Issue 28, 2023, Issue in Progress

Synthesis, ADMT prediction, and in vitro and in silico α-glucosidase inhibition evaluations of new quinoline–quinazolinone–thioacetamides

Abstract

In this work, a new series of quinoline–quinazolinone–thioacetamide derivatives 9a–p were designed using a combination of effective pharmacophores of the potent α-glucosidase inhibitors. These compounds were synthesized by simple chemical reactions and evaluated for their anti-α-glucosidase activity. Among the tested compounds, compounds 9a, 9f, 9g, 9j, 9k, and 9m demonstrated significant inhibition effects in comparison to the positive control acarbose. Particularly, compound 9g with inhibitory activity around 83-fold more than acarbose exhibited the best anti-α-glucosidase activity. Compound 9g showed a competitive type of inhibition in the kinetic study, and the molecular simulation studies demonstrated that this compound with a favorable binding energy occupied the active site of α-glucosidase. Furthermore, in silico ADMET studies of the most potent compounds 9g, 9a, and 9f were performed to predict their drug-likeness, pharmacokinetic, and toxicity properties.

Graphical abstract: Synthesis, ADMT prediction, and in vitro and in silico α-glucosidase inhibition evaluations of new quinoline–quinazolinone–thioacetamides

Supplementary files

Article information

Article type
Paper
Submitted
18 Mar 2023
Accepted
17 Jun 2023
First published
26 Jun 2023
This article is Open Access
Creative Commons BY license

RSC Adv., 2023,13, 19243-19256

Synthesis, ADMT prediction, and in vitro and in silico α-glucosidase inhibition evaluations of new quinoline–quinazolinone–thioacetamides

S. Safapoor, M. Halimi, M. K. Ghomi, M. Noori, N. Dastyafteh, S. Javanshir, S. Hosseini, S. Mojtabavi, M. A. Faramarzi, E. Nasli-Esfahani, B. Larijani, A. Fakhrioliaei, M. G. Dekamin, M. Mohammadi-Khanaposhtani and M. Mahdavi, RSC Adv., 2023, 13, 19243 DOI: 10.1039/D3RA01790G

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