Synthesis, biological evaluation and molecular modeling studies of modulated benzyloxychalcones as potential acetylcholinesterase inhibitors.
Arman Abdalla AliShakhawan Ahmad MhamadAso Hameed HasanIqrar Ahmad AnsariSiti Awanis AbdullahShajarahtunnur JamilHarun PatelSankaranarayanan MurugesanJoazaizulfazli JamalisPublished in: Journal of biomolecular structure & dynamics (2023)
Acetylcholinesterase inhibitors (AChEIs) have become a significant target in the search for an efficient treatment of Alzheimer's disease. Chalcone-based compounds display a strong potency to hinder AChE. So, this study focused on the synthesis of a series of new chalcone derivatives with anti-cholinesterase potential and their structures were characterized based on spectroscopic methods including IR, 1 H NMR, 13 C NMR and HRMS. Chalcone derivatives were screened against AChE. Most of them exhibited potent inhibitory activity against AChE. Compound 11i showed the most potent activity toward acetylcholinesterase compared to the positive compound, Galantamine. Docking studies into the active site of the acetylcholinesterase enzyme ravealed the significant docking score of the synthesized compounds with docking score of -7.959 to -9.277 kcal/mol when compared to the co-crystallized ligand, Donepezil (-10.567 kcal/mol). The interaction's stability was further assessed using a conventional atomistic 100 ns dynamics simulation study, which revealed the conformational stability of representative compound 11i in the cavity of the acetylcholinesterase enzyme.Communicated by Ramaswamy H. Sarma.
Keyphrases
- molecular dynamics simulations
- molecular dynamics
- high resolution
- protein protein
- molecular docking
- magnetic resonance
- anti inflammatory
- human health
- case control
- cognitive decline
- single cell
- single molecule
- combination therapy
- risk assessment
- mild cognitive impairment
- liquid chromatography
- simultaneous determination