Discovery of novel 4,5-diphenyl-imidazol-α-aminophosphonate hybrids as promising anti-diabetic agents: Design, synthesis, in vitro, and in silico enzymatic studies

阿卡波糖 化学 IC50型 生物信息学 体外 铅化合物 淀粉酶 立体化学 对接(动物) 组合化学 生物化学 医学 护理部 基因
作者
Samira Zareei,Sara Ranjbar,Mohammad Hossein Mohammadi,Younes Ghasemi,Sahand Golestani,Laya Avizheh,Ali Moazzam,Bagher Larijani,Maryam Mohammadi‐Khanaposhtani,Majid Tarahomi,Mohammad Mahdavi,Nastaran Sadeghian,Parham Taslimi
出处
期刊:Bioorganic Chemistry [Elsevier BV]
卷期号:141: 106846-106846
标识
DOI:10.1016/j.bioorg.2023.106846
摘要

Herein, a novel series of 4,5-diphenyl-imidazol-α-aminophosphonate hybrids 4a-m was designed, synthesized, and evaluated as new anti-diabetic agents. These compounds were evaluated against two important target enzymes in the diabetes treatment: α-glucosidase and α-amylase. These new compounds were synthesized in three steps and characterized by different spectroscopic techniques. The in vitro evaluations demonstrated that all the synthesized compounds 4a-m were more potent that standard inhibitor acarbose against studied enzymes. Among these compound, the most potent compound against both studied enzymes was 3-bromo derivative 4l. The latter compound with IC50 = 5.96 nM was 18-times more potent than acarbose (IC50 = 106.63 nM) against α-glucosidase. Moreover, compound 4l with IC50 = 1.62 nM was 27-times more potent than acarbose (IC50 = 44.16 nM) against α-amylase. Molecular docking analysis revealed that this compound well accommodated in the binding site of α-glucosidase and α-amylase enzymes with notably more favorable binding energy as compared to acarbose.

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