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Effects of Riboflavin-photosensitized Oxidation on the Formation of Volatile Compounds in Oleic Acid Model Systems

机译:核黄素光敏氧化对油酸模型体系中挥发性化合物形成的影响

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Formation mechanisms of light-induced volatile compounds were studied using riboflavin-photosensitized oleic acid model systems. Volatile compounds in model systems with 4000 ppm riboflavin at 35 deg C under light or in the dark for 39 hr were isolated and identified by a combination of solid phase microextraction (SPME), gas chromatography (GC), and mass spectrometry (MS). Total volatiles in oleic acid with riboflavin under light for 13, 26, and 39 hr increased by 90, 190, and 270%, respectively, compared to those in oleic acid without riboflavin under light. Total volatiles in samples without riboflavin under light or samples with riboflavin in the dark were not significant in tested conditions (p > 0.05). Riboflavin did not act as a photosensitizer when it was dispersed in oleic acid. Heptane, octane, heptanal, octanal, nonanal, and 2-nonenal were significantly increased in riboflavin-photosensitized samples compared to those in samples without riboflavin (p < 0.05). Light-induced volatile compounds including heptanal and 2-nonenal from oleic acid could be explained using singlet oxygen oxidation, the formation mechanism of which were not understood using triplet oxygen oxidation. These results will help to understand volatile formation in oleic acid containing foods stored under light.
机译:使用核黄素光敏油酸模型系统研究了光诱导的挥发性化合物的形成机理。通过固相微萃取(SPME),气相色谱(GC)和质谱(MS)的组合分离并鉴定了在35°C下在光环境中或在黑暗中39小时具有4000 ppm核黄素的模型系统中的挥发性化合物。与不含核黄素的油酸在光照下13、26和39小时相比,含核黄素的油酸总挥发物分别增加了90%,190%和270%。在测试条件下,没有核黄素的样品在黑暗中的总挥发分或在黑暗中含核黄素的样品中的总挥发分在测试条件下均不显着(p> 0.05)。核黄素分散在油酸中时不充当光敏剂。与没有核黄素的样品相比,核黄素光敏样品中的庚烷,辛烷,庚醛,辛酸,壬醛和2-壬烯显着增加(p <0.05)。用单重态氧氧化可以解释光诱导的挥发性化合物,包括来自油酸的庚醛和2-壬烯醛,而使用三重态氧氧化则无法理解其形成机理。这些结果将有助于了解在光照下储存的含油酸食物中的挥发物形成。

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