基础医学与临床 ›› 2018, Vol. 38 ›› Issue (9): 1239-1243.

• 研究论文 • 上一篇    下一篇

便秘型肠易激综合征大鼠结肠黏膜下神经元的变化

费贵军1,胡福境1,2,樊文娟1,梁列新2,方秀才1   

  1. 1. 中国医学科学院 北京协和医学院 北京协和医院
    2. 广西壮族自治区人民医院消化内科
  • 收稿日期:2017-06-27 修回日期:2017-11-07 出版日期:2018-09-05 发布日期:2018-09-10
  • 通讯作者: 方秀才 E-mail:fangxiucai2@aliyun.com
  • 基金资助:
    “IBD-IBS”和IBS-D: 不同疾病相同症状的病理生理机制和干预措施的对比性研究;肠道分泌功能在肠易激综合征发病中的作用

Changes in submucosal plexus neurons of colon in a rat model of irritable bowel syndrome with constipation

  • Received:2017-06-27 Revised:2017-11-07 Online:2018-09-05 Published:2018-09-10
  • Contact: Xiucai FANG E-mail:fangxiucai2@aliyun.com

摘要: 目的 研究便秘型肠易激综合征(IBS-C)模型大鼠结肠黏膜下神经丛中兴奋性和抑制性神经元的变化。方法 用冰水灌胃法建立IBS-C大鼠模型,并设对照组。取肠道标本制作结肠黏膜下神经丛全层铺片标本;用免疫荧光多重染色技术检测黏膜下神经丛神经元及其活化状态;计数神经元的数量以及活化的特异性阳性神经元的总数和比例。 结果 IBS-C组(n=7)大鼠粪便粒数减少且含水量下降,肠道传输减慢。结肠黏膜下神经丛每高倍视野神经元总数和活化神经元总数均显著增多(P<0.05);活化的胆碱乙酰转移酶免疫反应性(IR)阳性神经元比例和活化的血管活性肠肽IR阳性神经元比例则显著降低(P<0.05);活化的NOS-IR阳性神经元比例显著增高(P<0.05)。 结论 结肠黏膜下神经丛的变化可能在IBS-C的发病中起重要作用。

关键词: 肠易激综合征, 肠神经系统, 黏膜下神经元

Abstract: Objective To investigate the changes of excitatory and inhibitory neurons in submucosal plexus (SMP) of colon in a rat model of IBS-C. Methods The rat model of IBS-C was established by intragastric perfusion with icy water. Whole-thickness colon specimens were collected to prepare submucosal layer with intact SMP. Multiple immunofluorescence staining technique was used for detecting the total numbers of SMP neurons and ganglia, the numbers of the SMP neurons expressing specific neurochemical markers (ChAT, VIP, NOS), and the activation status of SMP neurons. Results Compared with control group, the intestinal transmission rate of model rats was slower, and the number of fecal granules and water content of feces were less than that of controls. In the colon SMP of rat with IBS-C( n=7), the total number of SMP neurons/HPF and the total number of activated neuron/HPF increased significantly(P<0.05); the percentages of activated ChAT-IR neurons and activated VIP-IR neurons decreased significantly, and the percentage of activated NOS-IR neurons increased significantly. Conclusions The changes of colonic SMP may play an important role in the pathogenesis of IBS-C.

Key words: irritable bowel syndrome, enteric nervous system, submucosal neuron

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