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Increased resistance to oxidation of betalain-enriched human low density lipoproteins.

机译:增加了富含βlain的人类低密度脂蛋白的抗氧化性。

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Betalains are natural pigments recently considered as compounds with potential antioxidative properties. In this work, ex vivo plasma spiking of pure either betanin or indicaxanthin, followed by isolation of low density lipoprotein (LDL), and measurement of its resistance to copper-induced oxidation, has been used to research if these betalains can bind to LDL and prevent oxidation of LDL lipids. When pooled human plasma from 10 healthy volunteers was incubated in the presence of 25-100 microM either betanin or indicaxanthin, incorporation of both compounds in LDL was observed, with a maximum binding of 0.52 +/- 0.08, and 0.51 +/- 0.06 nmoles of indicaxanthin and betanin, respectively, per mg LDL protein. Indicaxanthin-enriched and betanin-enriched LDL were more resistant than homologous native LDL to copper-induced oxidation, as assessed by the elongation of the induction period. The incorporated indicaxanthin, however, appeared twice as effective as betanin in increasing the length of the lag phase, while both compounds did not affect the propagation rate. Both betalains were consumed during the inhibition period of lipid oxidation, and delayed consumption of LDL-beta carotene. Indicaxanthin, but not betanin, prevented vitamin E consumption at the beginning of LDL oxidation, and prolonged the time of its utilization. The resistance of LDL to oxidation when vitamin E and indicaxanthin acted separately in a sequence, was lower than that measured when they were allowed to act in combination, indicating some synergistic interaction between the two molecules. No prooxidant effect over a large concentration range of either betanin or indicaxanthin was observed, when either betalain was added to the LDL system undergoing a copper-induced oxidation. These results show than indicaxanthin and betanin may bind to LDL, and are highly effective in preventing copper-induced lipid oxidation. Interaction with vitamin E appears to add a remarkable potential to indicaxanthin in the protection of LDL. Although molecular mechanisms remain uncompletely understood, various aspects of the action of betanin and indicaxanthin in preventing LDL lipid oxidation are discussed.
机译:Betalains是最近被视为具有潜在抗氧化特性的化合物的天然色素。在这项工作中,已经使用离体血浆中的纯甜菜碱或靛蓝黄素加标,然后分离出低密度脂蛋白(LDL),并测量了其对铜诱导的氧化的抗性,来研究这些甜菜碱是否可以与LDL和LDL结合。防止LDL脂质氧化。当将来自10名健康志愿者的人类血浆在存在25-100 microM的甜菜碱或双黄嘌呤的条件下孵育时,观察到两种化合物均以LDL掺入,最大结合量为0.52 +/- 0.08和0.51 +/- 0.06 nmoles每毫克LDL蛋白分别测定靛蓝黄质和甜菜碱的含量。如通过诱导期的延长所评估的,富含靛黄嘌呤和富含美白素的LDL比同源天然LDL对铜诱导的氧化更抗性。然而,掺入的靛黄嘌呤在增加滞后阶段的长度方面似乎是比甜菜碱的两倍,而两种化合物均不影响繁殖速率。两种甜菜碱都在脂质氧化的抑制期内被消耗,而LDL-β胡萝卜素的消耗被延迟。靛蓝黄素而不是甜菜碱可阻止LDL氧化开始时维生素E的消耗,并延长了维生素E的利用时间。当维生素E和靛黄质素按顺序分别作用时,LDL的抗氧化性低于允许它们联合作用时测得的抗性,表明这两个分子之间存在一些协同相互作用。当将甜菜碱中的任何一种添加到经过铜诱导的氧化的LDL系统中时,在大浓度的甜菜碱或双黄嘌呤中均未观察到促氧化剂作用。这些结果表明,靛蓝黄质和甜菜碱可能与LDL结合,并且在预防铜诱导的脂质氧化方面非常有效。与维生素E的相互作用似乎为靛蓝黄素增加了保护LDL的潜力。尽管仍未完全理解分子机制,但已讨论了甜菜碱和茚满黄嘌呤在防止LDL脂质氧化中作用的各个方面。

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