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Quinazolinone-based rhodanine-3-acetic acids as potent aldose reductase inhibitors: Synthesis, functional evaluation and molecular modeling study

机译:基于喹唑啉酮的罗丹宁-3-乙酸作为有效的醛糖还原酶抑制剂:合成,功能评估和分子造型研究

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Graphical abstract Display Omitted Abstract A series of quinazolinone-based rhodanine-3-acetic acids was synthesized and tested for in vitro aldose reductase inhibitory activity. All the target compounds displayed nanomolar activity against the target enzyme. Compounds 3a , 3b , and 3e exhibited almost 3-fold higher activity as compared to the only marketed reference drug epalrestat. Structure-activity relationship studies indicated that bulky substituents at the 3-phenyl ring of the quinazolinone moiety are generally not tolerated in the active site of the enzyme. Insertion of a methoxy group on the central benzylidene ring was found to have a variable effect on ALR-2 activity depending on the nature of peripheral quinazolinone ring substituents. Removal of the acetic acid moiety led to inactive or weakly active target compounds. Docking and molecular dynamic simulations of the most active rhodanine-3-acetic acid derivatives were also carried out, to provide the basis for further structure-guided design of novel inhibitors.
机译:图形摘要显示省略摘要摘要合成了一系列基于喹唑啉酮的罗丹宁-3-乙酸,并对体外醛糖还原酶抑制活性进行了合成和测试。所有目标化合物均针对靶酶显示纳摩球活性。与唯一的销售参考药物ELALESTAT相比,化合物3a,3b和3e表现出几乎是3倍的活性。结构 - 活性关系研究表明,喹唑啉酮部分的3-苯基环的庞大取代基通常在酶的活性位点中通常不耐受。发现在中央亚苄基环上的甲氧基组在ALR-2活性上具有可变效果,这取决于外周喹唑啉酮环取代基的性质。除去乙酸部分导致无活性或弱活性的靶化合物。还进行了最活跃的罗丹宁-3-乙酸衍生物的对接和分子动态模拟,为新型抑制剂的进一步结构引导设计提供了基础。

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