阿卡波糖
化学
酶
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
基因
护理部
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
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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