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POTENT INHIBITION OF THE INDUCIBLE ISOFORM OF NITRIC OXIDE SYNTHASE BY AMINOETHYLISOSELENOUREA AND RELATED COMPOUNDS

机译:氨基乙基异硒烯及相关化合物对一氧化氮合酶的可诱导同工型的潜在抑制作用

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The generation of nitric oxide (NO) by nitric oxide synthase (NOS) can be inhibited by certain guanidines and S-alkylisothioureas. In particular, aminoethylisothiourea (AE-TU) shows selectivity towards the inducible isoform (iNOS) over the endothelial isoform (ecNOS). Here we report on the effects of the selenium analog of AE-TU, aminoethylisoselenourea (AE-SeU), and its homologue, amino-propylisoselenourea (AP-SeU), on the activities of iNOS and ecNOS. AE-SeU and AP-SeU inhibited the conversion of L-arginine to L-citrulline in homogenates of lung taken from endotoxin-treated rats (a model of iNOS activity) with potencies (EC(50) = 1.1, and 0.1 mu M, respectively) greater than that of N-G-methyl-L-arginine (L-NMA) (22 mu M). In contrast, AE-SeU and AP-SeU were weaker than or similar to L-NMA at inhibiting ecNOS activity in homogenized bovine endothelial cells (EC(50) values = 104, 15, and 16 mu M, respectively). AE-SeU and AP-SeU potently inhibited nitrite formation by immunostimulated J774 macrophages (a model of iNOS activity) with EC(50) values of 10 and 4 mu M respectively. The corresponding EC(50) value for L-NMA was 160 mu M. The inhibition was dose-dependently reduced by increasing concentrations of L-arginine in the medium. in vivo, AE-SeU had only modest effects on blood pressure when given as a bolus to anesthetized rats, suggesting only a small effect on ecNOS in vivo, whereas AP-SeU had potent presser effects similar to those of L-NMA. We found that both AE-SeU and AP-SeU were unstable in aqueous solution at pH values above 6. Their disappearance from solution was accompanied by the appearance of a reductive species, probably free selenol. These findings suggest that AE-SeU and AP-SeU exert their inhibitory effects through intramolecular rearrangement to yield selenoethylguanidine and seleno-propylguanidine. Thus, selenoalkylguanidines are novel inhibitors of iNOS. [References: 30]
机译:一氧化氮合酶(NOS)生成一氧化氮(NO)可以被某些胍和S-烷基异硫脲抑制。尤其是,氨乙基异硫脲(AE-TU)对内皮型(ecNOS)的选择性高于诱导型(iNOS)。在这里,我们报道了AE-TU的硒类似物氨乙基异硒脲(AE-SeU)及其同系物氨基丙基异硒硒(AP-SeU)对iNOS和ecNOS活性的影响。 AE-SeU和AP-SeU抑制内毒素处理的大鼠(iNOS活性模型)的肺匀浆中的L-精氨酸向L-瓜氨酸的转化(EC(50)= 1.1和0.1μM,分别大于NG-甲基-L-精氨酸(L-NMA)(22μM)。相比之下,AE-SeU和AP-SeU在抑制均质牛内皮细胞中的ecNOS活性方面比L-NMA弱或相似(EC(50)值分别为104、15和16μM)。 AE-SeU和AP-SeU通过免疫刺激的J774巨噬细胞(iNOS活性模型)有效抑制亚硝酸盐的形成,其EC(50)值为10和4μM。 L-NMA的相应EC(50)值为160μM。通过增加培养基中L-精氨酸的浓度,抑制作用呈剂量依赖性地降低。在体内,AE-SeU当以大剂量给予麻醉的大鼠时,对血压仅产生适度的影响,这表明在体内对ecNOS的影响很小,而AP-SeU的有效升压作用与L-NMA相似。我们发现AE-SeU和AP-SeU在pH值高于6的水溶液中均不稳定。它们从溶液中消失时会伴随着还原性物质的出现,可能是游离硒醇。这些发现表明,AE-SeU和AP-SeU通过分子内重排发挥其抑制作用,从而产生硒代乙基胍和硒代丙基胍。因此,硒代烷基胍是iNOS的新型抑制剂。 [参考:30]

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