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首页> 外文期刊>Beilstein journal of organic chemistry. >Antioxidant potential of curcumin-related compounds studied by chemiluminescence kinetics, chain-breaking efficiencies, scavenging activity (ORAC) and DFT calculations
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Antioxidant potential of curcumin-related compounds studied by chemiluminescence kinetics, chain-breaking efficiencies, scavenging activity (ORAC) and DFT calculations

机译:通过化学发光动力学,链断裂效率,清除活性(ORAC)和DFT计算研究了姜黄素相关化合物的抗氧化潜力

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This study compares the ability to scavenge different peroxyl radicals and to act as chain-breaking antioxidants of monomers related to curcumin (1): dehydrozingerone (2), zingerone (3), (2Z,5E)-ethyl 2-hydroxy-6-(4-hydroxy-3-methoxyphenyl)-4-oxohexa-2,5-dienoate (4), ferulic acid (5) and their corresponding C2-symmetric dimers 6–9. Four models were applied: model 1 – chemiluminescence (CL) of a hydrocarbon substrate used for determination of the rate constants (kA) of the reactions of the antioxidants with peroxyl radicals; model 2 – lipid autoxidation (lipidAO) used for assessing the chain-breaking antioxidant efficiency and reactivity; model 3 – oxygen radical absorbance capacity (ORAC), which yields the activity against peroxyl radicals generated by an azoinitiator; model 4 – density functional theory (DFT) calculations at UB3LYP/6-31+G(d,p) level, applied to explain the structure–activity relationship. Dimers showed 2–2.5-fold higher values of kA than their monomers. Model 2 gives information about the effects of the side chains and revealed much higher antioxidant activity for monomers and dimers with α,β-unsaturated side chains. Curcumin and 6 in fact are dimers of the same monomer 2. We conclude that the type of linkage between the two “halves” by which the molecule is made up does not exert influence on the antioxidant efficiency and reactivity of these two dimers. The dimers and the monomers demonstrated higher activity than Trolox (10) in aqueous medium (model 3). A comparison of the studied compounds with DL-α-tocopherol (11), Trolox and curcumin is made. All dimers are characterized through lower bond dissociation enthalpies (BDEs) than their monomers (model 4), which qualitatively supports the experimental results.
机译:这项研究比较了清除不同过氧自由基和充当与姜黄素(1)有关的单体的链断裂抗氧化剂的能力:脱氢姜油酮(2),姜油酮(3),(2Z,5E)-乙基2-羟基-6- (4-羟基-3-甲氧基苯基)-4-氧己基-2,5-二烯酸酯(4),阿魏酸(5)及其相应的C2对称二聚体6-9。应用了四个模型:模型1 –用于确定抗氧化剂与过氧自由基反应速率常数(kA)的烃底物的化学发光(CL);模型2 –用于评估链断裂抗氧化剂效率和反应性的脂质自氧化(lipidAO);模型3 –氧自由基吸收能力(ORAC),其产生针对由偶氮引发剂产生的过氧自由基的活性;模型4 –在UB3LYP / 6-31 + G(d,p)级别上的密度泛函理论(DFT)计算,用于解释结构与活性之间的关系。二聚体显示的kA值比其单体高2–2.5倍。模型2提供了有关侧链影响的信息,并揭示了具有α,β-不饱和侧链的单体和二聚体的更高的抗氧化活性。姜黄素和6实际上是同一单体2的二聚体。我们得出的结论是,组成分子的两个“半体”之间的连接类型不会影响这两个二聚体的抗氧化效率和反应性。在水性介质(模型3)中,二聚体和单体的活性高于Trolox(10)。将所研究的化合物与DL-α-生育酚(11),Trolox和姜黄素进行比较。所有二聚体的特征是键合离解焓(BDE)比其单体(模型4)低,这在质量上支持了实验结果。

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