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[阿片受体在曲美布汀作用方式中的参与]

[Involvement of opiate receptors in the mode of action of trimebutine].

作者信息

Pascaud X, Roman F, Petoux F, Vauche D, Junien J L

出版信息

Gastroenterol Clin Biol. 1987;11(3 Pt 2):77B-81B.

PMID:3038655
Abstract

Several studies in dogs, cats, rabbits and humans have suggested that the motility stimulating properties of trimebutine (TMB) are mediated by peripheral opiate receptors. The present work deals with the capacity of TMB and its N-desmethyl metabolite (NDTMB) to displace mu, delta and kappa specific ligands from their receptors using guinea-pig brain membranes and ileal myenteric plexus synaptosomal membrane preparations. The activity of both compounds on the twitch response induced by transmural stimulation on the guinea-pig ileum as well as the mouse and rabbit vas deferens was also investigated. These preparations have been proposed to be specific for the mu, delta and kappa receptor subtypes respectively. TMB (0.2 to 1.8 microM) and NDTMB (0.3 to 6 microM) displayed a good affinity for all receptor subtypes in brain and myenteric plexus preparations. Both compounds also inhibited the twitch response of all three isolated organ preparations. The decreasing order of IC50's of TMB ranged from 0.75 microM in the guinea-pig ileum to 7.1 and 39 microM in the vas deferens of the rabbit and the mouse respectively. These results indicate that TMB and NDTMB possess mu, delta as well as kappa agonist properties without true specificity for one or the other of these subtypes. They also confirm that activation of peripheral mu, delta and kappa opiate receptors mediate the gastrointestinal motility effect of TMB.

摘要

多项针对犬、猫、兔及人类的研究表明,曲美布汀(TMB)的促动力特性是由外周阿片受体介导的。本研究利用豚鼠脑膜和回肠肌间神经丛突触体膜制剂,探讨了TMB及其N -去甲基代谢物(NDTMB)从其受体上置换μ、δ和κ特异性配体的能力。还研究了这两种化合物对豚鼠回肠以及小鼠和兔输精管经壁刺激诱导的抽搐反应的活性。这些制剂分别被认为对μ、δ和κ受体亚型具有特异性。TMB(0.2至1.8微摩尔)和NDTMB(0.3至6微摩尔)对脑和肌间神经丛制剂中的所有受体亚型均表现出良好的亲和力。这两种化合物还抑制了所有三种离体器官制剂的抽搐反应。TMB的IC50值递减顺序从豚鼠回肠中的0.75微摩尔到兔和小鼠输精管中的7.1和39微摩尔不等。这些结果表明,TMB和NDTMB具有μ、δ以及κ激动剂特性,对这些亚型中的一种或另一种没有真正的特异性。它们还证实,外周μ、δ和κ阿片受体的激活介导了TMB的胃肠动力效应。

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