首页> 外文期刊>The Journal of Organic Chemistry >Vitamin E Chemistry. Studies into Initial Oxidation Intermediates of α-Tocopherol: Disproving the Involvement of 5a-C-Centered 'Chromanol Methide' Radicals
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Vitamin E Chemistry. Studies into Initial Oxidation Intermediates of α-Tocopherol: Disproving the Involvement of 5a-C-Centered 'Chromanol Methide' Radicals

机译:维生素E化学。 α-生育酚的初始氧化中间体的研究:改善以5a-C为中心的“色丁醇甲氧基”自由基的参与

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摘要

Contrary to concepts handed down in the literature from the early days of vitamin E research, one-electron oxidation of vitamin E does not involve 5a-C-centered radicals. A combined approach of analytical techniques, in particular electron paramagnetic resonance spectroscopy (EPR), organic synthesis of special derivatives, isotopic labeling, kinetic studies, and computational chemistry was used to re-evaluate the one-electron and two-electron oxidation chemistry of α-tocopherol (α-toc). EPR in combination with 5a-~(13)C-labeled compounds provided no indication of the involvement of 5a-C-centered radicals. Oxidation of special tocopherol derivatives were used to disprove the occurrence of 5a-C-centered one-electron intermediates. Additionally it was shown that those vitamin E reactions that were commonly evoked to plead for the involvement of C-centered tocopheryl radicals actually proceeded via heterolytic, i.e., non-radical, intermediates. The results will help to clear widely spread misunderstandings about the chemistry of vitamin E and will have mechanistic implications for the synthesis of tocopherol-based supramolecular structures and 5a-substituted α-tocopherol derivatives.
机译:与维生素E研究初期文献中提出的概念相反,维生素E的单电子氧化不涉及以5a-C为中心的自由基。分析技术,特别是电子顺磁共振光谱法(EPR),特殊衍生物的有机合成,同位素标记,动力学研究和计算化学的组合方法,用于重新评估α的单电子和二电子氧化化学-生育酚(α-toc)。 EPR与5a-〜(13)C标记的化合物结合使用,未提供涉及5a-C中心自由基的迹象。特殊生育酚衍生物的氧化被用来证明以5a-C为中心的单电子中间体的出现。此外,还表明,通常被诱使以C为中心的生育酚自由基参与的那些维生素E反应实际上是通过杂化即非自由基中间体进行的。结果将有助于消除对维生素E化学的广泛误解,并将对基于生育酚的超分子结构和5a-取代的α-生育酚衍生物的合成具有机械意义。

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