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Pyrido[1,2-a]pyrimidin-4-one derivatives as a novel class of selective aldose reductase inhibitors exhibiting antioxidant activity

机译:吡啶并[1,2-a]嘧啶-4-酮衍生物作为一类新型的具有抗氧化活性的选择性醛糖还原酶抑制剂

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摘要

2-Phenyl-pyrido[1,2-a]pyrimidin-4-one derivatives bearing a phenol or a catechol moiety in position 2 were tested as aldose reductase (ALR2) inhibitors and exhibited activity levels in the micromolar/submicromolar range. Introduction of a hydroxy group in position 6 or 9 gave an enhancement of the inhibitory potency (compare 18, 19, 28, and 29 vs 13 and 14). Lengthening of the 2-side chain to benzyl determined a general reduction in activity. The lack or the methylation of the phenol or catechol hydroxyls gave inactive (10-12, 21, 22, 25-27) or scarcely active (15, 17, 20) compounds, thus demonstrating that the phenol or catechol hydroxyls are involved in the enzyme pharmacophoric recognition. Moreover, all the pyridopyrimidinones displayed significant antioxidant properties, with the best activity shown by the catechol derivatives. The theoretical binding mode of the most active compounds obtained by docking simulations into the ALR2 crystal structure was fully consistent with the structure-activity relationships in the pyrido[1,2-a]pyrimidin-4-one series.
机译:测试了在2位带有酚或邻苯二酚部分的2-苯基-吡啶并[1,2-a]嘧啶-4-酮衍生物作为醛糖还原酶(ALR2)抑制剂的活性,其活性水平在微摩尔/亚微摩尔范围内。在位置6或9引入羟基可增强抑制能力(比较18、19、28和29与13和14)。 2-侧链加长至苄基决定了活性的普遍降低。苯酚或邻苯二酚羟基的缺乏或甲基化会导致无活性(10-12、21、22、25-27)或几乎没有活性(15、17、20)的化合物,因此表明苯酚或邻苯二酚的羟基参与了酶药效学识别。而且,所有的嘧啶并嘧啶酮均显示出显着的抗氧化性能,儿茶酚衍生物显示出最佳的活性。通过对接模拟到ALR2晶体结构中获得的最具活性的化合物的理论结合模式与吡啶并[1,2-a]嘧啶-4-酮系列中的结构-活性关系完全一致。

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