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Changing oxidation in whey fat concentrate upon addition of green tea extract

机译:加入绿茶提取物后,乳清脂肪浓缩物中的氧化改变

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Whey products with a high fat content are recognised to be more prone to oxidation compared to other dairy products, since whey fat is high in unsaturated phospholipids. Thus, strategies for inhibition of oxidation during processing and storage of high-fat whey products need to be developed. The purpose of the present study was to find an antioxidant which effectively inhibits oxidation in whey fat concentrate (WFC) during accelerated storage (60 °C) and to investigate the effect of the antioxidant on primary and secondary oxidation. The development of secondary lipid oxidation products was measured using a number of different antioxidants: Trolox (TRX), propyl gallate (PG), Grindox 1021 (GRX), green tea extract (GTE) and rosemary extract (RE). The development of the secondary lipid oxidation product hexanal was inhibited by all the tested antioxidants, and GTE was found to be the most efficient of the tested antioxidants. The effect of GTE concentrations (0, 50 and 500 μg/g whey solid) on oxidation was investigated further by measuring hydroperoxide and hexanal accumulation during accelerated storage (60 °C). Hydroperoxides were accumulated after a lag phase which was prolonged in the samples supplemented with 500 μg GTE/g whey solid. The accumulation of hexanal was highly reduced in the presence of GTE, and hexanal was accumulated without a lag phase. Thus, the results show that GTE effectively inhibits oxidation in WFC and suggest that GTE acts both as a chain-breaking antioxidant and as a transition metal ion chelator.
机译:与其他乳制品相比,具有高脂肪含量的乳清产品被认为更易于氧化,因为乳清脂肪中的不饱和磷脂含量很高。因此,需要开发在高脂乳清产品的加工和储存期间抑制氧化的策略。本研究的目的是找到一种在加速储存(60°C)时能有效抑制乳清浓缩油(WFC)氧化的抗氧化剂,并研究抗氧化剂对一次和二次氧化的影响。使用多种不同的抗氧化剂测量二级脂质氧化产物的发展:Trolox(TRX),没食子酸丙酯(PG),Grindox 1021(GRX),绿茶提取物(GTE)和迷迭香提取物(RE)。所有测试的抗氧化剂均抑制了次级脂质氧化产物己醛的产生,并且发现GTE是测试的抗氧化剂中最有效的。 GTE浓度(0、50和500μg/ g乳清固体)对氧化的影响通过在加速储存(60°C)期间测量氢过氧化物和己醛积累来进一步研究。滞后阶段后积累了过氧化氢,该阶段在补充了500μgGTE / g乳清固体的样品中得到延长。在GTE存在下,己醛的积累被大大减少,并且己醛的积累没有滞后阶段。因此,结果表明,GTE有效地抑制了WFC中的氧化,表明GTE既可以作为链断裂抗氧化剂,又可以作为过渡金属离子螯合剂。

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