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首页> 外文期刊>Bioorganic and medicinal chemistry >Synthesis, structural investigations and biological evaluation of novel hexahydropyridazine-1-carboximidamides, -carbothioamides and -carbothioimidic acid esters as inducible nitric oxide synthase inhibitors
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Synthesis, structural investigations and biological evaluation of novel hexahydropyridazine-1-carboximidamides, -carbothioamides and -carbothioimidic acid esters as inducible nitric oxide synthase inhibitors

机译:诱导型一氧化氮合酶抑制剂新型六氢哒嗪-1-羧亚胺,-碳硫酰胺和-碳硫亚甲基酸酯的合成,结构研究和生物学评价

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摘要

Local excess of nitric oxide (NO) has been implicated in β-cell damage, thus, a possible approach to the treatment of autoimmune IDDM is the selective inhibition of inducible nitric oxide synthase (iNOS). A series of variously substituted hexahy-dropyridazine-1-carbothioamides, -carbothioimidic acid esters and -carboximidamides was synthesized and dose-dependently evaluated as potential inhibitors of iNOS. The screening of the title compounds was performed with insulin-producing RIN-5AH cells and a combination of IL1-1β and IFN-γ as inducers of cellular NO production. The structure-activity analysis revealed that the variation of substituents in the position 1 of the hexahydropyridazine strongly influences the inhibitory activity to iNOS as well as being critical for RIN cell survival. Among the compounds tested, the hexahydropyridazine-1-carbothioamides showed particularly significant inhibitory effects. However, for an efficient iNOS inhibition substitution at the nitrogen of the 1-carbothioamide group is important. Thus, the introduction of aliphatic chains such as propyl or butyl and of cyclic moieties such as cyclohexyl, 3-methoxy-phenyl, and 4-methoxyphenyl (IC_(50): 0.5-2.1 mM), respectively, provided compounds with similar inhibitory activity to aminogua-nidine (IC_(50): 0.3 mM), a common standard substance used for the selective inhibition of iNOS. However, the 1-carboximidamides, which represent more structurally related semicyclic derivatives of aminoguanidine, caused only incomplete iNOS inhibition. The hexahydropyridazine-1-carbothioimidic acid esters caused dose- and substituent-dependent damage of RIN-5AH cells. The toxicity of the synthesized compounds increased markedly if aliphatic substituents at the exocyclic N atom(s) were replaced by variously substituted aromatic rings.
机译:一氧化氮(NO)的局部过量与β细胞损伤有关,因此,治疗自身免疫性IDDM的可能方法是选择性抑制诱导型一氧化氮合酶(iNOS)。合成了一系列不同取代的六氢哒嗪-1-碳硫酰胺,-碳硫代亚甲基酸酯和-羧亚胺化物,并剂量依赖性地评估了其作为iNOS的潜在抑制剂。用产生胰岛素的RIN-5AH细胞以及IL1-1β和IFN-γ的组合作为细胞NO产生的诱导剂进行标题化合物的筛选。结构活性分析表明,六氢哒嗪位置1上取代基的变化强烈影响对iNOS的抑制活性,并且对于RIN细胞的存活至关重要。在测试的化合物中,六氢哒嗪-1-甲硫酰胺显示出特别显着的抑制作用。但是,对于有效的iNOS抑制作用,重要的是在1-碳硫酰胺基团的氮原子上进行取代。因此,分别引入脂族链(例如丙基或丁基)和环状部分(例如环己基,3-甲氧基-苯基和4-甲氧基苯基)(IC_(50):0.5-2.1 mM),可提供具有相似抑制活性的化合物氨基胍(IC_(50):0.3 mM),一种用于选择性抑制iNOS的常见标准物质。但是,代表氨基胍的结构上更相关的半环衍生物的1-羧咪唑仅引起不完全的iNOS抑制。六氢哒嗪-1-碳硫代次甲基酸酯引起RIN-5AH细胞的剂量和取代基依赖性损伤。如果在环外N原子上的脂族取代基被各种取代的芳环取代,则合成化合物的毒性显着增加。

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