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Synthesis,In-Vitro Evaluation and Molecular Docking Study of N-Substituted Thiazolidinediones as α-Glucosidase Inhibitors

机译:N-取代的噻唑烷二酮作为α-葡萄糖苷酶抑制剂的合成,体外评估和分子对接研究

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Thiazolidinedione(TZD)drugs have been shown to improve insulin sensitivity,hyperglycemia,and lipid metabolism in people with type 2 diabetes mellitus.In this study,we have explored the alpha-glucosidase inhibitor action of new Nsubstituted 5-benzylidene-2,4-thiazolidinedione derivatives.Various substituted benzothiazoles linked to the 5-benzylidene-2,4-TZD with acetamide linker were synthesized and characterized by FTIR,~1H-NMR,13C-NMR,and mass spectrometry.After the in-silico screening of all the compounds,the IC50 values of 32 compounds were determined using an in vitro α-glucosidase assay(maltase yeast extract)with acarbose as a standard drug.All compounds showed varying degrees of α-glucosidase inhibitory action as compared to acarbose.When compared to acarbose(IC50=67.06±1.24 μM),molecules GB24,GB21,GB16,GB17 and GB25 exhibited very significant inhibitory activity,with IC50 values of 29.91±0.82,36.52±0.49,39.19±1.09,41.35±1.37 μM and 60.47±1.49 respectively.Moreover,a molecular docking study of active compounds was performed to rationalize the in-vitro results and to understand the binding interactions with the target enzyme.Based on the findings,we can predict that these compounds could be taken further for the development of new antidiabetic agents.
机译:Thiazolidinedione(TZD)drugs have been shown to improve insulin sensitivity,hyperglycemia,and lipid metabolism in people with type 2 diabetes mellitus.In this study,we have explored the alpha-glucosidase inhibitor action of new Nsubstituted 5-benzylidene-2,4-噻唑二酮衍生物。与5-苯二氮二烯-2,4-TZD相关的多种取代的苯并硫唑与乙酰酰胺接头相关联,并通过FTIR,〜1H-NMR,13C-NMR和质谱法进行了合成和表征。化合物,使用Acarbose作为标准药物的体外α-葡萄糖苷酶测定(Maltase酵母提取物)确定32种化合物的IC50值。与acarbose相比,所有化合物显示出各种程度的α-葡萄糖苷酶抑制作用。 (IC50=67.06±1.24 μM),molecules GB24,GB21,GB16,GB17 and GB25 exhibited very significant inhibitory activity,with IC50 values of 29.91±0.82,36.52±0.49,39.19±1.09,41.35±1.37 μM and 60.47±1.49 respectively更重要的是,分子DO进行了活性化合物的CKING研究,以合理化体外结果,并了解与靶酶的结合相互作用。基于发现的结果,我们可以预测,这些化合物可以进一步进一步发展,以开发新的抗糖尿病药物。

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