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脑啡肽和纳洛酮对人体胃酸、血清胃泌素及胰多肽浓度的影响。

Effect of enkephalin and naloxone on gastric acid and serum gastrin and pancreatic polypeptide concentrations in humans.

作者信息

Konturek S J, Kwiecień N, Obtułowicz W, Swierczek J, Bielański W, Oleksy J, Coy D H

出版信息

Gut. 1983 Aug;24(8):740-5. doi: 10.1136/gut.24.8.740.

Abstract

The effects of a synthetic enkephalin analogue with prolonged opioid activity, D-ala-2-enkephalin (ala-enk) and naloxone given alone or in combination, on vagally, pentagastrin- and histamine-induced gastric secretion and plasma hormonal responses to vagal stimulation have been studied in healthy subjects. D-ala-2-enkephalin reduced basal gastric acid and pepsin secretion, and caused a dose-dependent inhibition of gastric secretory responses to modified sham-feeding and pentagastrin but not to histamine. It increased serum gastrin concentration and suppressed plasma pancreatic polypeptide response to modified sham-feeding. Naloxone alone at lower dose levels did not affect gastric secretion and plasma hormonal concentrations but at higher doses it reduced both basal and modified sham-feeding-induced secretion. When combined with ala-enk it reversed in part gastric secretory and plasma hormonal changes induced by this peptide during modified sham-feeding and pentagastrin stimulation. These results indicate that (1) stable enkaphalin analogue inhibits basal and vagally or pentagastrin-induced gastric secretion, and affects plasma hormonal response to vagal stimulation, at least in part, via activation of opioid receptors and (2) endogenous opioid substances may be involved in the stimulation of gastric secretion in man.

摘要

在健康受试者中,研究了具有延长阿片样物质活性的合成脑啡肽类似物D-ala-2-脑啡肽(ala-脑啡肽)和纳洛酮单独或联合使用,对迷走神经、五肽胃泌素和组胺诱导的胃分泌以及迷走神经刺激引起的血浆激素反应的影响。D-ala-2-脑啡肽降低基础胃酸和胃蛋白酶分泌,并对假饲和五肽胃泌素引起的胃分泌反应产生剂量依赖性抑制,但对组胺引起的反应无抑制作用。它增加血清胃泌素浓度,并抑制假饲引起的血浆胰多肽反应。较低剂量的纳洛酮单独使用不影响胃分泌和血浆激素浓度,但较高剂量时可降低基础分泌和假饲诱导的分泌。当与ala-脑啡肽联合使用时,它部分逆转了该肽在假饲和五肽胃泌素刺激期间引起的胃分泌和血浆激素变化。这些结果表明:(1)稳定的脑啡肽类似物抑制基础分泌以及迷走神经或五肽胃泌素诱导的胃分泌,并至少部分通过阿片样物质受体的激活影响迷走神经刺激引起的血浆激素反应;(2)内源性阿片样物质可能参与人类胃分泌的刺激过程。

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