Cholinesterase Inhibitory Activity and Molecular Docking Studies of Isocryptolepine‐Triazole Adducts

Author:

Tummatorn Jumreang12ORCID,Meewan Ittipat3,Khunnawutmanotham Nisachon4,Chimnoi Nitirat5,Suwanwong Nutchapong2,Rodphon Warabhorn1,Thongsornkleeb Charnsak12,Yang Jingyue6,Ruchirawat Somsak12

Affiliation:

1. Laboratory of Medicinal Chemistry Chulabhorn Research Institute, Center of Excellence on Environmental Health and Toxicology (EHT), OPS, MHESI Bangkok 10400 Thailand

2. Program in Chemical Sciences Chulabhorn Graduate Institute Bangkok 10210 Thailand

3. Center for Advanced Therapeutics (CAT) Institute of Molecular Biosciences Mahidol University Nakhon Pathom 73170 Thailand

4. Laboratory of Organic Synthesis Chulabhorn Research Institute Bangkok 10210 Thailand

5. Laboratory of Natural Products Chulabhorn Research Institute Bangkok 10210 Thailand

6. Hebei Key Laboratory of Applied Chemistry Hebei Key Laboratory of Nano-biotechnology Yanshan University Qinhuangdao 066004 China

Abstract

AbstractDue to the rising prevalence of Alzheimer's disease (AD), there is a pressing need for more effective drugs to treat or manage AD's symptoms. Studies have shown that cholinesterase inhibition can improve cognitive and behavioral symptoms associated with AD, by addressing the cholinergic deficit. Based on the recent development of cholinesterase inhibitors with indoloquinoline and triazole moiety, we rationalized that compounds with an isocryptolepine‐triazole scaffold may also have the same biological targets. In this study, eighteen previously synthesized isocryptolepine‐triazole compounds were assessed for their ability to inhibit acetylcholinesterase (AChE) and butyrylcholinesterase (BChE). The majority of these compounds demonstrated potent selective AChE inhibition. Furthermore, our molecular docking and molecular dynamic simulation studies reveal that the isocryptolepine and triazole moieties are important for the binding of the compounds with the periphery of the AChE's binding pocket. While reductions in molecular weights and lipophilicities may be necessary to improve their pharmacokinetic properties, this work provides valuable insights for designing future AChE inhibitors, based on the novel isocryptolepine‐triazole scaffold.

Funder

Ministry of Higher Education, Science, Research and Innovation, Thailand

Chulabhorn Research Institute

Chulabhorn Graduate Institute, Chulabhorn Royal Academy

Publisher

Wiley

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