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首页> 外文期刊>Journal of the American Oil Chemists' Society >Oxidation in fish lipids during thermal stress as studied by C-13 nuclear magnetic resonance spectroscopy
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Oxidation in fish lipids during thermal stress as studied by C-13 nuclear magnetic resonance spectroscopy

机译:C-13核磁共振波谱研究热应激过程中鱼脂质中的氧化

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摘要

C-13 Nuclear magnetic resonance spectroscopy has been applied to elucidate the mechanism of lipid oxidation occurring during thermal treatment of fish. Effects of temperature and time of processing have been studied by means of a model system of lipids, extracted from salmon (Salmo salar) muscle, to simulate industrial conditions of canning. Unsaturated fatty acids located at the sn-2 position of the glycerol moiety were the most prone to oxidative damage. Regarding the mechanism of the reaction, results inferred from olefinic and methylenic resonances indicated a higher susceptibility of the allylic sites closest to the carbonyl group, followed by those placed near the methyl terminal group. Unsaturations located in the middle of the carbon chain did not show much damage. The glyceryl region provided an unusual resonance at 53.4 ppm, which could be assigned to a hydroxylic compound formed during process. [References: 29]
机译:C-13核磁共振波谱已用于阐明鱼类热处理过程中脂质氧化的机理。已经通过从鲑鱼(Salmo salar)肌肉提取的脂质模型系统研究了温度和加工时间的影响,以模拟罐装的工业条件。位于甘油部分的sn-2位置的不饱和脂肪酸最容易发生氧化损伤。关于反应机理,从烯烃和亚甲基共振推断的结果表明,最接近羰基的烯丙基位点,其次是靠近甲基末端基团的烯丙基位点的敏感性更高。碳链中间的不饱和键并未显示出太大的破坏。甘油基区域在53.4 ppm处提供了异常的共振,这可以归因于过程中形成的羟基化合物。 [参考:29]

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