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油包水型橄榄油乳液中亲脂性自由基引发的脂质氧化。

Lipid oxidation in water-in-olive oil emulsions initiated by a lipophilic radical source.

机构信息

Consorzio per lo sviluppo dei sistemi a grande interfase C/O Department of Food Technology, DISTAAM, Università del Molise, Via De Sanctis 86100, Campobasso, Italy.

出版信息

J Phys Chem B. 2010 Mar 18;114(10):3550-8. doi: 10.1021/jp911288e.

Abstract

The lipophilic 2,2'-azobis(2,4-dimethylvaleronitrile) (AMVN) was used to study thoroughly the oxidation reaction in a model water-in-olive oil emulsion system. This radical species decomposes thermally generating a constant flux of radicals in the oil phase. The dissociation constant k(d) in olive oil at 40 degrees C for AMVN was calculated as 2.5 x 10(-4) min(-1) and the rate of initiation of the oxidation reaction, R(i) was calculated by using vitamin E as antioxidant. The olive oil oxidation in emulsion was monitored by measuring the hydroperoxide concentration by a sensitive fluorimetric method. The DPPP (diphenyl-1-pyrenylphosphine) was used as a probe because it reacts stoichiometrically with hydroperoxides to yield a fluorescent product, the diphenyl-1-pyrenylphosphine oxide (DPPP-O). Oxidation data together with emulsion droplet size data showed that in the presence of radical initiator and a large interface, the oxidation reaction is accelerated in W/Olive oil emulsion with respect to whole oil. The mediation of the surface area of water droplets is surely involved in this process because the addition of saturated solutions of ascorbic acid (AA) dispersed in the oil brings about the strong reduction of the oxidation rate even in the presence of the highest AMVN quantity.

摘要

脂溶性 2,2'-偶氮双(2,4-二甲基戊腈)(AMVN)被用于深入研究模型水包油乳液体系中的氧化反应。这种自由基在热分解时会在油相中产生恒定的自由基通量。在 40°C 下,AMVN 在橄榄油中的离解常数 k(d)计算为 2.5 x 10(-4) min(-1),并使用维生素 E 作为抗氧化剂计算了氧化反应的引发速率 R(i)。通过使用灵敏的荧光法测量过氧化物浓度来监测乳液中的橄榄油氧化。DPPP(二苯基-1-芘基膦)被用作探针,因为它与过氧化物发生计量反应,生成荧光产物二苯基-1-芘基膦氧化物(DPPP-O)。氧化数据以及乳液液滴尺寸数据表明,在自由基引发剂和大界面存在的情况下,相对于整个油相,W/Olive 油乳液中的氧化反应会加速。由于添加分散在油中的抗坏血酸(AA)的饱和溶液会导致即使在最高 AMVN 量存在的情况下氧化速率也会强烈降低,因此水相表面积的介导肯定参与了这个过程。

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