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Home > Literature List > Catalytic approach to in vivo metabolism of atractylenolide III using biomimetic iron–porphyrin complexes†

Catalytic approach to in vivo metabolism of atractylenolide III using biomimetic iron–porphyrin complexes†

Journal name:Royal Society Chemistry
Literature No.:
Literature Url: https://pubs.rsc.org/en/content/articlehtml/2021/ra/d1ra05014a
Date publication:18th September 2021
Atractylenolide III (AT-III) is a pharmacologically effective phytochemical and is known to be oxygenated during systemic metabolism mainly by cytochrome P450 enzymes (CYP450s), iron-containing porphyrin-based oxygenases. In rat plasma samples, the oxygenated metabolite of orally ingested AT-III was determined using liquid chromatography/mass spectrometry and the oxygenated form of AT-III was maintained at higher levels than the original form of AT-III. In situ catalytic reactions using the iron(IV)-oxo porphyrin π-cation radical complex, [(tmp+˙)FeIV(O)]+, demonstrated that both H-atom abstraction and an oxygen rebound mechanism participated in the oxygenation process of AT-III. Density functional theory (DFT) confirmed the oxidative transformation occurred at the 4th and 10th carbon positions of AT-III. Co-treatment with acetaminophen had different effects between in vivo and in situ models of AT-III metabolism. AT-III was metabolized via an oxygenation process in the rat body, where CYP450 and other O2-activating metalloenzymes might participate in the metabolism. The present work provided the oxidative metabolism of AT-III using an in vivo model parallel with in situ biomimetic reaction models.
Atractylenolide III (AT-III) was purchased from ChemFace (Wuhan, Hubei, China).
As the internal standard (IS), fraxinellone was purchased from Chengdu Biopurify
Phytochemicals Ltd. (Chengdu, Sichuan, China). 
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