Department of Chemistry, University of Sargodha, Sargodha, Pakistan.
Department of Chemistry, COMSATS Institute of Information Technology, Abbottabad 22060, Pakistan.
Bioorg Chem. 2017 Feb;70:237-244. doi: 10.1016/j.bioorg.2017.01.004. Epub 2017 Jan 17.
In search of potent inhibitors of cholinesterases, we have synthesized and evaluate a number of 2,3-dihydroquinazolin-4(1H)-one derivatives. The synthetic approach provided an efficient synthesis of the target molecules with excellent yield. All the tested compounds showed activity against both the enzymes in micromolar range. In many case, the inhibition of both enzymes are higher than or comparable to the standard drug galatamine. With the selectivity index of 2.3 for AChE, compound 5f can be considered as a potential lead compound with a feature of dual AChE/BChE inhibition with IC=1.6±0.10μM (AChE) and 3.7±0.18μM (BChE). Binding modes of the synthesized compounds were explored by using GOLD (Genetic Optimization for Ligand Docking) suit v5.4.1. The computed binding modes of these compounds in the active site of AChE and BChE provide an insight into the mechanism of inhibition of these two enzyme.
为了寻找有效的胆碱酯酶抑制剂,我们合成并评估了一系列 2,3-二氢喹唑啉-4(1H)-酮衍生物。该合成方法提供了目标分子的高效合成,产率优异。所有测试的化合物均在微摩尔范围内对两种酶均具有活性。在许多情况下,两种酶的抑制作用均高于或可与标准药物加兰他敏相媲美。化合物 5f 的 AChE 选择性指数为 2.3,可被视为具有双重 AChE/BChE 抑制作用的潜在先导化合物,其 IC=1.6±0.10μM(AChE)和 3.7±0.18μM(BChE)。使用 GOLD(配体对接的遗传优化)套装 v5.4.1 探索了合成化合物的结合模式。这些化合物在 AChE 和 BChE 活性部位的计算结合模式提供了对这两种酶抑制机制的深入了解。