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胃饥饿素调节自由活动的清醒小鼠的胃Ⅲ期样收缩。

Ghrelin regulates gastric phase III-like contractions in freely moving conscious mice.

作者信息

Zheng J, Ariga H, Taniguchi H, Ludwig K, Takahashi T

机构信息

Department of Surgery, Medical College of Wisconsin, Milwaukee, WI, USA.

出版信息

Neurogastroenterol Motil. 2009 Jan;21(1):78-84. doi: 10.1111/j.1365-2982.2008.01179.x. Epub 2008 Aug 28.

Abstract

In humans and dogs, motilin regulates phase III contractions of migrating motor complex (MMC) in the interdigestive state, while ghrelin regulates MMC in rats. It still remains unclear whether ghrelin regulates phase III contractions of the mouse stomach. A miniature strain gauge transducer was sutured on the antrum to detect circular muscle contractions and gastric contractions of the interdigestive state were evaluated. Effects of ghrelin, a ghrelin receptor antagonist, and atropine on spontaneous gastric contractions were studied in freely moving conscious mice. Similar to the rat stomach, phase III-like contractions were observed in the interdigestive state, which disappeared immediately after the feeding. Ghrelin augmented spontaneous phase III-like contractions, while growth-hormone secretagogue receptor antagonists and atropine abolished the occurrence of spontaneous phase III-like contractions. The spontaneous phase III-like contractions were no more observed in vagotomized mice. These results suggest that ghrelin regulates phase III-like contractions in mice stomach via its own receptors. Ghrelin-induced gastric phase III-like contractions are mediated via vagal cholinergic pathways in mice. Our recording system of mice gastric motility may be useful to study the functional changes in gene knockout mice, in the future.

摘要

在人和狗中,胃动素调节消化间期移行性运动复合波(MMC)的Ⅲ期收缩,而胃饥饿素调节大鼠的MMC。胃饥饿素是否调节小鼠胃的Ⅲ期收缩仍不清楚。将微型应变片传感器缝合在胃窦上以检测环形肌收缩,并评估消化间期的胃收缩。在自由活动的清醒小鼠中研究了胃饥饿素、胃饥饿素受体拮抗剂和阿托品对自发性胃收缩的影响。与大鼠胃相似,在消化间期观察到类似Ⅲ期的收缩,喂食后立即消失。胃饥饿素增强自发性类似Ⅲ期的收缩,而生长激素促分泌素受体拮抗剂和阿托品则消除自发性类似Ⅲ期收缩的发生。在迷走神经切断的小鼠中不再观察到自发性类似Ⅲ期的收缩。这些结果表明,胃饥饿素通过其自身受体调节小鼠胃的类似Ⅲ期的收缩。胃饥饿素诱导的胃类似Ⅲ期收缩在小鼠中通过迷走胆碱能途径介导。我们的小鼠胃动力记录系统将来可能有助于研究基因敲除小鼠的功能变化。

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