iNOS inhibitors: Benzimidazole-coumarin derivatives to combat inflammation

Richa Minhas, Y. Bansal
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Abstract

Inducible nitric oxide synthase (iNOS) plays an important role in the inflammatory processes via accelerating the production of nitric oxide (NO). The efforts to develop small molecules as selective inhibitors of iNOS are being reported across the globe. The current study explores varied benzimidazole-coumarin derivatives as anti-iNOS agents. Literature survey suggests 2-aminobenzimidazole, coumarin nucleus, and 4-atom linker as important structural components for iNOS inhibition. Target compounds were designed and synthesized by coupling 2-aminobenzimidazole with (un)substituted coumarin through different linkers. These were docked in iNOS (1QW4) and nNOS (1QW6) targets to ascertain their iNOS selectivity, and evaluated for NO and iNOS inhibitory activities in vitro. The most active inhibitors were subsequently evaluated for acute toxicity and anti-inflammatory activity using carrageenan-induced rat paw edema model in vivo. All compounds possessed moderate to good NO and iNOS inhibitory activities. Compounds 14a, 14b, 14d, and 14e were the most potent inhibitors in vitro. These were found to significantly reduce the inflammation. Compounds 14d and 14e have been identified as the most potent iNOS inhibitors to combat inflammation. These derivatives may serve as potential compounds as such against iNOS, or as leads for the development of novel anti-iNOS agents.
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iNOS抑制剂:抗炎症的苯并咪唑-香豆素衍生物
诱导型一氧化氮合酶(Inducible nitric oxide synthase, iNOS)通过促进一氧化氮(nitric oxide, NO)的生成,在炎症过程中发挥重要作用。开发小分子作为iNOS选择性抑制剂的努力正在全球范围内得到报道。目前的研究探索了各种苯并咪唑-香豆素衍生物作为抗inos的药物。文献综述表明,2-氨基苯并咪唑、香豆素核和4原子连接体是抑制iNOS的重要结构成分。将2-氨基苯并咪唑与(非)取代香豆素通过不同的连接剂偶联,设计并合成了目标化合物。将其与iNOS (1QW4)和nNOS (1QW6)靶点对接,确定其iNOS选择性,并评估其体外NO和iNOS抑制活性。随后,利用卡拉胶诱导的大鼠足跖水肿模型,评估了活性最强的抑制剂的急性毒性和抗炎活性。所有化合物均具有中等至良好的NO和iNOS抑制活性。化合物14a、14b、14d和14e是体外最有效的抑制剂。这些被发现可以显著减少炎症。化合物14d和14e已被确定为对抗炎症最有效的iNOS抑制剂。这些衍生物可以作为抗iNOS的潜在化合物,或作为开发新型抗iNOS药物的先导物。
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