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首页> 外文期刊>International Journal of Quantum Chemistry >Density functional theory study of metabolic derivatives of the oxidation of paracetamol
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Density functional theory study of metabolic derivatives of the oxidation of paracetamol

机译:扑热息痛氧化代谢衍生物的密度泛函理论研究

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The hypothetical oxidation mechanism of paracetamol (PAR) has been investigated using quantum chemical calculations at the density functional theory (DFT)/B3LYP theory level with the 6-31G* basis set. The calculations using Cpd I for the cytochrome P-450 model showed that, for PAR oxidation, an initial hydrogen atom abstraction from the phenolic hydroxyl group is thermodynamically more favored by 12.04 kcal mol(-1) than from the acetylamine nitrogen atom. Spin density calculations were performed for the radical formed by the hydrogen abstraction from the phenolic hydroxyl group and showed that the unpaired electron remains predominantly localized on the 0, phenolic oxygen (39%), C-3 and C-5 carbon atoms at ortho positions (27% and 26%, respectively) and C-1 at para position (33%). The results also show that the formations of dimer and trimer radicals are energetically more favored than the formation of NAPSQI, which is in agreement with observed experimental results. (C) 2006 Wiley Periodicals, Inc.
机译:在密度泛函理论(DFT)/ B3LYP理论水平上使用6-31G *基集,使用量子化学计算研究了扑热息痛(PAR)的假设氧化机理。对于细胞色素P-450模型,使用Cpd I进行的计算表明,对于PAR氧化,从热力学上讲,从苯酚羟基提取氢原子比从乙酰胺氮原子上更容易被12.04 kcal mol(-1)吸收。对从酚羟基中夺氢而形成的自由基进行了自旋密度计算,结果表明未配对的电子主要位于邻位的0,酚氧(39%),C-3和C-5碳原子上(分别为27%和26%)和C-1在对位(33%)。结果还表明,与NAPSQI的形成相比,在能量上更倾向于形成二聚体和三聚体自由基,这与观察到的实验结果一致。 (C)2006年Wiley Periodicals,Inc.

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