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Possible functional modulation by acetylcholine of nitric oxide on guinea pig isolated trachea.

机译:一氧化氮对豚鼠离体气管的可能的功能调节。

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The aim of this study was to evaluate whether acetylcholine induces NO release. We determined the responses on the cholinergic component of the response to electrical field stimulation (EFS) the effects of L-nitro-arginine-methyl-ester (L-NAME; 1 mM), an inhibitor of NO synthase, of L-Arginine (L-ARG; 1 mM), a precursor of NO synthesis, and methoctramine (0.01-0.1-1 microM), an antagonist of M2 receptors, alone or associated with L-NAME. The experiments were performed on guinea pig isolated intact- or denuded-epithelium tracheal rings contracted in a frequency-dependent manner to EFS. At the maximum frequency tested (30 Hz), the contractile response elicited was 60.36 +/- 0.61% of acetylcholine (100 microM) contraction, while the maximal relaxant effect induced by EFS was -28.40 +/- 0.61% in epithelium intact preparations. A pretreatment with L-NAME significantly (P<0.05) increased the contraction (76.08 +/- 1.39%) and reduced the relaxation elicited by EFS. L-NAME effect on both EFS induced responses were statistically (P<0.05) reversed by the association L-NAME + L-ARG. Methoctramine (1 microM) enhanced contractile (P<0.05) (79.20 +/- 2.21%), as well as relaxant responses (-38.73 +/- 0.99%) elicited by EFS in guinea pig epithelium-intact tracheal rings; in a separate series of experiments, performed on guinea pig epithelium-intact rings, L-NAME increased the contractile responses to methoctramine (82.6 +/- 2.31), but reduced the relaxant ones (26.38 +/- 1.29). In contrast, at the maximum frequency tested, it increased only the contractile response, but not modify the relaxant one, in epithelium denuded rings. In conclusion, the present data showed that the release of acetylcholine from postganglionic cholinergic nerves plays an important role on NO formation and this effect may be modulate by epithelium.
机译:这项研究的目的是评估乙酰胆碱是否诱导NO释放。我们确定了电场刺激(EFS)对L-精氨酸(NO合酶的抑制剂)L-硝基-精氨酸甲酯(L-NAME; 1 mM)的影响对胆碱能成分的响应L-ARG; 1 mM)(NO合成的前体)和甲基辛巴胺(0.01-0.1-1 microM)(单独或与L-NAME相关的M2受体拮抗剂)。实验是在豚鼠上分离的完整或裸露的上皮气管环以频率依赖性方式收缩至EFS。在测试的最高频率(30 Hz)下,引起的收缩反应为乙酰胆碱(100 microM)收缩的60.36 +/- 0.61%,而在完整的上皮制剂中EFS诱导的最大松弛作用为-28.40 +/- 0.61%。用L-NAME进行的预处理显着(P <0.05)增加了收缩(76.08 +/- 1.39%),并减少了EFS引起的松弛。 L-NAME + L-ARG的关联在统计学上(P <0.05)逆转了L-NAME对两种EFS诱导反应的影响。甲硫辛胺(1 microM)增强了EFS在豚鼠上皮完整气管环中引起的收缩力(P <0.05)(79.20 +/- 2.21%)和松弛反应(-38.73 +/- 0.99%);在对豚鼠上皮完整环进行的另一系列实验中,L-NAME增加了对甲辛胺的收缩反应(82.6 +/- 2.31),但减少了松弛反应(26.38 +/- 1.29)。相反,在测试的最大频率下,它仅增加上皮剥脱环中的收缩反应,而没有改变松弛剂。总之,目前的数据表明,神经节后胆碱能神经释放乙酰胆碱对NO的形成起重要作用,这种作用可能由上皮调节。

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