丁酰胆碱酯酶
乙酰胆碱酯酶
加兰他明
胆碱酯酶
化学
自动停靠
对接(动物)
活动站点
酶
阿切
立体化学
药理学
生物化学
多奈哌齐
生物
医学
病理
护理部
基因
生物信息学
疾病
痴呆
作者
İrem Bozbey,Zeynep Özdemir,Harun Uslu,Azime Berna Özçelik,Fatma Sezer Şenol,İlkay Erdoğan Orhan,Mehtap Uysal
出处
期刊:Mini-reviews in Medicinal Chemistry
[Bentham Science]
日期:2020-07-17
卷期号:20 (11): 1042-1060
被引量:22
标识
DOI:10.2174/1389557519666191010154444
摘要
Background: Acetylcholinesterase (AChE) and butyrylcholinesterase (BChE) are known to be serine hydrolase enzymes responsible for the hydrolysis of acetylcholine (ACh), which is a significant neurotransmitter for regulation of cognition in animals. Inhibition of cholinesterases is an effective method to curb Alzheimer’s disease, a progressive and fatal neurological disorder. Objective: In this study, 30 new hydrazone derivatives were synthesized. Then we evaluated their anticholinesterase activity of compounds. We also tried to get insights into binding interactions of the synthesized compounds in the active site of both enzymes by using molecular docking approach. Methods: The compounds were synthesized by the reaction of various substituted/nonsubstituted benzaldehydes with 6-(substitute/nonsubstituephenyl)-3(2H)-pyridazinone-2-yl propiyohydrazide. Anticholinesterase activity of the compounds was determined using Ellman’s method. Molecular docking studies were done by using the ADT package version 1.5.6rc3 and showed by Maestro. RMSD values were obtained using Lamarckian Genetic Algorithm and scoring function of AutoDock 4.2 release 4.2.5.1 software. Results: The activities of the compounds were compared with galantamine as cholinesterase enzyme inhibitor, where some of the compounds showed higher BChE inhibitory activity than galantamine. Compound F111 was shown to be the best BChE inhibitor effective in 50 μM dose, providing 89.43% inhibition of BChE (IC50=4.27±0.36 μM). Conclusion: This study supports that novel hydrazone derivates may be used for the development of new BChE inhibitory agents.
科研通智能强力驱动
Strongly Powered by AbleSci AI