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首页> 外文期刊>LWT-Food Science & Technology >Different distribution of free and bound phenolic compounds affects the oxidative stability of tea seed oil: A novel perspective on lipid antioxidation
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Different distribution of free and bound phenolic compounds affects the oxidative stability of tea seed oil: A novel perspective on lipid antioxidation

机译:自由和结合酚类化合物的不同分布影响了茶种子油的氧化稳定性:脂质抗氧化的新型视角

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摘要

Bound phenolic compounds have been widely investigated in food from plants, while research on vegetable oils is limited. Thus, to comparatively analyse free and bound phenolic compounds in a lipid system, different distributions of free and bound phenolic compounds were prepared by exogenous addition of chemical standards to model tea seed oil in this work. For that, the phenolic composition was quantified with UHPLC-QqQ-MS/MS, and the antioxidant capacity was evaluated by the DPPH assay and the Rancimat method. After pre-optimisation of concentrations, the results showed that the oil sample contained 12.3% bound phenolic compounds after incubation for 6 h, higher than the other samples (0, 2, 4, 8, 10 and 12 h) with equal addition. This sample also had a longer reduction time during Rancimat oxidation, corresponding to the higher total DPPH radical scavenging capacity. Further, docking, molecular dynamics and quantum mechanics analysis revealed that intermolecular forces might account for binding forms between phenolic compounds and glycerides, including hydrogen bonds and hydrophobic interactions. In addition, the structure-activity relationship of bound phenolic compounds was explored tentatively. Conclusively, bound phenolic compounds in vegetable oil, probably formed by intermolecular interactions, enhanced antioxidant capacity, a novel perspective on the antioxidation in lipids.
机译:已染色的酚类化合物已被广泛研究植物的食物中,而植物油的研究有限。因此,为了在脂质体系中进行比较分析自由和结合的酚类化合物,通过在这项工作中外源添加化学标准来制备不同的自由和结合酚类化合物的分布。为此,用UHPLC-QQQ-MS / MS量化酚醛组合物,通过DPPH测定和抗氧化能力和Rancimat方法评估抗氧化能力。在预先优化浓度之后,结果表明,孵育后,油样含有12.3%的酚醛化合物6小时,比其他样品(0,2,4,8,10和12h)高,加入等相等。该样品在粗湿式氧化过程中还具有更长的减少时间,对应于较高的总DPPH激进清除能力。此外,对接,分子动力学和量子力学分析表明,分子间力可能考虑酚类化合物和甘油酯之间的结合形式,包括氢键和疏水相互作用。此外,暂时探讨了结合酚类化合物的结构 - 活性关系。结论,植物油中染色的酚类化合物,可能是由分子间相互作用形成的,增强抗氧化能力,脂质中抗氧化的新颖性观点。

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