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首页> 外文期刊>Life sciences >The NANC relaxation of the human ileal longitudinal and circular muscles is inhibited by MRS 2179, a P2 purinoceptor antagonist.
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The NANC relaxation of the human ileal longitudinal and circular muscles is inhibited by MRS 2179, a P2 purinoceptor antagonist.

机译:P2嘌呤受体拮抗剂MRS 2179抑制了人类回肠纵向和环状肌肉的NANC松弛。

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摘要

AIMS: Functional innervation of the human small intestine may be different from that of experimental animals. These experiments set out to assess the mediating roles of P(2) purinoceptors in the non-adrenergic, non-cholinergic (NANC) relaxation of the human ileum longitudinal and circular muscles. MAIN METHODS: In organ bath experiments NANC relaxations were evoked by electrical field stimulation (EFS). The relaxant effects of ATP and sodium nitroprusside were also examined. KEY FINDINGS: In the longitudinal muscle, relaxation in response to EFS (2 or 10 Hz for 30 s) or the relaxant effect of exogenous ATP were strongly inhibited or abolished, respectively, by the P(2) purinoceptor antagonist MRS 2179 (10 microM). MRS 2179 had a smaller effect at 3 microM. The NANC relaxation was also inhibited by apamin (3 microM), but not by N(G)-nitro-L-arginine (100 microM), an inhibitor of nitric oxide synthesis. Both apamin (3 microM) and MRS 2179 (3 microM, a concentration below the effective range if administered alone) strongly inhibited the NANC response in preparations pretreated with the nitric oxide synthase inhibitor. NANC relaxations of the circular muscle were also inhibited by MRS 2179 (3-10 microM). SIGNIFICANCE: MRS 2179-sensitive P(2) purinoceptors play a mediating role the NANC relaxation in the ileal longitudinal and circular muscle. There seems to be a supra-additive relationship between the purinergic and nitrergic mechanisms in the longitudinal muscle.
机译:目的:人小肠的功能神经支配可能与实验动物的不同。这些实验着手评估P(2)嘌呤受体在人类回肠纵向和环状肌肉的非肾上腺素,非胆碱能(NANC)松弛中的介导作用。主要方法:在器官浴实验中,电场刺激(EFS)引起NANC松弛。还检查了ATP和硝普钠的放松作用。主要发现:在纵向肌肉中,P(2)嘌呤受体拮抗剂MRS 2179(10 microM)分别强烈抑制或消除了对EFS(2或10 Hz,持续30 s)的放松或外源性ATP的放松作用。 )。 MRS 2179在3 microM时效果较小。 apamin(3 microM)也可抑制NANC松弛,但一氧化氮合成抑制剂N(G)-硝基-L-精氨酸(100 microM)则不会。在用一氧化氮合酶抑制剂预处理的制剂中,apamin(3 microM)和MRS 2179(3 microM,如果单独给药,其浓度低于有效范围)都强烈抑制NANC反应。 MRS 2179(3-10 microM)也抑制了环状肌的NANC松弛。意义:MRS 2179敏感的P(2)嘌呤受体在回肠纵向和环形肌肉中NANC松弛中起中介作用。在纵向肌肉中,嘌呤能和硝能机制之间似乎存在超加性关系。

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