Ganz Julia
Department of Integrative Biology, Michigan State University, East Lansing, Michigan.
Dev Dyn. 2018 Feb;247(2):268-278. doi: 10.1002/dvdy.24597. Epub 2017 Oct 23.
The enteric nervous system (ENS) is the largest part of the peripheral nervous system and is entirely neural crest-derived. It provides the intrinsic innervation of the gut, controlling different aspects of gut function, such as motility. In this review, we will discuss key points of Zebrafish ENS development, genes, and signaling pathways regulating ENS development, as well as contributions of the Zebrafish model system to better understand ENS disorders. During their migration, enteric progenitor cells (EPCs) display a gradient of developmental states based on their proliferative and migratory characteristics, and show spatiotemporal heterogeneity based on gene expression patterns. Many genes and signaling pathways that regulate the migration and proliferation of EPCs have been identified, but later stages of ENS development, especially steps of neuronal and glial differentiation, remain poorly understood. In recent years, Zebrafish have become increasingly important to test candidate genes for ENS disorders (e.g., from genome-wide association studies), to identify environmental influences on ENS development (e.g., through large-scale drug screens), and to investigate the role the gut microbiota play in ENS development and disease. With its unique advantages as a model organism, Zebrafish will continue to contribute to a better understanding of ENS development, function, and disease. Developmental Dynamics 247:268-278, 2018. © 2017 Wiley Periodicals, Inc.
肠神经系统(ENS)是外周神经系统的最大组成部分,完全由神经嵴衍生而来。它为肠道提供内在神经支配,控制肠道功能的不同方面,如蠕动。在本综述中,我们将讨论斑马鱼肠神经系统发育的关键点、调控肠神经系统发育的基因和信号通路,以及斑马鱼模型系统对更好理解肠神经系统疾病的贡献。在迁移过程中,肠祖细胞(EPCs)根据其增殖和迁移特性呈现出发育状态梯度,并根据基因表达模式表现出时空异质性。已经鉴定出许多调控肠祖细胞迁移和增殖的基因和信号通路,但肠神经系统发育的后期阶段,尤其是神经元和胶质细胞分化步骤,仍知之甚少。近年来,斑马鱼在测试肠神经系统疾病的候选基因(例如来自全基因组关联研究)、确定环境对肠神经系统发育的影响(例如通过大规模药物筛选)以及研究肠道微生物群在肠神经系统发育和疾病中的作用方面变得越来越重要。作为一种模式生物,斑马鱼凭借其独特优势,将继续有助于更好地理解肠神经系统的发育、功能和疾病。《发育动力学》247:268 - 278,2018年。© 2017威利期刊公司