阿卡波糖
餐后
化学
柿子
熊果酸
IC50型
槲皮素
蛇床子素
淀粉
淀粉酶
传统医学
食品科学
生物化学
酶
齐墩果酸
色谱法
糖尿病
抗氧化剂
植物
生物
医学
体外
内分泌学
替代医学
病理
作者
Zixuan Han,Weiwei Ren,Xiaojuan Liu,Nan Lin,Jialin Qu,Xuchang Duan,Bin Liu
标识
DOI:10.1016/j.ijbiomac.2023.128616
摘要
Persimmon tannins, particularly in immature persimmons, haven't yet received corresponding attention to research on therapy of diabetes mellitus in spite of high hypoglycemic activity. To accurately screening key hypoglycemic components, immature persimmon extracts were isolated and identified using enzyme affinity ultrafiltration and HRLC-ESI-MS/MS. Among them, Hederagenin (IC50 = 0.077 ± 0.003 mg/mL), Ursolic acid (IC50 = 0.001 ± 0.000 mg/mL) and Quercetin dehydrate (IC50 = 0.081 ± 0.001 mg/mL) exhibited the strongest inhibitory effect on α-amylase (HSA and PPA) and α-glucosidase, respectively. And their inhibition mechanisms were analyzed using multi-spectral analysis, atomic force microscope and molecular docking, indicating the bonding with starch digestion enzymes through hydrogen bonding and hydrophobic interaction, and generating the enzyme aggregation. In vivo starch-tolerance experiment further verified that these inhibitors could improve postprandial hyperglycemia (17.18 % ∼ 40.29 %), far more than acarbose. Suppressing, Hederagenin and Ursolic acid as triterpenoids appeared amazing potentiality to alleviate postprandial hyperglycemia, which suggested that IPE were comprehensive exploration values on prevention and treatment of hyperglycemia.
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