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Synthesis α-glucosidase inhibition and molecular docking studies of novel thiazolidine-24-dione or rhodanine derivatives

机译:新型噻唑烷-24-二酮或若丹宁衍生物的合成α-葡萄糖苷酶抑制作用和分子对接研究

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摘要

A series of novel thiazolidine-2,4-dione or rhodanine derivatives (>5a–5k, >6a–6k) were synthesized and evaluated for their α-glucosidase inhibitory activity. The majority of compounds exhibited potent inhibitory activity in the range of 5.44 ± 0.13 to 50.45 ± 0.39 μM, when compared to the standard drug acarbose (IC50 = 817.38 ± 6.27 μM). Among the compounds in the series, compounds >5k, >6a, >6b, >6e, >6h and >6k showed potent inhibitory potential with IC50 values of 20.95 ± 0.21, 16.11 ± 0.19, 7.72 ± 0.16, 7.91 ± 0.17, 6.59 ± 0.15 and 5.44 ± 0.13 μM, respectively. Compound >6k (IC50 = 5.44 ± 0.13 μM), containing chloro and rhodanine groups at the 2- and 4-positions of the phenyl ring respectively, was found to be the most active compound that inhibits α-glucosidase activity. Furthermore, molecular docking studies were performed to understand the binding interactions between the molecule and enzyme.
机译:合成了一系列新型的噻唑烷-2,4-二酮或若丹宁衍生物(> 5a–5k ,> 6a–6k ),并对其α-葡萄糖苷酶的抑制活性进行了评估。与标准药物阿卡波糖相比(IC50 = 817.38±6.27μM),大多数化合物在5.44±0.13至50.45±0.39μM的范围内显示出强大的抑制活性。在该系列的化合物中,化合物> 5k ,> 6a ,> 6b ,> 6e ,> 6h 和> 6k 表现出强大的抑制潜力,IC50值分别为20.95±0.21、16.11±0.19、7.72±0.16、7.91±0.17、6.59±0.15和5.44±0.13μM。化合物> 6k (IC50 = 5.44±0.13μM),分别在苯环的2和4位上含氯和若丹宁基团,是抑制α-葡萄糖苷酶活性最高的化合物活动。此外,进行了分子对接研究以了解分子与酶之间的结合相互作用。

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