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首页> 外文期刊>Photochemical & photobiological sciences: the official journal of the European Photochemistry Association and the European Society for Photobiology >Fate of flavins in sensitized photodegradation of isohumulones and reduced derivatives: studies on formation of radicals via EPR combined with detailed product analyses
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Fate of flavins in sensitized photodegradation of isohumulones and reduced derivatives: studies on formation of radicals via EPR combined with detailed product analyses

机译:黄酮类化合物在异hu草酮和还原衍生物的光敏降解中的命运:结合EPR结合详细的产物分析方法研究自由基的形成

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摘要

Photodegradation of isohumulones accounts for formation of the lightstruck flavor in beer. The reactions involved are mediated by riboflavin, a natural photosensitizer present in beer in ppb quantities. The results of an investigation of this sensitized degradation process are presented herein. Product analyses and electron paramagnetic resonance spectroscopy, in steady-state as well as in time-resolved mode, offer extensive insight into the photophysical and photochemical details of the degradation mechanism. In contrast to energy transfer and Norrish type I α-cleavage reactions that take place on direct irradiation of isohumulones, the sensitization pathway proceeds via one-electron redox chemistry involving the excited triplet state of riboflavin and derivatives. The flavin semiquinone radical thus formed could be readily detected, either by steady state or by time-resolved electron paramagnetic resonance spectroscopy. Superimposed signals in the spectra revealed the presence of radical fragments derived from isohumulones or tetrahydroisohumulones, which, on recombination with riboflavin semiquinone radicals, produced stable reaction products that were identified by HPLC-MS. However, no superimposed signals were observed on sensitized irradiation of dihydroisohumulones.
机译:异hu草酮的光降解导致啤酒中形成浅吸味。涉及的反应由核黄素介导,核黄素是啤酒中以ppb量存在的天然光敏剂。本文介绍了该致敏降解过程的研究结果。稳态和时间分辨模式下的产品分析和电子顺磁共振波谱,都可以深入了解降解机理的光物理和光化学细节。与在异of草酮的直接照射下发生的能量转移和Norrish I型α裂解反应相反,敏化途径是通过涉及核黄素和衍生物的三重激发态的单电子氧化还原化学进行的。由此形成的黄素半醌自由基可以通过稳态或通过时间分辨电子顺磁共振光谱法容易地检测。光谱中的叠加信号表明存在衍生自异hu草酮或四氢异hu草酮的自由基片段,这些片段与核黄素半醌自由基重组后,可生成稳定的反应产物,可通过HPLC-MS进行鉴定。但是,在二氢异hu草酮的敏化照射下没有观察到叠加信号。

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