Xie Zhenzhen, Wang Guangcheng, Wang Jing, Chen Ming, Peng Yaping, Li Luyao, Deng Bing, Chen Shan, Li Wenbiao
College of Chemistry and Chemical Engineering, Hunan Engineering Laboratory for Analyse and Drugs Development of Ethnomedicine in Wuling Mountains, Jishou University, Jishou 416000, China.
Molecules. 2017 Apr 20;22(4):659. doi: 10.3390/molecules22040659.
A series of novel isatin-thiazole derivatives were synthesized and screened for their in vitro α-glucosidase inhibitory activity. These compounds displayed a varying degree of α-glucosidase inhibitory activity with IC ranging from 5.36 ± 0.13 to 35.76 ± 0.31 μm as compared to the standard drug acarbose (IC = 817.38 ± 6.27 μm). Among the series, compound bearing a hydroxyl group at the 4-position of the right phenyl and 2-fluorobenzyl substituent at the 1-positions of the 5-methylisatin displayed the highest inhibitory activity with an IC value of 5.36 ± 0.13 μm. Molecular docking studies revealed the existence of hydrophobic interaction, CH-π interaction, arene-anion interaction, arene-cation interaction, and hydrogen bond between these compounds and α-glucosidase enzyme.
合成了一系列新型异吲哚酮 - 噻唑衍生物,并对其体外α - 葡萄糖苷酶抑制活性进行了筛选。与标准药物阿卡波糖(IC = 817.38 ± 6.27 μm)相比,这些化合物表现出不同程度的α - 葡萄糖苷酶抑制活性,IC范围为5.36 ± 0.13至35.76 ± 0.31 μm。在该系列中,在右侧苯基的4 - 位带有羟基且在5 - 甲基异吲哚酮的1 - 位带有2 - 氟苄基取代基的化合物表现出最高的抑制活性,IC值为5.36 ± 0.13 μm。分子对接研究表明,这些化合物与α - 葡萄糖苷酶之间存在疏水相互作用、CH - π相互作用、芳烃 - 阴离子相互作用、芳烃 - 阳离子相互作用和氢键。