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Flavonols and 4-thioflavonols as potential acetylcholinesterase and butyrylcholinesterase inhibitors: Synthesis, structure-activity relationship and molecular docking studies
- Source :
- Bioorganic chemistry. 91
- Publication Year :
- 2019
-
Abstract
- To explore new scaffolds for the treat of Alzheimer's disease appears to be an inspiring goal. In this context, a series of varyingly substituted flavonols and 4-thioflavonols have been designed and synthesized efficiently. All the newly synthesized compounds were characterized unambiguously by common spectroscopic techniques (IR, 1H-, 13C NMR) and mass spectrometry (EI-MS). All the derivatives (1-24) were evaluated in vitro for their inhibitory potential against cholinesterase enzymes. The results exhibited that these derivatives were potent selective inhibitors of acetylcholinesterase (AChE), except the compound 11 which was selective inhibitor of butyrylcholinesterase (BChE), with varying degree of IC50 values. Remarkably, the compounds 20 and 23 have been found the most potent almost dual inhibitors of AChE and BChE amongst the series with IC50 values even less than the standard drug. The experimental results in silico were further validated by molecular docking studies in order to find their binding modes with the active pockets of AChE and BChE enzymes.
- Subjects :
- Flavonols
Stereochemistry
Context (language use)
01 natural sciences
Biochemistry
chemistry.chemical_compound
Structure-Activity Relationship
Catalytic Domain
Drug Discovery
Structure–activity relationship
Humans
Molecular Biology
Butyrylcholinesterase
Cholinesterase
chemistry.chemical_classification
biology
Molecular Structure
010405 organic chemistry
Chemistry
Organic Chemistry
Acetylcholinesterase
In vitro
0104 chemical sciences
Molecular Docking Simulation
010404 medicinal & biomolecular chemistry
Enzyme
biology.protein
Cholinesterase Inhibitors
Protein Binding
Subjects
Details
- ISSN :
- 10902120
- Volume :
- 91
- Database :
- OpenAIRE
- Journal :
- Bioorganic chemistry
- Accession number :
- edsair.doi.dedup.....d7c30216a580b99f4b9da4e3fcf2bf9a