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A new high-content model system for studies of gastrointestinal transit: the zebrafish.

机译:用于胃肠运输研究的新的高含量模型系统:斑马鱼。

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The zebrafish gastrointestinal (GI) tract displays an anatomy and cellular architecture that is similar to the human GI tract, with concentric layers of inner epithelia, connective tissue, circular muscle and outer longitudinal muscle layers. Propulsion of luminal content results from the integrated activity of smooth muscle cells, enteric neurons and the interstitial cells of Cajal (ICC). Zebrafish larvae are transparent and propagating contractions in the entire GI tract are easily visualized. A new moderate-throughput zebrafish-based GI transit assay is described in this issue of Neurogastroenterology and Motility. This assay utilizes intact zebrafish larvae which contain essential regulatory elements (ICC and enteric neurons). Forward genetic analysis, which identifies genes underlying specific phenotypes, is possible using the zebrafish system. The zebrafish model system compliments existing models for studies of GI motility and will contribute to the understanding of the regulation of GI motility, and to identification of novel drug targets.
机译:斑马鱼胃肠道(GI)显示出与人胃肠道相似的解剖结构和细胞结构,内同上层,结缔组织,环形肌和纵向外肌层同心。腔内物质含量的提高是由平滑肌细胞,肠神经元和Cajal间质细胞(ICC)的整合活动引起的。斑马鱼幼虫是透明的,整个胃肠道中的繁殖收缩很容易观察到。在本期《神经胃肠病学和运动学》中介绍了一种新的中等通量基于斑马鱼的胃肠道转运测定法。该测定法利用完整的斑马鱼幼虫,其中包含必需的调控元件(ICC和肠神经元)。使用斑马鱼系统可以进行正向遗传分析,从而鉴定出特定表型的潜在基因。斑马鱼模型系统补充了现有的胃肠动力研究模型,将有助于对胃肠动力调节的理解,并有助于确定新的药物靶标。

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