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在肠神经节细胞发生中,细胞黏附差异的作用。

On the role of differential adhesion in gangliogenesis in the enteric nervous system.

机构信息

Department of Mathematics and Statistics, University of Melbourne, Victoria 3010, Australia.

出版信息

J Theor Biol. 2011 Oct 21;287:148-59. doi: 10.1016/j.jtbi.2011.07.013. Epub 2011 Jul 28.

Abstract

A defining characteristic of the normal development of the enteric nervous system (ENS) is the existence of mesoscale patterned entities called ganglia. Ganglia are clusters of neurons with associated enteric neural crest (ENC) cells, which form in the simultaneously growing gut wall. At first the precursor ENC cells proliferate and gradually differentiate to produce the enteric neurons; these neurons form clusters with ENC scattered around and later lying on the periphery of neuronal clusters. By immunolabelling neural cell-cell adhesion molecules, we infer that the adhesive capacity of neurons is greater than that of ENC cells. Using a discrete mathematical model, we test the hypothesis that local rules governing differential adhesion of neuronal agents and ENC agents will produce clusters which emulate ganglia. The clusters are relatively stable, relatively uniform and small in size, of fairly uniform spacing, with a balance between the number of neuronal and ENC agents. These features are attained in both fixed and growing domains, reproducing respectively organotypic in vitro and in vivo observations. Various threshold criteria governing ENC agent proliferation and differentiation and neuronal agent inhibition of differentiation are important for sustaining these characteristics. This investigation suggests possible explanations for observations in normal and abnormal ENS development.

摘要

正常肠神经系统 (ENS) 发育的一个特征是存在称为神经节的中尺度模式实体。神经节是神经元集群,伴有相关的肠神经嵴 (ENC) 细胞,它们在同时生长的肠道壁中形成。最初,前体 ENC 细胞增殖并逐渐分化产生肠神经元;这些神经元与周围分散的 ENC 形成集群,然后位于神经元集群的外围。通过免疫标记神经细胞-细胞黏附分子,我们推断神经元的黏附能力大于 ENC 细胞。使用离散数学模型,我们检验了以下假设:即支配神经元和 ENC 细胞的差异黏附的局部规则将产生模拟神经节的集群。这些集群相对稳定、均匀且体积小,具有相当均匀的间距,神经元和 ENC 细胞的数量平衡。这些特征在固定和生长的区域都能达到,分别再现了体外器官型和体内观察到的情况。控制 ENC 细胞增殖和分化以及神经元抑制分化的各种阈值标准对于维持这些特征很重要。这项研究为正常和异常 ENS 发育的观察结果提供了可能的解释。

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