胆碱酯酶
秋水仙碱
芳基
药理学
化学
鉴定(生物学)
胺气处理
烷基
生物化学
生物
遗传学
有机化学
植物
作者
Chilakala Nagarjuna Reddy,Vijay K. Nuthakki,Ankita Sharma,Sumera Malik,Misbah Tabassum,Rajesh Kumar,Sushil Choudhary,Fiza Iqbal,Ziya Tufail,Dilip M. Mondhe,Ajay Kumar,Sandip B. Bharate
标识
DOI:10.1021/acschemneuro.4c00153
摘要
Colchicine, one of the oldest anti-inflammatory natural products still used clinically, inhibits NF-κB signaling and NLRP3 inflammasome activation. Despite its cytotoxicity and narrow therapeutic range, colchicine continues to intrigue medicinal chemists exploring its anti-inflammatory potential. This study aimed to investigate the colchicine scaffold for its role in Alzheimer's disease by targeting neuroinflammation and cholinesterases. Molecular docking revealed that colchicine's hydrophobic trimethoxyphenyl framework can potentially bind to the peripheral anionic site of cholinesterases. Hybrid structures combining colchicine with aryl/alkyl amines were designed to bind both peripheral and catalytic sites of cholinesterases. We describe here the design, synthesis, and in vitro cytotoxicity evaluation of these colchicine-aryl/alkyl amine hybrids, along with their in silico interactions with the cholinesterase active site gorge. Nontoxic analogs demonstrating strong cholinesterase binding affinity were further evaluated for their anticholinesterase and antineuroinflammatory activities. The colchicine-donepezil hybrid, SBN-284 (
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