毛花素
芒柄花素
化学
根(腹足类)
抗氧化剂
异黄酮
电子转移
反应速率常数
光化学
类黄酮
动力学
染料木素
有机化学
医学
大豆黄酮
植物
物理
量子力学
内科学
生物
作者
Xiao‐Qin Lu,Shu Qin,Jindong Li
出处
期刊:Molecules
[Multidisciplinary Digital Publishing Institute]
日期:2023-06-28
卷期号:28 (13): 5039-5039
被引量:8
标识
DOI:10.3390/molecules28135039
摘要
As a valuable traditional Chinese herbal medicine, Radix Astragali has attracted much attention due to its extensive pharmacological activities. In this study, density functional theory (DFT) was used thermodynamically and kinetically in detail to predict the antioxidant activity and reaction mechanisms involved in the free radical scavenging reactions of three representative isoflavonoids (formononetin, calycosin, and calycosin-7-glucoside) extracted from Radix Astragali. Three main mechanisms, including hydrogen atom transfer (HAT), proton transfer after electron transfer (SET-PT), and sequential proton loss electron transfer (SPLET) were examined by calculating the thermodynamic parameters. It was found that HAT is the predominant mechanism in the gas phase, while SPLET is supported in the solvent environment. The isoflavonoids’ order of antioxidant activity was estimated as: calycosin > calycosin-7-glucoside > formononetin. For the calycosin compound, the result revealed the feasibility of double HAT mechanisms, which involve the formation of stable benzodioxazole with significantly reduced energy in the second H+/e− reaction. In addition, the potential energy profiles and kinetic calculations show that the reaction of •OH into the 3′-OH site of calycosin has a lower energy barrier (7.2 kcal/mol) and higher rate constant (4.55 × 109 M−1 s−1) compared with other reactions in the gas phase.
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