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电针对犬胰高血糖素诱导小肠低动力的作用及机制。

Effects and mechanisms of electroacupuncture on glucagon-induced small intestinal hypomotility in dogs.

机构信息

Veterans Research and Education Foundation, VA Medical Center, Oklahoma City, OK, USA.

出版信息

Neurogastroenterol Motil. 2010 Nov;22(11):1217-23, e318. doi: 10.1111/j.1365-2982.2010.01565.x. Epub 2010 Aug 19.

DOI:10.1111/j.1365-2982.2010.01565.x
PMID:20723072
Abstract

BACKGROUND

Little is known on the effect of electroacupuncture (EA) (Br Med J, 2, 1976, 1225) on intestinal motility. The aim of this study was to investigate effects and mechanisms of EA on small intestinal contractions, transit, and slow waves in dogs.

METHODS

Six dogs were equipped with two intestinal cannulas for the measurement of small intestinal contractions and transit. Glucagon was used to induce postprandial intestinal hypomotility. Each dog was studied in five randomized sessions: Control, glucagon, glucagon + EA, glucagon + EA + naloxone, and glucagon + EA + atropine.

KEY RESULTS

1 In the fasting state, EA induced intestinal contractions during motor quiescence (contractile index or CI: 4.4 ± 0.8 VS 8.3 ± 0.7, P < 0.05). 2 In the fed state, EA improved glucagon-induced intestinal hypomotility (CI: 3.8 ± 0.4 VS 6.1 ± 0.6, P < 0.05). 3 Electroacupuncture accelerated intestinal transit delayed by glucagon (67.9 ± 4.3 VS 40.2 ± 5.0 min, P < 0.05). 4 There was a negative correlation between the CI and the total transit time (R(2) = 0.59, P < 0.05). 5 The excitatory effect of EA was blocked by naloxone and partially blocked by atropine. 6 The percentage of normal slow waves was reduced with glucagon (70 ± 2%VS 98 ± 1% at baseline, P = 0.0015). Electroacupuncture normalized impaired slow waves and the effect was blocked by naloxone.

CONCLUSIONS & INFERENCES: Electroacupuncture enhances intestinal contractions during Phase I of the migrating motor complex and glucagon-induced hypomotility in the fed state, and accelerates intestinal transit via the opioid and cholinergic pathways in dogs. Electroacupuncture may have a therapeutic potential for intestinal hypomotility.

摘要

背景

电针(EA)(《英国医学杂志》,1976 年,1225 页)对肠道动力的影响知之甚少。本研究旨在探讨 EA 对犬小肠收缩、转运和慢波的作用及机制。

方法

6 只狗配备了两个用于测量小肠收缩和转运的肠道套管。使用胰高血糖素诱导餐后小肠低动力。每只狗在 5 个随机试验中进行研究:对照、胰高血糖素、胰高血糖素+EA、胰高血糖素+EA+纳洛酮和胰高血糖素+EA+阿托品。

主要结果

  1. 在空腹状态下,EA 在运动静止期引起小肠收缩(收缩指数或 CI:4.4±0.8 对 8.3±0.7,P<0.05)。2. 在进食状态下,EA 改善了胰高血糖素诱导的小肠低动力(CI:3.8±0.4 对 6.1±0.6,P<0.05)。3. EA 加速了胰高血糖素延迟的肠道转运(67.9±4.3 对 40.2±5.0 min,P<0.05)。4. CI 与总转运时间呈负相关(R2=0.59,P<0.05)。5. EA 的兴奋作用被纳洛酮阻断,部分被阿托品阻断。6. 胰高血糖素使正常慢波的百分比降低(70±2%对基础值 98±1%,P=0.0015)。EA 使受损的慢波正常化,该作用被纳洛酮阻断。

结论

在进食状态下,电针增强了 I 相移行性复合运动期间的小肠收缩和胰高血糖素诱导的低动力,并通过犬的阿片和胆碱能途径加速肠道转运。电针可能对肠道低动力具有治疗潜力。

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