Laboratory for Enteric NeuroScience (LENS), Translational Research Center for GastroIntestinal Disorders, University of Leuven , Leuven, Belgium ; Translational Research Center for GastroIntestinal Disorders (TARGID), Department of Clinical and Experimental Medicine, University of Leuven , Leuven, Belgium.
Front Cell Neurosci. 2013 Oct 21;7:183. doi: 10.3389/fncel.2013.00183. eCollection 2013.
The enteric nervous system (ENS) is a network of neurons and glia within the wall of the gastrointestinal tract that is able to control many aspects of digestive function independently from the central nervous system. Enteric glial cells share several features with astrocytes and are closely associated with enteric neurons and their processes both within enteric ganglia, and along interconnecting fiber bundles. Similar to other parts of the nervous system, there is communication between enteric neurons and glia; enteric glial cells can detect neuronal activity and have the machinery to intermediate neurotransmission. However, due to the close contact between these two cell types and the particular characteristics of the gut wall, the recording of enteric glial cell activity in live imaging experiments, especially in the context of their interaction with neurons, is not straightforward. Most studies have used calcium imaging approaches to examine enteric glial cell activity but in many cases, it is difficult to distinguish whether observed transients arise from glial cells, or neuronal processes or varicosities in their vicinity. In this technical report, we describe a number of approaches to unravel the complex neuron-glia crosstalk in the ENS, focusing on the challenges and possibilities of live microscopic imaging in both animal models and human tissue samples.
肠神经系统(ENS)是胃肠道壁内的神经元和神经胶质细胞网络,能够独立于中枢神经系统控制许多消化功能。肠胶质细胞与星形胶质细胞具有一些共同特征,并与肠神经元及其在肠神经节内和相互连接的纤维束中的过程密切相关。与神经系统的其他部分类似,肠神经元和胶质细胞之间存在通讯;肠胶质细胞可以检测神经元活动,并具有中间神经传递的机制。然而,由于这两种细胞类型之间的紧密接触以及肠道壁的特殊特征,在活体成像实验中记录肠胶质细胞的活动,特别是在它们与神经元相互作用的情况下,并不简单。大多数研究都使用钙成像方法来研究肠胶质细胞的活动,但在许多情况下,很难区分观察到的瞬态是来自胶质细胞,还是来自其附近的神经元过程或神经末梢。在本技术报告中,我们描述了几种方法来揭示 ENS 中的复杂神经元-胶质细胞相互作用,重点介绍了在动物模型和人体组织样本中进行活体显微镜成像的挑战和可能性。