Mechanochemical Synthesis, in vitro Evaluation and Molecular Docking Studies of 4-Amino-2-arylamino-5-(benzofuran-2-oyl)thiazoles as Antidiabetic Agents
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Published:2019-05-30
Issue:7
Volume:16
Page:560-568
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ISSN:1570-1786
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Container-title:Letters in Organic Chemistry
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language:en
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Short-container-title:LOC
Author:
Akhila Vijayan R.1, Priya Maheswari R.1, Sherin Daisy R.2, Krishnapriya Girija K.1, Keerthi Sreerekha V.1, Manojkumar Thanathu K.2, Rajasekharan Kallikat N.1
Affiliation:
1. Department of Chemistry, University of Kerala, Kariavattom Campus, Thiruvananthapuram 695 581, Kerala, India 2. Centre for Computational Modeling and Data Engineering, Indian Institute of Information Technology and Management- Kerala, Thiruvananthapuram 695 581, Kerala, India
Abstract
The synthesis of 4-amino-2-arylamino-5-(benzofuran-2-oyl)thiazoles 4a-h, as example of
2,4-diaminothiazole-benzofuran hybrids and an evaluation of their antidiabetic activity, by in vitro and
computational methods, are reported. The synthesis of these diaminothiazoles was achieved mechano
chemically by a rapid solvent-less method. Their antidiabetic activity was assessed by α-glucosidase
and α-amylase inhibition assays. The, IC50 value for α-glucosidase inhibition by 4-amino-5-
(benzofuran-2-oyl)-2-(4-methoxyphenylamino)thiazole (4d) was found to be 20.04 µM and the IC50
value for α-amylase inhibition, 195.03 µM, whereas the corresponding values for reference acarbose
were 53.38 µM and 502.03 µM, respectively. Molecular docking studies at the active sites of α-
glucosidase and α-amylase showed that among the diaminothiazoles 4a-h now studied, 4-amino-5-
(benzofuran-2-oyl)-2-(4-methoxyphenylamino)thiazole (4d) has the highest D-scores of -8.63 and
-8.08 for α-glucosidase and for α-amylase, with binding energies -47.76 and -19.73 kcal/mol, respectively.
Funder
University Grants Commission of India
Publisher
Bentham Science Publishers Ltd.
Subject
Organic Chemistry,Biochemistry
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