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在作为c-Kit受体配体的干细胞因子基因发生突变的小鼠中,迷走神经肌内机械感受器出现选择性缺失。

Selective loss of vagal intramuscular mechanoreceptors in mice mutant for steel factor, the c-Kit receptor ligand.

作者信息

Fox Edward A, Phillips Robert J, Byerly Mardi S, Baronowsky Elizabeth A, Chi Michael M, Powley Terry L

机构信息

Behavioral Neurogenetics Laboratory, 1364 Psychological Sciences Building, Department of Psychological Sciences, Purdue University, West Lafayette, IN 47907, USA.

出版信息

Anat Embryol (Berl). 2002 Jul;205(4):325-42. doi: 10.1007/s00429-002-0261-x. Epub 2002 Jun 15.

Abstract

Vagal intramuscular arrays are mechanoreceptors that innervate smooth muscle fibers and intramuscular interstitial cells of Cajal of the proximal GI tract. C-Kit mutant mice that lack intramuscular interstitial cells of Cajal also lack intramuscular arrays. Mice mutant for steel factor, the ligand for the c-Kit receptor, were studied to extend and validate these previous findings and to characterize associated changes in food intake. Injections of wheat germ agglutinin-horseradish peroxidase and of dextran into the nodose ganglion were employed to label intramuscular arrays and intraganglionic laminar endings, the other vagal mechanoreceptors found in the gut wall. These two receptor types were inventoried in wholemounts of the stomach and duodenum using a standardized sampling and quantification regime. Steel mutants exhibited a paucity of normal intramuscular arrays and lacked intramuscular interstitial cells of Cajal in the forestomach, whereas their intraganglionic laminar endings appeared normal in number, distribution, and morphology. These observations suggest that intramuscular array losses in steel and c-Kit mutants are specific and result from the elimination of the intramuscular interstitial cells of Cajal, the effect common to both mutations, not from interactions peculiar to background strains or non-specific effects. Double-labeling analyses of intramuscular arrays and intramuscular interstitial cells of Cajal reinforced the hypothesis based on previous findings in the c-Kit mice that these interstitial cells have a trophic effect on intramuscular array development and/or maintenance. Finally, meal pattern analyses revealed decreased meal size and increased meal frequency in steel mutants, with normal daily intake. These alterations suggest short-term feeding controls are affected by the loss of intramuscular arrays and/or intramuscular interstitial cells of Cajal, though long-term controls are unimpaired.

摘要

迷走神经肌内排列是一种机械感受器,它支配近端胃肠道的平滑肌纤维和肌内 Cajal 间质细胞。缺乏肌内 Cajal 间质细胞的 C-Kit 突变小鼠也缺乏肌内排列。对 c-Kit 受体的配体——钢因子突变的小鼠进行了研究,以扩展和验证这些先前的发现,并描述食物摄入量的相关变化。将小麦胚凝集素 - 辣根过氧化物酶和葡聚糖注射到结状神经节中,用于标记肌内排列和神经节内层状末梢,后者是在肠壁中发现的另一种迷走神经机械感受器。使用标准化的采样和定量方法,对胃和十二指肠的整装标本中的这两种受体类型进行了清点。钢因子突变体的正常肌内排列稀少,前胃中缺乏肌内 Cajal 间质细胞,而它们的神经节内层状末梢在数量、分布和形态上看起来正常。这些观察结果表明,钢因子和 C-Kit 突变体中肌内排列的缺失是特异性的,是由于肌内 Cajal 间质细胞的消除所致,这是两种突变的共同效应,而非背景菌株特有的相互作用或非特异性效应。对肌内排列和肌内 Cajal 间质细胞的双重标记分析强化了基于先前在 C-Kit 小鼠中的发现而提出的假设,即这些间质细胞对肌内排列的发育和 / 或维持具有营养作用。最后,进食模式分析显示,钢因子突变体的餐量减少,进餐频率增加,而每日摄入量正常。这些改变表明,尽管长期控制未受影响,但短期进食控制受到肌内排列和 / 或肌内 Cajal 间质细胞缺失的影响。

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