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吗啡引发的犬进食状态下的移行性肌电复合波

Morphine-initiated migrating myoelectric complexes in the fed state in dogs.

作者信息

Sarna S K, Condon R E

出版信息

Gastroenterology. 1984 Apr;86(4):662-9.

PMID:6698367
Abstract

The ingestion of a meal in nonruminants disrupts the cycling of migrating myoelectric complexes for several hours. We investigated the initiation of phase III activity during the postprandial state by morphine. Small intestinal recordings were made from 5 dogs by surgically implanted electrodes. Morphine boluses (5-400 micrograms/kg) were given during the fasted state and after a meal. Morphine initiated premature phase III activity in the fasted state and it also initiated phase III activity in the postprandial state. Motilin did not initiate phase III activity in the postprandial state. The mean durations of morphine-initiated phase III activity in the fasted state and in the postprandial state were not significantly different from that of spontaneous phase III activity; however, morphine-initiated phase III activity in both the fasted and fed states migrated faster than spontaneous phase III activity in the proximal half of small intestine but not in the distal half. The latent period for the initiation of phase III activity was significantly greater 20-40 min after the meal than 2 h after the meal. The minimum dose of morphine required to initiate phase III activity in the fed state decreased progressively after the initial increase until it reached fasted levels 7-10 h after the meal. Spontaneous phase III activity appeared after this period. We conclude that (a) morphine temporarily overcomes the disruption of migrating myoelectric complex cycling after a meal; (b) morphine acts at different sites than motilin to initiate phase III activity; (c) the increased refractoriness of migrating myoelectric complex cycling mechanisms after a meal may play a role in the disruption of migrating myoelectric complex cycling.

摘要

非反刍动物进食一餐会使移行性肌电复合波的周期性中断数小时。我们研究了吗啡在餐后状态下引发Ⅲ期活动的起始情况。通过手术植入电极,对5只狗进行小肠记录。在禁食状态和进食后给予吗啡推注(5 - 400微克/千克)。吗啡在禁食状态下引发过早的Ⅲ期活动,在餐后状态下也引发Ⅲ期活动。胃动素在餐后状态下未引发Ⅲ期活动。吗啡在禁食状态和餐后状态下引发的Ⅲ期活动的平均持续时间与自发Ⅲ期活动的平均持续时间无显著差异;然而,吗啡在禁食和进食状态下引发的Ⅲ期活动在小肠近端半部比自发Ⅲ期活动迁移得更快,但在远端半部并非如此。餐后20 - 40分钟引发Ⅲ期活动的潜伏期明显长于餐后2小时。在进食状态下引发Ⅲ期活动所需的吗啡最小剂量在最初增加后逐渐降低,直到餐后7 - 10小时达到禁食水平。在此之后出现自发Ⅲ期活动。我们得出结论:(a)吗啡可暂时克服餐后移行性肌电复合波周期性的中断;(b)吗啡与胃动素作用于不同位点以引发Ⅲ期活动;(c)餐后移行性肌电复合波循环机制的不应性增加可能在移行性肌电复合波循环的中断中起作用。

相似文献

1
Morphine-initiated migrating myoelectric complexes in the fed state in dogs.吗啡引发的犬进食状态下的移行性肌电复合波
Gastroenterology. 1984 Apr;86(4):662-9.
2
Dose- and time-dependent biphasic response to morphine on intestinal migrating myoelectric complex.吗啡对肠道移行性肌电复合波的剂量和时间依赖性双相反应。
J Pharmacol Exp Ther. 1985 Sep;234(3):814-20.
3
Morphine versus motilin in the initiation of migrating myoelectric complexes.吗啡与胃动素在启动移行性肌电复合波方面的比较
Am J Physiol. 1983 Aug;245(2):G217-20. doi: 10.1152/ajpgi.1983.245.2.G217.
4
Enteric mechanisms of initiation of migrating myoelectric complexes in dogs.犬类移行性肌电复合波起始的肠道机制
Gastroenterology. 1983 Apr;84(4):814-22.
5
Effects of exogenous motilin and morphine on interdigestive gastrointestinal motor activity after total duodenectomy in dogs.外源性胃动素和吗啡对犬全十二指肠切除术后消化间期胃肠运动的影响。
Surgery. 1988 Aug;104(2):317-25.
6
Cause-and-effect relationship between motilin and migrating myoelectric complexes.
Am J Physiol. 1983 Aug;245(2):G277-84. doi: 10.1152/ajpgi.1983.245.2.G277.
7
Mechanism of cycling of migrating myoelectric complexes: effect of morphine.移行性肌电复合波的循环机制:吗啡的作用
Am J Physiol. 1982 Jun;242(6):G588-95. doi: 10.1152/ajpgi.1982.242.6.G588.
8
Nitric oxide inhibits the myoelectric activity of the small intestine in dogs.一氧化氮抑制犬小肠的肌电活动。
J Physiol Pharmacol. 1993 Mar;44(1):31-42.
9
Effects of motilin, somatostatin, and pancreatic polypeptide on the migrating myoelectric complex in pig and dog.胃动素、生长抑素和胰多肽对猪和狗移行性复合肌电的影响。
Gastroenterology. 1982 Jun;82(6):1395-1402.
10
Morphine initiates migrating myoelectric complexes by acting on peripheral opioid receptors.吗啡通过作用于外周阿片受体引发移行性肌电复合波。
Am J Physiol. 1985 Nov;249(5 Pt 1):G557-62. doi: 10.1152/ajpgi.1985.249.5.G557.

引用本文的文献

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