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Characterization of Enteric Neurons in Wild-Type and Mutant Zebrafish Using Semi-Automated Cell Counting and Co-Expression Analysis

机译:使用半自动细胞计数和共表达分析表征野生型和突变斑马鱼中的肠神经元

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摘要

To characterize fluorescent enteric neurons labeled for expression of cytoplasmic markers in zebrafish mutants, we developed a new MATLAB-based program that can be trained by user input. We used the program to count enteric neurons and to analyze co-expression of the neuronal marker, Elavl, and the neuronal subtype marker, serotonin, in 3D confocal image stacks of dissected whole-mount zebrafish intestines. We quantified the entire population of enteric neurons and the serotonergic subpopulation in specific regions of the intestines of gutwrencher mutant and wild-type sibling larvae. We show a marked decrease in enteric neurons in gutwrencher mutants that is more severe at the caudal end of the intestine. We also show that gutwrencher mutants have the same number of serotonin-positive enteroendocrine cells in the intestine as wild types.
机译:为了表征标记为在斑马鱼突变体中表达细胞质标记的荧光肠神经元,我们开发了一种基于MATLAB的新程序,可以通过用户输入对其进行训练。我们使用该程序对肠道神经元进行计数,并在解剖的整座斑马鱼肠的3D共聚焦图像堆栈中分析神经元标记Elavl和神经元亚型标记物血清素的共表达。我们量化了肠道神经元的整个种群以及古特伦彻突变体和野生型同胞幼虫肠道特定区域的血清素能亚群。我们显示古特伦彻突变体中肠神经元的显着减少,这在肠道的尾端更为严重。我们还显示,gutwrencher突变体在肠道中具有与野生型相同数量的血清素阳性肠内分泌细胞。

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