首页> 外文期刊>American Journal of Physiology >Accumulated endogenous NOS inhibitors, decreased NOS activity, and impaired cavernosal relaxation with ischemia.
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Accumulated endogenous NOS inhibitors, decreased NOS activity, and impaired cavernosal relaxation with ischemia.

机译:内源性NOS抑制剂积累,NOS活性降低以及缺血引起的海绵体松弛受损。

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摘要

We examined whether endogenous inhibitors of nitric oxide (NO) synthesis are involved in the impaired cavernosal relaxation with ischemia in rabbits. Two weeks after cavernosal ischemia caused by partial vessel occlusion, endothelium-dependent and electrical field stimulation (EFS)-induced neurogenic NO-mediated relaxations, but not sodium nitroprusside (SNP)-induced relaxation, were significantly impaired in the isolated corpus cavernosum. The Ca(2+)-dependent NO synthase (NOS) activity and the basal and stimulated cGMP productions with carbachol or EFS were significantly decreased after ischemia. Supplementation of excess L-arginine partially recovered both of the impaired relaxations. The contents of N(G)-monomethyl-L-arginine (L-NMMA) and asymmetric N(G), N(G)-dimethyl-L-arginine (ADMA) but not L-arginine and symmetric N(G),N'(G)-dimethyl-L-arginine (SDMA) were increased in the cavernosal tissues after ischemia. Authentic L-NMMA and ADMA but not SDMA concentration dependently inhibited both relaxations without affecting the relaxation produced by SNP in the control. Excess L-arginine abolished the inhibition with L-NMMA and ADMA. These results suggest that the impaired NO-mediated cavernosal relaxations after ischemia are closely related to the decreased NOS activity and the increased accumulation of L-NMMA and ADMA.
机译:我们检查了内源性一氧化氮(NO)合成抑制剂是否与兔缺血性海绵体松弛受损有关。由部分血管闭塞引起的海绵体缺血两周后,离体海绵体中内皮依赖性和电场刺激(EFS)诱导的神经源性NO介导的舒张作用明显减弱,而硝普钠(SNP)引起的舒张则没有明显减弱。 Ca(2+)依赖的NO合酶(NOS)活性和基础和刺激cGMP生产与卡巴胆碱或EFS缺血后明显减少。补充过量的L-精氨酸可部分恢复这两种受损的松弛。 N(G)-单甲基-L-精氨酸(L-NMMA)和不对称N(G),N(G)-二甲基-L-精氨酸(ADMA)的含量,而非L-精氨酸和对称N(G)的含量,缺血后海绵体组织中的N'(G)-二甲基-L-精氨酸(SDMA)增加。真实的L-NMMA和ADMA而不是SDMA浓度依赖性地抑制了两种弛豫,而不影响对照中SNP产生的弛豫。过量的L-精氨酸消除了L-NMMA和ADMA的抑制作用。这些结果表明,缺血后受损的NO介导的海绵体松弛受损与NOS活性降低以及L-NMMA和ADMA的积累增加密切相关。

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