Synthesis and exploration of in-silico and in-vitro α-glucosidase and α-amylase inhibitory activities of N-(3-acetyl-2-methyl-4-phenylquinolin-6-yl)arylamides
In a search for α-amylase and α-glucosidase inhibitors to treat type II diabetes, a new series of N -(3-acetyl-2-methyl-4-phenylquinolin-6-yl)arylamides were synthesized from 3-acetyl-2-methyl-4-phenylquinolines. Initially, nitro function of 1-(2-methyl-6-nitro-4-phenylquinolin-3-yl) ethanone was co...
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Veröffentlicht in: | Journal of the Iranian Chemical Society 2019-05, Vol.16 (5), p.1071-1080 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | In a search for α-amylase and α-glucosidase inhibitors to treat type II diabetes, a new series of
N
-(3-acetyl-2-methyl-4-phenylquinolin-6-yl)arylamides were synthesized from 3-acetyl-2-methyl-4-phenylquinolines. Initially, nitro function of 1-(2-methyl-6-nitro-4-phenylquinolin-3-yl) ethanone was converted into the corresponding amine by grinding it with zinc dust and ammonium chloride (reducing agent) which in turn successfully converted into the
N
-(3-acetyl-2-methyl-4-phenylquinolin-6-yl) arylamides by treating it with coupling reagents such as EDC, HATU, and DCC. All the synthesized compounds were found to afford excellent yields with HATU, moderate in EDC, and very less in DCC and hence, HATU was considered as a suitable coupling reagent. These analogs are structurally characterized by NMR, NMR-DEPT, and HRMS. All the synthesized compounds were evaluated for in-silico and in-vitro α-glucosidase and α-amylase inhibitory activity using acarbose as standard and all the compounds showed positive results by in-silico and in-vitro α-amylase inhibition assay. Among the tested compounds, compound
5c
and
5d
in α
-
glucosidase as well as in α
-
amylase are found to have least binding energy value. These compounds found to form more stable ligand–receptor complex amongst other compounds. In addition, in experimental part, also the compounds
5c
and
5d
exhibited 56.90 ± 0.77% and 59.46 ± 0.61% of the higher potent α-glucosidase inhibitory activity with IC
50
values 171.75 ± 3.95 µmol/mL and 171.67 ± 1.57 µmol/mL significantly (
p
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ISSN: | 1735-207X 1735-2428 |
DOI: | 10.1007/s13738-018-01580-4 |