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Cinnoline derivatives as human neutrophil elastase inhibitors

机译:辛诺林衍生物作为人类嗜中性粒细胞弹性蛋白酶抑制剂

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摘要

Compounds that can effectively inhibit the proteolytic activity of human neutrophil elastase (HNE) represent promising therapeutics for treatment of inflammatory diseases. We present here the synthesis, structure–activity relationship analysis, and biological evaluation of a new series of HNE inhibitors with a cinnoline scaffold. These compounds exhibited HNE inhibitory activity but had lower potency compared to N-benzoylindazoles previously reported by us. On the other hand, they exhibited increased stability in aqueous solution. The most potent compound, >18a, had a good balance between HNE inhibitory activity (IC50 value = 56 nM) and chemical stability (t1/2 = 114 min). Analysis of reaction kinetics revealed that these cinnoline derivatives were reversible competitive inhibitors of HNE. Furthermore, molecular docking studies of the active products into the HNE binding site revealed two types of HNE inhibitors: molecules with cinnolin-4(1H)-one scaffold, which were attacked by the HNE Ser195 hydroxyl group at the amido moiety, and cinnoline derivatives containing an ester function at C-4, which is the point of attack of Ser195.
机译:可以有效抑制人嗜中性粒细胞弹性蛋白酶(HNE)蛋白水解活性的化合物代表了治疗炎症性疾病的有前途的疗法。我们在这里介绍了新的系列HNE抑制剂与cinnoline支架的合成,结构-活性关系分析和生物学评估。与我们先前报道的N-苯甲酰基吲唑相比,这些化合物具有HNE抑制活性,但效能较低。另一方面,它们在水溶液中显示出增加的稳定性。最有效的化合物> 18a 在HNE抑制活性(IC50值= 56 nM)和化学稳定性(t1 / 2 = 114分钟)之间具有良好的平衡。反应动力学分析表明,这些cinnoline衍生物是HNE的可逆竞争性抑制剂。此外,对活性产物进入HNE结合位点的分子对接研究显示出两种类型的HNE抑制剂:具有cinnolin-4(1H)-一个支架的分子(其在酰胺基部分被HNE Ser195羟基攻击)和cinnoline衍生物在C-4处具有酯功能,这是Ser195的攻击点。

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