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Gastro-electric dysrhythm and lack of gastric interstitial cells of cajal

机译:胃电节律紊乱和卡贾尔胃间质细胞缺乏

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摘要

AIM: The pathophysiology underlying gastrointestinal complications of long-standing diabetes is poorly understood. Recent evidence suggests an important role of intestitial cells of cajal in controlling gastrointestinal motility. The aim of this study was to clarify the changes of ultrastructural characteristics of interstitial cells of cajal in stomach of diabetic gastro-electric dysrhythmic rats.METHODS: Rats were randomly divided into diabetic group and control group, the model of diabetic rats was established by peritoneally injection of streptozotocin. Electrogastrograms were recorded and intestitial cells of cajal in antrum were observed by electrictelescopy after diabetic model rat was established for 3 mo.RESULTS: In the rats of diabetic group, the gastro-electric dysrhythmia was increased compared with control group, the abnormal rhythm index and the cofficient of variation of slow wave frequency were significantly higher than those of normal rats. The number of the gap junctions of interstitial cells of cajal in antrum of diabetic rats was significantly decreased, and the remaining structures were damaged. The organelles were also damaged, and vacuoles were formed.CONCLUSION: It is possible that changes in ultrastructural characteristics of interstitial cells of cajal in stomach are one of the mechanisms underlying gastro-electric dysrhythm in diabetic rats.
机译:目的:人们对长期存在的糖尿病胃肠道并发症的病理生理学知之甚少。最近的证据表明,肠j肠细胞在控制肠胃蠕动中具有重要作用。本研究的目的是阐明糖尿病胃电性心律失常大鼠胃中Cajal间质细胞超微结构特征的变化。方法:将大鼠随机分为糖尿病组和对照组,采用腹膜建立糖尿病大鼠模型。注射链脲佐菌素。建立糖尿病模型大鼠3个月后,记录胃电图,并通过电镜观察胃窦肠小肠细胞。结果:糖尿病组大鼠胃电节律不齐较对照组增加,节律异常和慢波频率变化系数明显高于正常大鼠。糖尿病大鼠胃窦Cajal间质细胞间隙连接的数量明显减少,其余结构受损。结论:胃Cajal间质细胞超微结构特征的改变可能是糖尿病大鼠胃电节律发生的机制之一。

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