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猫食管下括约肌的胆碱能反应存在区域差异。

Cholinergic responses in the cat lower esophageal sphincter show regional variation.

作者信息

Preiksaitis H G, Tremblay L, Diamant N E

机构信息

Department of Medicine and Physiology, University of Toronto, Ontario, Canada.

出版信息

Gastroenterology. 1994 Feb;106(2):381-8. doi: 10.1016/0016-5085(94)90596-7.

Abstract

BACKGROUND/AIMS: The lower esophageal sphincter (LES) pressure in humans is asymmetric; the highest pressure and the most significant cholinergic contribution occurs toward the left. The basis of this asymmetry was examined using the cat as a model.

METHODS

The LES pressure profile was determined using a manometry catheter with four ports oriented at right angles. The LES was dissected into right and left halves with the latter including a contribution from the oblique gastric sling fibers. Isometric tension responses were studied in vitro.

RESULTS

In vivo, both the initial LES pressure (31.8 +/- 4.0 mm Hg) and the decrease (79.9% +/- 6.4%) after intravenous atropine (100 micrograms/kg) were greatest in the leftward direction. In vitro, both halves of the LES developed similar spontaneous tension, but the increase in tension to carbachol was twofold greater on the left than the right. Eserine increased and atropine decreased initial tension by 25%-30% in both. Strips from either side relaxed in response to electrical stimulation but the response was more complete in strips from the right, whereas sodium nitroprusside produced similar relaxation in both.

CONCLUSIONS

Regional differences in the LES pressure and its cholinergic component can be accounted for by differences in the in vitro properties of the LES muscle fiber groups.

摘要

背景/目的:人类食管下括约肌(LES)压力是不对称的;最高压力以及胆碱能的最大贡献出现在左侧。本研究以猫为模型,探讨这种不对称性的基础。

方法

使用带有四个呈直角排列端口的测压导管测定LES压力分布。将LES分为右半部分和左半部分,左半部分包括来自胃斜行吊带纤维的部分。在体外研究等长张力反应。

结果

在体内,静脉注射阿托品(100微克/千克)后,初始LES压力(31.8±4.0毫米汞柱)和压力下降幅度(79.9%±6.4%)在左侧方向均最大。在体外,LES的两半产生相似的自发张力,但卡巴胆碱引起的左侧张力增加是右侧的两倍。毒扁豆碱使两侧的初始张力增加25%-30%,阿托品使两侧的初始张力降低。两侧的肌条对电刺激均有舒张反应,但右侧肌条的反应更完全,而硝普钠在两侧产生相似的舒张作用。

结论

LES压力及其胆碱能成分的区域差异可由LES肌纤维群体外特性的差异来解释。

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