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发育中的肠神经系统中的自发性钙波。

Spontaneous calcium waves in the developing enteric nervous system.

作者信息

Hao Marlene M, Bergner Annette J, Hirst Caroline S, Stamp Lincon A, Casagranda Franca, Bornstein Joel C, Boesmans Werend, Vanden Berghe Pieter, Young Heather M

机构信息

Department of Anatomy and Neuroscience, University of Melbourne, Australia; Laboratory for Enteric Neuroscience, TARGID, University of Leuven, Belgium.

Department of Anatomy and Neuroscience, University of Melbourne, Australia.

出版信息

Dev Biol. 2017 Aug 1;428(1):74-87. doi: 10.1016/j.ydbio.2017.05.018. Epub 2017 May 18.

Abstract

The enteric nervous system (ENS) is an extensive network of neurons in the gut wall that arises from neural crest-derived cells. Like other populations of neural crest cells, it is known that enteric neural crest-derived cells (ENCCs) influence the behaviour of each other and therefore must communicate. However, little is known about how ENCCs communicate with each other. In this study, we used Ca imaging to examine communication between ENCCs in the embryonic gut, using mice where ENCCs express a genetically-encoded calcium indicator. Spontaneous propagating calcium waves were observed between neighbouring ENCCs, through both neuronal and non-neuronal ENCCs. Pharmacological experiments showed wave propagation was not mediated by gap junctions, but by purinergic signalling via P2 receptors. The expression of several P2X and P2Y receptors was confirmed using RT-PCR. Furthermore, inhibition of P2 receptors altered the morphology of the ENCC network, without affecting neuronal differentiation or ENCC proliferation. It is well established that purines participate in synaptic transmission in the mature ENS. Our results describe, for the first time, purinergic signalling between ENCCs during pre-natal development, which plays roles in the propagation of Ca waves between ENCCs and in ENCC network formation. One previous study has shown that calcium signalling plays a role in sympathetic ganglia formation; our results suggest that calcium waves are likely to be important for enteric ganglia development.

摘要

肠神经系统(ENS)是肠壁内一个广泛的神经元网络,由神经嵴衍生细胞产生。与其他神经嵴细胞群体一样,已知肠神经嵴衍生细胞(ENCCs)会相互影响,因此它们之间必定存在通讯。然而,关于ENCCs如何相互通讯却知之甚少。在本研究中,我们利用钙成像技术,通过使ENCCs表达一种基因编码钙指示剂的小鼠,来检测胚胎肠道中ENCCs之间的通讯。在相邻的ENCCs之间观察到了自发传播的钙波,这些ENCCs包括神经元型和非神经元型。药理学实验表明,波的传播不是由缝隙连接介导的,而是通过P2受体的嘌呤能信号传导介导的。使用RT-PCR证实了几种P2X和P2Y受体的表达。此外,抑制P2受体改变了ENCC网络的形态,但不影响神经元分化或ENCC增殖。众所周知,嘌呤参与成熟ENS中的突触传递。我们的结果首次描述了产前发育期间ENCCs之间的嘌呤能信号传导,其在ENCCs之间的钙波传播和ENCC网络形成中发挥作用。之前的一项研究表明,钙信号传导在交感神经节形成中起作用;我们的结果表明,钙波可能对肠神经节发育很重要。

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