硫
化学
部分
取代基
立体化学
侧链
烷基
阿卡波糖
缩醛
残留物(化学)
对接(动物)
酶
有机化学
盐(化学)
聚合物
护理部
医学
作者
Xumin He,J H Yi,Jianchen Yang,Genzoh Tanabe,Osamu Muraoka,Weijia Xie
出处
期刊:Molecules
[Multidisciplinary Digital Publishing Institute]
日期:2025-07-04
卷期号:30 (13): 2856-2856
被引量:1
标识
DOI:10.3390/molecules30132856
摘要
A group of sulfonium and selenonium salts bearing diverse benzylidene acetal substituents on their side chain moiety were designed and synthesized. Compared with our previous study, structural modifications in this study focused on multi-substitution of the phenyl ring and bioisosteric replacements at the sulfonium cation center. In vitro biological evaluation showed that selenonium replacement could significantly improve their α-glucosidase inhibitory activity. The most potent inhibitor 20c (10.0 mg/kg) reduced postprandial blood glucose by 48.6% (15 min), 52.8% (30 min), and 48.1% (60 min) in sucrose-loaded mice, outperforming acarbose (20.0 mg/kg). Docking studies of 20c with ntMGAM presented a new binding mode. In addition to conventional hydrogen bonding and electrostatic interaction, amino residue Ala-576 was first identified to contribute to binding affinity through π-alkyl and alkyl interactions with the chlorinated substituent and aromatic ring. The selected compounds exhibited a high degree of safety in cytotoxicity tests against normal cells. Kinetic characterization of α-glucosidase inhibition confirmed a fully competitive inhibitory mode of action for these sulfonium salts.
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