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Why are enteric ganglia so small? Role of differential adhesion of enteric neurons and enteric neural crest cells.

机译:肠神经节为什么这么小?肠神经元和肠神经c细胞差异粘附的作用。

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摘要

The avian enteric nervous system (ENS) consists of a vast number of unusually small ganglia compared to other peripheral ganglia. Each ENS ganglion at mid-gestation has a core of neurons and a shell of mesenchymal precursor/glia-like enteric neural crest (ENC) cells. To study ENS cell ganglionation we isolated midgut ENS cells by HNK-1 fluorescence-activated cell sorting (FACS) from E5 and E8 quail embryos, and from E9 chick embryos. We performed cell-cell aggregation assays which revealed a developmentally regulated functional increase in ENS cell adhesive function, requiring both Ca 2+ -dependent and independent adhesion. This was consistent with N-cadherin and NCAM labelling. Neurons sorted to the core of aggregates, surrounded by outer ENC cells, showing that neurons had higher adhesion than ENC cells. The outer surface of aggregates became relatively non-adhesive, correlating with low levels of NCAM and N-cadherin on this surface of the outer non-neuronal ENC cells. Aggregation assays showed that ENS cells FACS selected for NCAM-high and enriched for enteric neurons formed larger and more coherent aggregates than unsorted ENS cells. In contrast, ENS cells of the NCAM-low FACS fraction formed small, disorganised aggregates.  This suggests a novel mechanism for control of ENS ganglion morphogenesis where i) differential adhesion of ENS neurons and ENC cells controls the core/shell ganglionic structure and ii) the ratio of neurons to ENC cells dictates the equilibrium ganglion size by generation of an outer non-adhesive surface.
机译:与其他外围神经节相比,禽肠神经系统(ENS)由大量异常小的神经节组成。妊娠中期每个ENS神经节都有一个神经元核心和一个间充质前体/神经胶质样肠神经c(ENC)细胞外壳。为了研究ENS细胞的神经节化作用,我们通过HNK-1荧光激活细胞分选(FACS)从E5和E8鹌鹑胚胎以及E9雏鸡胚胎分离了中肠ENS细胞。我们进行了细胞-细胞聚集测定,揭示了ENS细胞粘附功能的发育调控功能增强,需要同时依赖Ca 2+ 和独立粘附。这与N-钙黏着蛋白和NCAM标记一致。神经元排列到聚集体的核心,周围是外部ENC细胞,表明神经元比ENC细胞具有更高的粘附力。聚集体的外表面变得相对不粘附,这与外部非神经元ENC细胞的该表面上的NCAM和N-钙黏着蛋白含量低有关。聚集测定表明,与未分选的ENS细胞相比,被选为NCAM高且富集于肠神经元的ENS细胞FACS形成了更大,更连贯的聚集体。相反,低NCAM的NACS的ENS细胞形成小的,混乱的聚集体。这表明了一种控制ENS神经节形态发生的新机制,其中i)ENS神经元和ENC细胞的差异粘附控制了核/壳神经节结构,并且ii)神经元与ENC细胞的比例决定了外部神经元的生成决定了平衡神经节的大小。 -粘性表面。

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