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新型邻苯二甲酰亚胺-苯氧基-1,2,3-三唑-N-苯基(或苄基)乙酰胺的设计、合成、体外α-葡萄糖苷酶抑制活性评价及计算研究作为潜在的抗糖尿病药物。

Design, synthesis, in vitro anti-α-glucosidase evaluations, and computational studies of new phthalimide-phenoxy-1,2,3-triazole-N-phenyl (or benzyl) acetamides as potential anti-diabetic agents.

机构信息

Electrical and Computer Engineering Department, Babol Noshirvani University of Technology, Babol, Iran.

Department of Biology, Babol Branch, Islamic Azad University, Babol, Iran.

出版信息

Sci Rep. 2023 Jun 20;13(1):10030. doi: 10.1038/s41598-023-36890-y.

Abstract

An important target in the treatment of type 2 diabetes is α-glucosidase. Inhibition of this enzyme led to delay in glucose absorption and decrease in postprandial hyperglycemia. A new series of phthalimide-phenoxy-1,2,3-triazole-N-phenyl (or benzyl) acetamides 11a-n were designed based on the reported potent α-glucosidase inhibitors. These compounds were synthesized and screened for their in vitro inhibitory activity against the latter enzyme. The majority of the evaluated compounds displayed high inhibition effects (IC values in the range of 45.26 ± 0.03-491.68 ± 0.11 µM) as compared to the positive control acarbose (IC value = 750.1 ± 0.23 µM). Among this series, compounds 11j and 11i represented the most potent α-glucosidase inhibitory activities with IC values of 45.26 ± 0.03 and 46.25 ± 0.89 µM. Kinetic analysis revealed that the compound 11j is a competitive inhibitor with a K of 50.4 µM. Furthermore, the binding interactions of the most potent compounds in α-glucosidase active site were studied through molecular docking and molecular dynamics. The latter studies confirmed the obtained results through in vitro experiments. Furthermore, in silico pharmacokinetic study of the most potent compounds was also performed.

摘要

在治疗 2 型糖尿病的过程中,α-葡萄糖苷酶是一个重要的靶点。抑制这种酶可以延缓葡萄糖的吸收并降低餐后高血糖。基于报道的有效的α-葡萄糖苷酶抑制剂,我们设计了一系列新的邻苯二甲酰亚胺-苯氧基-1,2,3-三唑-N-苯基(或苄基)乙酰胺 11a-n。这些化合物被合成并进行了体外对该酶的抑制活性筛选。与阳性对照阿卡波糖(IC 值= 750.1 ± 0.23 µM)相比,评估的大多数化合物表现出很高的抑制作用(IC 值范围为 45.26 ± 0.03-491.68 ± 0.11 µM)。在这一系列中,化合物 11j 和 11i 表现出最强的α-葡萄糖苷酶抑制活性,IC 值分别为 45.26 ± 0.03 和 46.25 ± 0.89 µM。动力学分析表明,化合物 11j 是一种竞争性抑制剂,K 值为 50.4 µM。此外,通过分子对接和分子动力学研究了最有效的化合物在α-葡萄糖苷酶活性部位的结合相互作用。进一步的研究通过体外实验证实了这些结果。此外,还对最有效的化合物进行了计算机药代动力学研究。

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