| Literature DB >> 33916760 |
Georgi Stavrakov1,2, Irena Philipova2, Atanas Lukarski1, Mariyana Atanasova1, Borislav Georgiev3, Teodora Atanasova1, Spiro Konstantinov1, Irini Doytchinova1.
Abstract
Despite extensive and intensive research efforts in recent decades, there is still no effective treatment for neurodegenerative diseases. On this background, the use of drugs inhibiting the enzyme acetylcholinesterase (AChE) remains an eternal evergreen in the symptomatic treatment of mild to moderate cognitive impairments. Even more, the cholinergic hypothesis, somewhat forgotten in recent years due to the shift in focus on amyloid cascade, is back to life, and the search for new, more effective AChE inhibitors continues. We generated a fragment-based library containing aromatic moieties and linkers originating from a set of novel AChE inhibitors. We used this library to design 1220 galantamine (GAL) derivatives following the model GAL (binding core) - linker (L) - aromatic fragment (Ar). The newly designed compounds were screened virtually for blood-brain barrier (BBB) permeability and binding to AChE. Among the top 10 best-scored compounds, a representative lead molecule was selected and tested for anti-AChE activity and neurotoxicity. It was found that the selected compound was a powerful non-toxic AChE inhibitor, 68 times more active than GAL, and could serve as a lead molecule for further optimization and development.Entities:
Keywords: BBB permeability; Ellman’s method; acetylcholinesterase inhibitor; fragment-based library; galantamine; molecular docking; neuro-2A cell line; neurotoxicity
Year: 2021 PMID: 33916760 DOI: 10.3390/molecules26072058
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411