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新型 3-氨基-2,4-二芳基苯并[4,5]咪唑并[1,2-a]嘧啶对酵母和大鼠 α-葡萄糖苷酶的设计、合成、分子对接及体外抑制活性研究。

Design, synthesis, molecular docking, and in vitro α-glucosidase inhibitory activities of novel 3-amino-2,4-diarylbenzo[4,5]imidazo[1,2-a]pyrimidines against yeast and rat α-glucosidase.

机构信息

Drug Design and Development Research Center, The Institute of Pharmaceutical Sciences (TIPS), Tehran University of Medical Sciences, Tehran, Iran.

School of Chemistry, College of Science, University of Tehran, Tehran, Iran.

出版信息

Sci Rep. 2021 Jun 7;11(1):11911. doi: 10.1038/s41598-021-91473-z.

Abstract

In an attempt to find novel, potent α-glucosidase inhibitors, a library of poly-substituted 3-amino-2,4-diarylbenzo[4,5]imidazo[1,2-a]pyrimidines 3a-ag have been synthesized through heating a mixture of 2-aminobenzimidazoles 1 and α-azidochalcone 2 under the mild conditions. This efficient, facile protocol has been resulted into the desirable compounds with a wide substrate scope in good to excellent yields. Afterwards, their inhibitory activities against yeast α-glucosidase enzyme were investigated. Showing IC values ranging from 16.4 ± 0.36 µM to 297.0 ± 1.2 µM confirmed their excellent potency to inhibit α-glucosidase which encouraged us to perform further studies on α-glucosidase enzymes obtained from rat as a mammal source. Among various synthesized 3-amino-2,4-diarylbenzo[4,5]imidazo[1,2-a]pyrimidines, compound 3k exhibited the highest potency against both Saccharomyces cerevisiae α-glucosidase (IC = 16.4 ± 0.36 μM) and rat small intestine α-glucosidase (IC = 45.0 ± 8.2 μM). Moreover, the role of amine moiety on the observed activity was studied through substituting with chlorine and hydrogen resulted into a considerable deterioration on the inhibitory activity. Kinetic study and molecular docking study have confirmed the in-vitro results.

摘要

为了寻找新型、有效的α-葡萄糖苷酶抑制剂,通过在温和条件下加热 2-氨基苯并咪唑 1 和α-叠氮查耳酮 2 的混合物,合成了一系列多取代的 3-氨基-2,4-二芳基苯并[4,5]咪唑并[1,2-a]嘧啶 3a-ag。这种高效、简便的方法得到了具有广泛底物范围的理想化合物,产率良好至优秀。随后,研究了它们对酵母α-葡萄糖苷酶的抑制活性。结果表明,它们对α-葡萄糖苷酶的抑制活性的 IC 值范围为 16.4 ± 0.36 μM 至 297.0 ± 1.2 μM,证实了它们抑制α-葡萄糖苷酶的优异效力,这鼓励我们对来自哺乳动物大鼠的α-葡萄糖苷酶进行进一步研究。在所合成的各种 3-氨基-2,4-二芳基苯并[4,5]咪唑并[1,2-a]嘧啶中,化合物 3k 对酿酒酵母α-葡萄糖苷酶(IC = 16.4 ± 0.36 μM)和大鼠小肠α-葡萄糖苷酶(IC = 45.0 ± 8.2 μM)表现出最高的抑制活性。此外,通过用氯和氢取代胺基,研究了胺基在观察到的活性中的作用,导致抑制活性显著恶化。动力学研究和分子对接研究证实了体外结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d2e/8184976/7f4705be24ef/41598_2021_91473_Fig1_HTML.jpg

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