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Synthesis and pharmacological evaluation of multi-functional homoisoflavonoid derivatives as potent inhibitors of monoamine oxidase B and cholinesterase for the treatment of Alzheimers disease

机译:多功能同型异黄酮衍生物作为单胺氧化酶B和胆碱酯酶的有效抑制剂在阿尔茨海默氏病治疗中的合成及药理评价

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摘要

A series of homoisoflavonoid derivatives was designed, synthesized and evaluated as potential multi-functional anti-Alzheimer's agents for their inhibitory activity on cholinesterase and monoamine oxidase. Among them, compound >16 showed moderate acetylcholinesterase (AChE) inhibitory activity (eeAChE IC50 = 0.89 ± 0.02 μM; hAChE IC50 = 0.657 ± 0.002 μM) and significant monoamine oxidase B (MAO-B) inhibitory activity (hMAO-B IC50 = 0.0372 ± 0.0002 μM). Kinetic analysis of AChE, MAO-B inhibition and molecular modeling studies revealed that compound >16 is a dual binding site inhibitor of AChE and noncompetitive inhibitor of MAO-B. Furthermore, >16 could penetrate through the blood–brain barrier (BBB) in vitro. Most importantly, oral administration of >16 demonstrated no marked signs of acute toxicity and it could significantly reverse scopolamine-induced memory impairment in mice. These results suggested that compound >16 is a promising multifunctional drug candidate with potential effect for the treatment of Alzheimer's disease.
机译:设计,合成和评估了一系列同型异黄酮衍生物,因为它们对胆碱酯酶和单胺氧化酶具有抑制活性,因此可作为潜在的多功能抗阿尔茨海默氏病药物。其中,化合物> 16 具有中等的乙酰胆碱酯酶(AChE)抑制活性(eeAChE IC50 = 0.89±0.02μM; hAChE IC50 = 0.657±0.002μM)和显着的单胺氧化酶B(MAO-B)抑制活性( hMAO-B IC50 = 0.0372±0.0002μM)。 AChE的动力学分析,对MAO-B的抑制作用以及分子模型研究表明,化合物> 16 是AChE的双重结合位点抑制剂,是MAO-B的非竞争性抑制剂。此外,> 16 可以在体外穿透血脑屏障(BBB)。最重要的是,口服> 16 并没有显示出明显的急性毒性迹象,并且可以显着逆转东-碱引起的小鼠记忆障碍。这些结果表明化合物> 16 是一种有前途的多功能药物,对治疗阿尔茨海默氏病具有潜在的作用。

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