons was highest from mid-vagal level donors, as was the length colonised. We conclude that the fate and competence for ENS formation of vagal NC sub-levels is not uniform over the vagal level but is biased to favour mid-vagal levels. Overviewing this and prior studies suggests the vagal region is, as in its traditional sense, a natural unit but with complex sub-divisions.

摘要

肠神经系统主要源自与体节(s)1 - 7相邻的迷走神经嵴(NC)细胞。我们在鹌鹑胚胎中使用卵内局部荧光活染料和荧光团编码质粒的局部电穿孔来研究NC细胞最初向前肠的迁移,以及随后在整个肠道中的迁移。不同体节水平起源的NC细胞在很大程度上是分开的,直到大约QE2.5到达前肠时,所有路径才汇合。到QE3.5时,不同体节水平的NC细胞混合在一起,尽管s1 - s2 NC细胞主要局限于前肠头端。迷走神经中段NC衍生的细胞(s3和s4水平)最早到达前肠,且数量最多。到QE6.5时,从十二指肠到后肠都有肠神经系统存在。迷走神经中段NC衍生的细胞在前肠到后肠远端数量最多。s2、s5和s6水平的NC衍生细胞较少,分布广泛,但在后肠远端从未观察到。迷走神经头端(s1)和尾端(s7)水平的细胞很少,局限于前肠。将鹌鹑神经管/NC从s1到s8的单个体节水平与鸡的无神经ChE4.5中肠和后肠结合,然后将其整体在绒毛尿囊膜上培养6天。这测试了在没有NC细胞之间节段内竞争、节段性轴旁组织的不同影响以及位置优势的情况下肠神经系统形成的能力。所有迷走神经NC水平,但不包括s8水平,都在受体肠道中形成了肠丛,但无论是肠神经系统细胞总数还是神经元密度,从中段迷走神经水平供体获得的都是最高的,所定植的长度也是如此。我们得出结论,迷走神经NC亚水平形成肠神经系统的命运和能力在迷走神经水平上并不均匀,而是偏向于中段迷走神经水平。综合这项研究和之前的研究表明,迷走神经区域如传统意义上一样,是一个自然单位,但具有复杂的细分。

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