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Nitric oxide inhibits contraction of isolated pig ureteral smooth muscle.

机译:一氧化氮抑制离体的猪输尿管平滑肌的收缩。

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PURPOSE: To investigate the L-arginineitric oxide (NO) pathway in the pig isolated ureter. MATERIALS AND METHODS: Functional inhibitory effects mediated by NO were assessed and correlated with cyclic nucleotide levels. Nitric oxide synthase (NOS) activity was measured by monitoring the conversion of [3H]-arginine to [3H]-citrulline. Immunohistochemical studies were performed. RESULTS: The NO-donor SIN-1 reduced in a concentration-dependent manner the frequency of contractions, whereas NO completely interrupted the contractile activity. In precontracted strips exposed to SIN-1 or NO, there were 6- and 12-fold increases of the cyclic GMP levels in comparison with control preparations. Activity of NOS was moderate. Overall innervation of the ureter was sparse, and there were few NOS-immunoreactive nerves. CONCLUSION: Although few NOS-containing nerves were found, pathways regulating the cyclic GMP levels of pig ureteral smooth muscle were demonstrated. Such pathways may be important targets for drugs producing relaxation of the mammalian ureter.
机译:目的:研究猪分离输尿管中的L-精氨酸/一氧化氮(NO)途径。材料与方法:评估NO介导的功能抑制作用,并将其与环状核苷酸水平相关联。一氧化氮合酶(NOS)活性通过监测[3H]-精氨酸向[3H]-瓜氨酸的转化来测量。进行了免疫组织化学研究。结果:NO供体SIN-1以浓度依赖的方式减少了收缩的频率,而NO完全中断了收缩活动。与对照制剂相比,在暴露于SIN-1或NO的预收缩条中,环状GMP水平增加了6倍和12倍。 NOS的活性中等。输尿管的总体神经稀疏,几乎没有NOS免疫反应神经。结论:虽然几乎没有发现含NOS的神经,但仍显示出调节猪输尿管平滑肌循环GMP水平的途径。此类途径可能是产生哺乳动物输尿管松弛作用的药物的重要靶标。

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