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首页> 外文期刊>Journal of cellular and molecular medicine. >Development of interstitial cells of Cajal in the human digestive tract as the result of reciprocal induction of mesenchymal and neural crest cells
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Development of interstitial cells of Cajal in the human digestive tract as the result of reciprocal induction of mesenchymal and neural crest cells

机译:相互诱导间充质和神经rest细胞诱导人消化道Cajal间质细胞的发育

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摘要

Abstract Neural crest cells (NCC) can migrate into different parts of the body and express their strong inductive potential. In addition, they are multipotent and are able to differentiate into various cell types with diverse functions. In the primitive gut, NCC induce differentiation of muscular structures and interstitial cells of Cajal (ICC), and they themselves differentiate into the elements of the enteric nervous system (ENS), neurons and glial cells. ICC develop by way of mesenchymal cell differentiation in the outer parts of the primitive gut wall around the myenteric plexus (MP) ganglia, with the exception of colon, where they appear simultaneously also at the submucosal border of the circular muscular layer around the submucosal plexus (SMP) ganglia. However, in a complex process of reciprocal induction of NCC and local mesenchyma, c-kit positive precursors are the first to differentiate, representing probably the common precursors of ICC and smooth muscle cells (SMC). C-kit positive precursors could represent a key impact factor regarding the final differentiation of NCC into neurons and glial cells with neurons subsequently excreting stem cell factor (SCF) and other signalling molecules. Under the impact of SCF, a portion of c-kit positive precursors lying immediately around the ganglia differentiate into ICC, while the rest differentiate into SMC.
机译:摘要神经rest细胞(NCC)可以迁移到身体的不同部位并表达其强大的诱导潜力。另外,它们是多能的并且能够分化成具有多种功能的多种细胞类型。在原始肠道中,NCC诱导了Cajal的肌肉结构和间质细胞(ICC)分化,它们本身也分化为肠神经系统(ENS),神经元和神经胶质细胞。 ICC通过间充质细胞分化在肠神经丛(MP)神经节周围的原始肠壁的外部发展,结肠除外,结肠中结肠同时在粘膜下丛周围的圆形肌层的粘膜下边界处同时出现(SMP)神经节。然而,在相互诱导NCC和局部间充质的复杂过程中,c-kit阳性前体是第一个分化的,可能代表了ICC和平滑肌细胞(SMC)的常见前体。 C-kit阳性前体可能代表了有关NCC最终分化为神经元和神经胶质细胞的关键影响因素,神经元随后会分泌干细胞因子(SCF)和其他信号分子。在SCF的影响下,位于神经节周围的一部分c-kit阳性前体分化为ICC,而其余的分化为SMC。

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