Luna P, de la Fuente M A, Salvador D, Márquez-Ruiz G
Instituto del Frío (CSIC), José Antonio Novais, 10, 28040, Madrid, Spain.
Lipids. 2007 Dec;42(12):1085-92. doi: 10.1007/s11745-007-3113-x. Epub 2007 Sep 25.
The oxidation kinetics of conjugated methyl linoleate was compared with that of non-conjugated methyl linoleate under mild oxidation conditions (30 degrees C in the dark). Samples of methyl 9-cis,11-trans-linoleate, methyl 10-trans,12-cis linoleate and methyl 9-cis,12-cis linoleate were assayed separately and in mixtures. For comparative purposes, methyl alpha-linolenate and methyl oleate were also used. Two complementary analytical approaches were selected to monitor the progress of oxidation, (1) the traditional follow-up of residual substrate by gas liquid chromatography, and (2) an analytical procedure by high-performance size-exclusion chromatography (HPSEC) for direct measurement of the oxidation compounds formed. The HPSEC method enabled us to quantitate oxidized monomers, dimers and polymers concomitantly in a rapid and direct analysis. Results showed that conjugated methyl linoleate samples oxidized later than their non-conjugated counterparts, and showed a very different oxidation pattern. Thus, formation of oxidized monomers was negligible and the first and major compounds formed were polymerization products. Also, under the conditions used, non-conjugated and conjugated methyl linoleate samples in 1:1 mixtures led to decreased oxidation rate of non-conjugated methyl linoleate and increased oxidation rate of conjugated methyl linoleate. This study supports the view that oxidation kinetics of conjugated dienes differ substantially from that of methylene-interrupted dienes.
在温和氧化条件下(30℃黑暗环境),比较了共轭亚油酸甲酯与非共轭亚油酸甲酯的氧化动力学。分别对9-顺式,11-反式亚油酸甲酯、10-反式,12-顺式亚油酸甲酯和9-顺式,12-顺式亚油酸甲酯样品以及混合样品进行了测定。为作比较,还使用了α-亚麻酸甲酯和油酸甲酯。选择了两种互补的分析方法来监测氧化进程:(1)通过气相色谱法对残留底物进行传统跟踪;(2)采用高效尺寸排阻色谱法(HPSEC)直接测量所形成的氧化产物的分析程序。HPSEC方法使我们能够在快速直接的分析中同时对氧化单体、二聚体和聚合物进行定量。结果表明,共轭亚油酸甲酯样品比其非共轭对应物氧化得更晚,并且呈现出非常不同的氧化模式。因此,氧化单体的形成可以忽略不计,形成的首要和主要化合物是聚合产物。此外,在所使用的条件下,1:1混合物中的非共轭和共轭亚油酸甲酯样品导致非共轭亚油酸甲酯的氧化速率降低,共轭亚油酸甲酯的氧化速率增加。这项研究支持了共轭二烯的氧化动力学与亚甲基间断二烯的氧化动力学有很大差异的观点。