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Identification of quinoxalin-2(1H)-one derivatives as a novel class of multifunctional aldose reductase inhibitors

机译:鉴定喹喔啉-2(1H) - 衍生物作为一种新型多官能醛糖还原酶抑制剂

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Aim: Targeting aldose reductase and oxidative stress with quinoxalin-2(1H)-one derivatives having a 1-hydroxypyrazole head as the bioisosteric replacement of carboxylic acid. Methodologyandresults: Aldose reductase inhibition, selectivity and antioxidant potency of all the synthesized compounds were evaluated, and binding modes were studied by molecular docking. Most of the derivatives showed potent and selective aldose reductase inhibition, and among them 13d was the most active (IC50?=?0.107?μM), suggesting success of the bioisosteric strategy. Phenolic 3,4-dihydroxyl compound 13f showed strong antioxidant ability even comparable to that of the well-known antioxidant Trolox. Conclusion: The present study identified the excellent bioisostere of the 1-hydroxypyrazole head group along with phenolic hydroxyl and vinyl spacer in C3 side chain on constructing quinoxalinone-based multifunctional aldose reductase inhibitors.
机译:目的:靶向醛糖还原酶和氧化胁迫与喹喔啉-2(1H) - 酮衍生物,其具有1-羟基吡唑头作为羧酸的生物蛋白酶替代品。 方法(方法):评价所有合成化合物的醛糖还原酶抑制,选择性和抗氧化效力,并通过分子对接研究结合模式。 大多数衍生物显示出有效和选择性的醛糖还原酶抑制,其中13d是最活跃的(IC50?=0.107Ω·μm),表明生物睾丸策略的成功。 酚3,4-二羟基化合物13F显示出强烈的抗氧化能力,甚至与众所周知的抗氧化滴虫的抗氧化能力相当。 结论:本研究鉴定了1-羟基吡唑头组的优异生物偏见,以及C3侧链中的酚羟基和乙烯基间隔物,构建基于喹喔啉基多官能醛糖还原剂抑制剂。

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