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How do nutritional antioxidants really work: Nucleophilic tone and para-hormesis versus free radical scavenging in vivo

机译:营养性抗氧化剂如何真正发挥作用:亲核基调和超兴奋作用与体内自由基清除作用

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We present arguments for an evolution in our understanding of how antioxidants in fruits and vegetables exert their health-protective effects. There is much epidemiological evidence for disease prevention by dietary antioxidants and chemical evidence that such compounds react in one-electron reactions with free radicals in vitro. Nonetheless, kinetic constraints indicate that in vivo scavenging of radicals is ineffective in antioxidant defense. Instead, enzymatic removal of nonradical electrophiles, such as hydroperoxides, in two-electron redox reactions is the major antioxidant mechanism. Furthermore, we propose that a major mechanism of action for nutritional antioxidants is the paradoxical oxidative activation of the Nrf2 (NF-E2-related factor 2) signaling pathway, which maintains protective oxidor-eductases and their nucleophilic substrates. This maintenance of "nucleophilic tone," by a mechanism that can be called "para-hormesis," provides a means for regulating physiological nontoxic concentrations of the nonradical oxidant electrophiles that boost antioxidant enzymes, and damage removal and repair systems (for proteins, lipids, and DNA), at the optimal levels consistent with good health.
机译:我们对水果和蔬菜中的抗氧化剂如何发挥其健康保护作用的理解提出了进化论。有许多流行病学证据表明,饮食中的抗氧化剂可以预防疾病,化学证据表明,这类化合物在体外与自由基发生单电子反应。尽管如此,动力学上的限制表明体内清除自由基在抗氧化剂防御中无效。取而代之的是,在两电子氧化还原反应中酶促去除非自由基亲电试剂(例如氢过氧化物)是主要的抗氧化机理。此外,我们提出营养抗氧化剂的主要作用机理是Nrf2(NF-E2相关因子2)信号通路的反常氧化激活,其维持保护性氧化酶及其亲核底物。通过一种可以称为“超兴奋”的机制来维持“亲核基调”,提供了一种手段来调节非自由基氧化剂亲电试剂的生理无毒浓度,从而增强抗氧化酶,并破坏去除和修复系统(对于蛋白质,脂质,以及DNA),并保持最佳健康状态。

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