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Design and Synthesis of Potent and Multifunctional Aldose Reductase Inhibitors Based on Quinoxalinones

机译:基于喹喔啉酮的高效多功能醛糖还原酶抑制剂的设计与合成

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摘要

Quinoxalin-2(1H)-one based design and synthesis produced several series of aldose reductase (ALR2) inhibitor candidates. In particular, phenolic structure was installed in the compounds for the combination of antioxidant activity and strengthening the ability to fight against diabetic complications. Most of the series 6 showed potent and selective effects on ALR2 inhibition with IC50 values in the range of 0.032-0.468 mu M, and 2-(3-(2,4-dihydroxyphenyl)-7-fluoro-2-oxoquinoxalin-1(2H)-yl)acetic acid (6e) was the most active. More significantly, most of the series 8 revealed not only good activity in the ALR2 inhibition but also potent antioxidant activity, and 2-(3-(3-methoxy-4-hydroxystyryl)-2-oxoquinoxalin-1(2H)-yl)acetic acid (8d) was even as strong as the well-known antioxidant Trolox at a concentration of 100 mu M, verifying the C3 p-hydroxystyryl side chain as the key structure for alleviating oxidative stress. These results therefore suggest an achievement of multifunctional ALR2 inhibitors having both potency for ALR2 inhibition and as antioxidants.
机译:基于Quinoxalin-2(1H)-one的设计和合成产生了多个系列的醛糖还原酶(ALR2)抑制剂候选物。特别地,在化合物中安装了酚结构,以结合抗氧化剂活性和增强抗糖尿病并发症的能力。系列6的大多数显示出对ALR2抑制的有效和选择性作用,IC50值在0.032-0.468μM的范围内,而2-(3-(2,4-二羟基苯基)-7-氟-2-氧代喹喔啉-1( 2H)-基)乙酸(6e)最活跃。更重要的是,大多数系列8不仅显示出对ALR2抑制的良好活性,而且还显示出强大的抗氧化活性,以及​​2-(3-(3-甲氧基-4-羟基苯乙烯基)-2-氧代喹喔啉-1(2H)-基乙酸(8d)的强度甚至与众所周知的抗氧化剂Trolox相同,浓度为100μM,证明C3对羟基苯乙烯基侧链是缓解氧化应激的关键结构。因此,这些结果表明获得了既具有抑制ALR2的功效又具有抗氧化剂功能的多功能ALR2抑制剂。

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