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首页> 外文期刊>European Journal of Pharmacology: An International Journal >Nitric oxide synthase-independent release of nitric oxide induced by KCl in the perfused mesenteric bed of the rat.
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Nitric oxide synthase-independent release of nitric oxide induced by KCl in the perfused mesenteric bed of the rat.

机译:大鼠灌注的肠系膜床中氯化钾诱导的一氧化氮不依赖一氧化氮合酶的释放。

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The aim of the present study was to test whether the contractile responses elicited by KCl in the rat mesenteric bed are coupled to the release of nitric oxide (NO). Contractions induced by 70 mM KCl were coincident with the release of NO to the perfusate. The in vitro exposure to the nitric oxide synthase (NOS) inhibitor L-N(omega)-nitro-L-arginine methyl ester, L-NAME (1-100 microM) potentiated the vascular responses to 70 mM KCl and, unexpectedly, increased the KCl-stimulated release of NO. Moreover, even after the chronic treatment with L-NAME (70 mg/kg/day during 4 weeks), the KCl-induced release of NO was not reduced, whereas the potentiation of contractile responses was indeed achieved. The possibility that NOS had not been completely inhibited under our experimental conditions can be precluded because NOS activity was significantly inhibited after both L-NAME treatments. After the in vitro treatment with 1 to 100 microM L-NAME, the inhibition of NOS was concentration-dependent (from 50% to 90%). With regard to the basal release of NO, the inhibition caused by L-NAME was not concentration-dependent and reached a maximum of 40%, suggesting that basal NO outflow is only partially dependent on NOS activity. An eventual enhancement of NOS activity caused by KCl was disregarded because the activity of this enzyme measured in homogenates from mesenteric beds perfused with 70 mM KCl was significantly reduced. On the other hand, endothelium removal, employed as a negative control, almost abolished NOS activity, whereas the incubation with the Ca(2+) ionophore A23187, employed as a positive control, induced an increase in NOS activity. It is concluded that in the mesenteric arterial bed of the rat, the contractile responses elicited by depolarization through KCl are coincident with a NOS-independent release of NO. This observation, which differs from the results obtained with noradrenaline, do not support the use of KCl as an alternative contractile agent whenever the participation of NO is under study.
机译:本研究的目的是测试氯化钾在大鼠肠系膜床上引起的收缩反应是否与一氧化氮(NO)的释放有关。 70 mM KCl引起的收缩与NO向灌注液的释放同时发生。体外暴露于一氧化氮合酶(NOS)抑制剂LN(ω)-硝基-L-精氨酸甲酯L-NAME(1-100 microM)增强了对70 mM KCl的血管反应,出乎意料地增加了KCl -刺激释放NO。此外,即使在长期使用L-NAME进行治疗(4周内每天70 mg / kg /天)后,KCl诱导的NO释放也没有减少,而收缩反应的增强确实得以实现。可以排除在我们的实验条件下未完全抑制NOS的可能性,因为在两次L-NAME处理后,NOS活性均被显着抑制。用1至100 microM L-NAME进行体外处理后,NOS的抑制作用呈浓度依赖性(从50%到90%)。关于NO的基础释放,由L-NAME引起的抑制不是浓度依赖性的,并且达到最大40%,表明基础NO流出仅部分取决于NOS活性。最终忽略了由KCl引起的NOS活性的提高,因为在灌注70 mM KCl的肠系膜床匀浆中测得的该酶的活性显着降低。另一方面,内皮细胞去除,用作阴性对照,几乎废除了NOS活性,而与Ca(2+)离子载体A23187的孵育,用作阳性对照,则诱导了NOS活性的增加。结论是,在大鼠的肠系膜动脉床中,通过氯化钾去极化引起的收缩反应与不依赖NOS的NO释放相吻合。该观察结果不同于去甲肾上腺素获得的结果,不支持在研究NO参与时使用KCl作为替代收缩剂。

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