首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >New cholinesterase inhibitors for Alzheimer's disease: Structure activity for relationship, kinetics and molecular docking studies of 1-butanoyl-3-arylthiourea derivatives
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New cholinesterase inhibitors for Alzheimer's disease: Structure activity for relationship, kinetics and molecular docking studies of 1-butanoyl-3-arylthiourea derivatives

机译:用于阿尔茨海默病的新的胆碱酯酶抑制剂:1-丁烷酰-3-芳基衍生物的关系,动力学和分子对接研究的结构活性

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摘要

Highly progressive neurodegenerative disorder generally known as Alzheimer's disease (AD), is a type of dementia, which is very common in elderly. The most common symptoms may include loss of memory along with disturbed behavioral and cognitive functions. Until now, only 4 cholinesterase (ChE) inhibitors are approved by FDA for symptomatic treatment of AD. Aroyl thiourea derivatives are well known bioactive organic molecules containing carbonyl and thiocarbonyl functional groups. Here, total 14 different thiourea derivatives (3a-3n) were synthesized and characterized by NMR, FTIR and X-ray crystallographic techniques. The synthesized compounds displayed varying inhibition activities on both acetylcholineterase (AChE) and butyrylcholinesterase (BuChE) enzymes. Among all compounds, 3b and 3e were potent inhibitors of AChE (IC50 +/- SEM = 8.92 +/- 1.03 mu M) and BuChE (IC50 +/- SEM = 6.96 +/- 0.961 mu M) respectively. Enzyme kinetic studies showed that 3b exhibited uncompetitive binding with AChE while 3e demonstrated a mixed inhibition of BuChE. Molecular docking studies on AChE showed that 3b got binding interaction with Trp86 and Tyr337 while 3e showed binding affinity with Trp82 and His438 when docked with BuChE. The obtained results indicated that these thiourea derivatives could be considered as potential candidates to treat AD. (C) 2018 Published by Elsevier B.V.
机译:普遍称为阿尔茨海默病(AD)的高度进展神经退行性疾病是一种痴呆类型,这在老年人中是非常普遍的。最常见的症状可能包括丢失存储器以及受干扰的行为和认知功能。到目前为止,只有4个胆碱酯酶(Che)抑制剂被FDA批准用于广告的对症治疗。芳酰硫脲衍生物是众所周知的含有羰基和硫代羰基官能团的生物活性有机分子。这里,通过NMR,FTIR和X射线结晶技术合成了14种不同的硫脲衍生物(3A-3N)并表征。合成化合物在乙酰胆碱表(ache)和丁酰胆碱酯酶(Buche)酶中显示出不同的抑制活性。在所有化合物中,3b和3e分别是疼痛的有效抑制剂(IC50 +/- SEM = 8.92 + /-1.03μm)和Buche(IC50 +/- SEM = 6.96 +/- 0.961 mu m)。酶动力学研究表明,3B表现出与疼痛的外向结合,而3E表现出混合抑制BUCHE。关于疼痛的分子对接研究表明,3B与TRP86和TYR337具有结合相互作用,而3E在与BUCHE停靠时与TRP82和HIS438显示结合亲和力。所获得的结果表明,这些硫脲衍生物可被认为是治疗广告的潜在候选者。 (c)2018由elestvier b.v出版。

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