谷胱甘肽
生物化学
化学
CYP1A2
羟基化
代谢物
白藜芦醇
细胞色素P450
新陈代谢
戒毒(替代医学)
紫檀
去甲基化
微粒体
代谢途径
同工酶
酶
药理学
生物
病理
基因表达
DNA甲基化
替代医学
基因
医学
作者
Ying Li,Changcheng Sun,Yutian Zhang,Xiang Chen,Haoyan Huang,Luyao Han,Han Xing,Di Zhao,Xijing Chen,Yongjie Zhang
标识
DOI:10.1021/acs.jafc.2c05334
摘要
Pterostilbene (PTE), a dietary derivative of resveratrol, displayed pleiotropic health-promoting activities. This study aimed to explore the metabolic profiles and species differences of the phase I metabolism of PTE and to investigate subsequent detoxification after PTE bioactivation. PTE was found to be biotransformed to two pharmacologically active metabolites, pinostilbene and 3'-hydroxypterostilbene, in vivo and in vitro with substantial species differences. Human CYP1A2 was proved to be mainly responsible for the demethylation and 3'-hydroxylation of PTE, with its contribution to a demethylation of 94.5% and to a 3'-hydroxylation of 97.9%. An in vitro glutathione trapping experiment revealed the presence of an ortho-quinone intermediate formed by further oxidation of 3'-hydroxypterostilbene. Human glutathione S-transferase isoforms A2, T1, and A1 inactivated the ortho-quinone intermediate by catalyzing glutathione conjugation, implicating a potential protective pathway against PTE bioactivation-derived toxicity. Overall, this study provided a comprehensive view of PTE phase I metabolism and facilitated its further development as a promising nutraceutical.
科研通智能强力驱动
Strongly Powered by AbleSci AI