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二十碳五烯酸酯在水性胶束中比亚油酸酯氧化能力更低的机制。

Mechanism of lower oxidizability of eicosapentaenoate than linoleate in aqueous micelles.

作者信息

Yazu K, Yamamoto Y, Ukegawa K, Niki E

机构信息

Department of Energy Resources, National Institute for Resources and Environment, Ibaraki, Japan.

出版信息

Lipids. 1996 Mar;31(3):337-40. doi: 10.1007/BF02529881.

Abstract

The aerobic oxidation kinetics of methyl eicosapentaenoate (20:5n-3) and methyl linoleate (18:2n-6) were compared in homogeneous chlorobenzene solution and in Triton X-100 aqueous micelles at 37 degrees C. The rate of disappearance of 20:5n-3 was two times faster than that of 18:2n-6 in chlorobenzene, while the former was five times slower than the latter in aqueous micelles. It was also observed that delta O2 = delta 18:2n-6 and delta O2 = 2 delta 20:5n-3 in aqueous micelles. In the oxidation of a 1:1 mixture of 20:5n-3 and 18:2n-6 in micelles, the rate of disappearance of 20:5n-3 was 3.6 times faster than that of 18:2n-6, and the rate of total substrate disappearance was reduced by a factor of 5 as compared with 18:2n-6 oxidation. These data suggest that the peroxyl radical derived from 20:5n-3 is more polar than that from 18:2n-6, and the former is likely to diffuse from the core to the micelle surface. This lowers the oxidizability for 20:5n-3 in aqueous micelles by enhancing the termination reaction rate for peroxyl radicals and by reducing the rate of propagation since there may be more 20:5n-3 peroxyl radicals at the surface than in the micelle core.

摘要

在37℃下,比较了二十碳五烯酸甲酯(20:5n-3)和亚油酸甲酯(18:2n-6)在均相氯苯溶液和Triton X-100水相胶束中的好氧氧化动力学。在氯苯中,20:5n-3的消失速率比18:2n-6快两倍,而在水相胶束中,前者比后者慢五倍。还观察到在水相胶束中,ΔO2 = Δ18:2n-6且ΔO2 = 2Δ20:5n-3。在胶束中20:5n-3和18:2n-6的1:1混合物的氧化过程中,20:5n-3的消失速率比18:2n-6快3.6倍,与18:2n-6氧化相比,总底物消失速率降低了5倍。这些数据表明,源自20:5n-3的过氧自由基比源自18:2n-6的过氧自由基极性更强,且前者可能从胶束核心扩散到胶束表面。这通过提高过氧自由基的终止反应速率以及降低传播速率,降低了水相胶束中20:5n-3的氧化能力,因为胶束表面的20:5n-3过氧自由基可能比胶束核心更多。

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