首页> 外文期刊>Developmental dynamics: an official publication of the American Association of Anatomists >Three-dimensional slice cultures from murine fetal gut for investigations of the enteric nervous system.
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Three-dimensional slice cultures from murine fetal gut for investigations of the enteric nervous system.

机译:鼠胎儿肠道的三维切片培养物,用于研究肠神经系统。

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摘要

Three-dimensional intestinal cultures offer new possibilities for the examination of growth potential, analysis of time specific gene expression, and spatial cellular arrangement of enteric nervous system in an organotypical environment. We present an easy to produce in vitro model of the enteric nervous system for analysis and manipulation of cellular differentiation processes. Slice cultures of murine fetal colon were cultured on membrane inserts for up to 2 weeks without loss of autonomous contractility. After slice preparation, cultured tissue reorganized within the first days in vitro. Afterward, the culture possessed more than 35 cell layers, including high prismatic epithelial cells, smooth muscle cells, glial cells, and neurons analyzed by immunohistochemistry. The contraction frequency of intestinal slice culture could be modulated by the neurotransmitter serotonin and the sodium channel blocker tetrodotoxin. Coculture experiments with cultured neurospheres isolated from enhanced green fluorescent protein (eGFP) transgenic mice demonstrated that differentiating eGFP-positive neurons were integrated into the intestinal tissue culture. This slice culture model of enteric nervous system proved to be useful for studying cell-cell interactions, cellular signaling, and cell differentiation processes in a three-dimensional cell arrangement.
机译:三维肠培养为器官典型环境中的生长潜力检查,特定时间基因表达分析以及肠道神经系统的空间细胞排列提供了新的可能性。我们提出了一种易于产生的肠道神经系统体外模型,用于分析和操纵细胞分化过程。将鼠胎儿结肠的切片培养物在膜插入物上培养长达2周,而不会失去自主收缩能力。切片制备后,培养的组织在体外的头几天会重新组织。之后,该培养物具有超过35个细胞层,包括高棱柱状上皮细胞,平滑肌细胞,神经胶质细胞和通过免疫组织化学分析的神经元。肠切片培养物的收缩频率可以由神经递质5-羟色胺和钠通道阻滞剂河豚毒素调节。从增强的绿色荧光蛋白(eGFP)转基因小鼠中分离出的培养神经球的共培养实验表明,分化的eGFP阳性神经元已整合到肠道组织培养物中。肠神经系统的这种切片培养模型被证明可用于研究三维细胞排列中的细胞间相互作用,细胞信号传导和细胞分化过程。

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