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食欲素A对小鼠胃条机械活动的影响。

Influence of orexin A on the mechanical activity of mouse gastric strips.

作者信息

Baccari Maria Caterina, Calamai Franco

机构信息

Department of Physiological Sciences, University of Florence, Viale G.B. Morgagni 63, 50134, Florence, Italy.

出版信息

Regul Pept. 2008 Feb 7;146(1-3):67-72. doi: 10.1016/j.regpep.2007.08.004. Epub 2007 Aug 17.

Abstract

The presence of orexins and orexin receptors has been revealed not only in the central nervous system but also in the gastrointestinal tract. The present study was aimed to investigate the influence of orexin A (OXA) on the mechanical activity of fundal and antral strips of the mouse stomach. In the fundus, electrical field stimulation (EFS) elicited tetrodotoxin (TTX)-sensitive, frequency-dependent contractile responses whose amplitude was markedly reduced by OXA and enhanced by the orexin-1 type receptor antagonist SB-334867. In the presence of the NO synthesis inhibitor L-N(G)-nitro arginine (L-NNA), OXA was no longer effective. Methacholine caused a sustained contracture whose amplitude was not influenced by OXA, TTX or L-NNA. In carbachol-precontracted strips, the neurally-induced relaxant responses elicited during EFS were increased in amplitude by OXA. Antral strips showed a spontaneous contractile activity that was unaffected by TTX or L-NNA and transiently depressed by EFS. OXA did not influence either the spontaneous motility or the EFS-induced effects. The results indicate that OXA exerts region-specific effects and that, in the fundus, depresses EFS-induced contractile responses by acting at the nervous level. It is likely that NO is involved in the effects of the peptide.

摘要

食欲肽和食欲肽受体不仅在中枢神经系统中被发现,在胃肠道中也有发现。本研究旨在探讨食欲肽A(OXA)对小鼠胃底和胃窦条带机械活动的影响。在胃底,电场刺激(EFS)引发了对河豚毒素(TTX)敏感的、频率依赖性的收缩反应,其幅度被OXA显著降低,并被食欲肽-1型受体拮抗剂SB-334867增强。在一氧化氮合成抑制剂L-N(G)-硝基精氨酸(L-NNA)存在的情况下,OXA不再有效。乙酰甲胆碱引起持续挛缩,其幅度不受OXA、TTX或L-NNA的影响。在卡巴胆碱预收缩的条带中,EFS期间引发的神经诱导舒张反应的幅度被OXA增加。胃窦条带表现出自发性收缩活动,不受TTX或L-NNA影响,并被EFS短暂抑制。OXA既不影响自发运动性,也不影响EFS诱导的效应。结果表明,OXA发挥区域特异性作用,并且在胃底,通过在神经水平起作用来抑制EFS诱导的收缩反应。该肽的作用可能涉及一氧化氮。

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