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褪黑素对肠道运动的影响不依赖于金鱼中氮能系统介导的松弛作用。

Melatonin effects on gut motility are independent of the relaxation mediated by the nitrergic system in the goldfish.

机构信息

Department of Physiology (Animal Physiology II), Faculty of Biology, Complutense University of Madrid, Madrid, Spain.

出版信息

Comp Biochem Physiol A Mol Integr Physiol. 2011 Aug;159(4):367-71. doi: 10.1016/j.cbpa.2011.01.024. Epub 2011 Apr 22.

Abstract

Melatonin is a key neuroendocrine transducer in the circadian organization of vertebrates. However, its role in gastrointestinal physiology has not been explored in depth. In goldfish, a role for melatonin as a modulator of intestinal motility has been reported, whereby it attenuates the cholinergic contraction. The aim of the present work was to investigate this relaxation induced by melatonin in the gut smooth muscle of the goldfish, studying the possible involvement of nitric oxide. An in vitro model of isolated goldfish intestine was used to test the effects on intestinal motility. The addition of melatonin (10 pM-100 μM) to the organ bath relaxed acetylcholine- and serotonin-stimulated gut strips, but no effect was observed on KCl-contracted preparations. The addition of L-NAME (nitric oxide synthase inhibitor) increased the amplitude of the spontaneous slow waves, while sodium nitroprusside (SNP, nitric oxide donor) abolished them. All these results support a role for the nitrergic system in goldfish gut motility. However, neither L-NAME, nor SNP nor the nitric oxide precursor, l-arginine, modified the melatonin relaxing effect. These results highlight the existence of a basal nitrergic tone in the gut of goldfish, where melatonin would exert a calcium-dependent, nitric oxide-independent relaxing effect on serotonergic and cholinergic contraction.

摘要

褪黑素是脊椎动物昼夜节律组织中的关键神经内分泌转导物。然而,其在胃肠道生理学中的作用尚未得到深入探讨。在金鱼中,褪黑素作为肠道动力调节剂的作用已被报道,它可以减弱胆碱能收缩。本研究旨在研究褪黑素对金鱼肠道平滑肌的这种松弛作用,并研究一氧化氮的可能参与。使用离体金鱼肠模型来测试对肠道运动的影响。向器官浴中添加褪黑素(10 pM-100 μM)可松弛乙酰胆碱和 5-羟色胺刺激的肠道带,但对 KCl 收缩制剂无作用。添加 L-NAME(一氧化氮合酶抑制剂)增加了自发缓慢波的幅度,而硝普钠(SNP,一氧化氮供体)则消除了它们。所有这些结果均支持金鱼肠道动力中的硝化能系统的作用。然而,L-NAME、SNP 或一氧化氮前体 l-精氨酸均未改变褪黑素的松弛作用。这些结果突出了金鱼肠道中存在基础硝化能张力,其中褪黑素对 5-羟色胺和胆碱能收缩具有钙依赖性、一氧化氮独立性的松弛作用。

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