Asgari Mohammad Sadegh, Mohammadi-Khanaposhtani Maryam, Sharafi Zeinab, Faramarzi Mohammad Ali, Rastegar Hossein, Nasli Esfahani Ensieh, Bandarian Fatemeh, Ranjbar Rashidi Parviz, Rahimi Rahmatollah, Biglar Mahmood, Mahdavi Mohammad, Larijani Bagher
School of Chemistry, College of Science, University of Tehran, Tehran, Iran.
Cellular and Molecular Biology Research Center, Health Research Institute, Babol University of Medical Sciences, Babol, Iran.
Mol Divers. 2021 May;25(2):877-888. doi: 10.1007/s11030-020-10072-8. Epub 2020 Mar 18.
Fourteen novel 4,5-diphenyl-imidazol-1,2,3-triazole hybrids 8a-n were synthesized with good yields by performing click reaction between the 4,5-diphenyl-2-(prop-2-yn-1-ylthio)-1H-imidazole and various benzyl azides. The synthesized compounds 8a-n were evaluated against yeast α-glucosidase, and all these compounds exhibited excellent inhibitory activity (IC values in the range of 85.6 ± 0.4-231.4 ± 1.0 μM), even much more potent than standard drug acarbose (IC = 750.0 μM). Among them, 4,5-diphenyl-imidazol-1,2,3-triazoles possessing 2-chloro and 2-bromo-benzyl moieties (compounds 8g and 8i) demonstrated the most potent inhibitory activities toward α-glucosidase. The kinetic study of the compound 8g revealed that this compound inhibited α-glucosidase in a competitive mode. Furthermore, docking calculations of these compounds were performed to predict the interaction mode of the synthesized compounds in the active site of α-glucosidase. A novel series of 4,5-diphenyl-imidazol-1,2,3-triazole hybrids 8a-n was synthesized with good yields by performing click reaction between the 4,5-diphenyl-2-(prop-2-yn-1-ylthio)-1Himidazole and various benzyl azides. The synthesized compounds 8a-n were evaluated against yeast α-glucosidase and all these compounds exhibited excellent inhibitory activity (IC50 values in the range of 85.6 ± 0.4-231.4 ± 1.0 μM), even much more potent than standard drug acarbose (IC50 = 750.0 μM).
通过使4,5-二苯基-2-(丙-2-炔-1-基硫代)-1H-咪唑与各种苄基叠氮化物进行点击反应,以良好的产率合成了14种新型的4,5-二苯基-咪唑并[1,2,3]三唑杂化物8a-n。对合成的化合物8a-n进行了抗酵母α-葡萄糖苷酶活性评估,所有这些化合物均表现出优异的抑制活性(IC50值在85.6±0.4 - 231.4±1.0μM范围内),甚至比标准药物阿卡波糖(IC50 = 750.0μM)更具效力。其中,具有2-氯和2-溴苄基部分的4,5-二苯基-咪唑并[1,2,3]三唑(化合物8g和8i)对α-葡萄糖苷酶表现出最有效的抑制活性。化合物8g的动力学研究表明,该化合物以竞争模式抑制α-葡萄糖苷酶。此外,对这些化合物进行了对接计算,以预测合成化合物在α-葡萄糖苷酶活性位点的相互作用模式。通过使4,5-二苯基-2-(丙-2-炔-1-基硫代)-1H-咪唑与各种苄基叠氮化物进行点击反应,以良好的产率合成了一系列新型的4,5-二苯基-咪唑并[1,2,3]三唑杂化物8a-n。对合成的化合物8a-n进行了抗酵母α-葡萄糖苷酶活性评估,所有这些化合物均表现出优异的抑制活性(IC50值在85.6±0.4 - 231.4±1.0μM范围内),甚至比标准药物阿卡波糖(IC50 = 750.0μM)更具效力。