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Uric acid provides an antioxidant defense in humans against oxidant- and radical-caused aging and cancer: a hypothesis.

机译:尿酸可为人类提供抗氧化剂防御,以抗氧化剂和自由基引起的衰老和癌症:一种假设。

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摘要

During primate evolution, a major factor in lengthening life-span and decreasing age-specific cancer rates may have been improved protective mechanisms against oxygen radicals. We propose that one of these protective systems is plasma uric acid, the level of which increased markedly during primate evolution as a consequence of a series of mutations. Uric acid is a powerful antioxidant and is a scavenger of singlet oxygen and radicals. We show that, at physiological concentrations, urate reduces the oxo-heme oxidant formed by peroxide reaction with hemoglobin, protects erythrocyte ghosts against lipid peroxidation, and protects erythrocytes from peroxidative damage leading to lysis. Urate is about as effective an antioxidant as ascorbate in these experiments. Urate is much more easily oxidized than deoxynucleosides by singlet oxygen and is destroyed by hydroxyl radicals at a comparable rate. The plasma urate levels in humans (about 300 microM) is considerably higher than the ascorbate level, making it one of the major antioxidants in humans. Previous work on urate reported in the literature supports our experiments and interpretations, although the findings were not discussed in a physiological context.
机译:在灵长类动物进化过程中,延长寿命和降低特定年龄癌症发病率的主要因素可能是改善了对氧自由基的保护机制。我们建议这些保护系统之一是血浆尿酸,由于一系列突变,其水平在灵长类动物进化过程中显着增加。尿酸是一种强大的抗氧化剂,是单线态氧和自由基的清除剂。我们表明,在生理浓度下,尿酸盐降低了由过氧化物与血红蛋白反应形成的氧-血红素氧化剂,保护了红血球鬼魂免于脂质过氧化,并保护了红血球免受过氧化性损伤而导致的溶解。在这些实验中,尿酸盐与抗坏血酸一样有效。单线态氧比脱氧核苷更容易氧化尿酸盐,并以相当的速率被羟基自由基破坏。人的血浆尿酸水平(约300 microM)大大高于抗坏血酸水平,使其成为人体内主要的抗氧化剂之一。文献中报道的有关尿酸盐的先前研究支持了我们的实验和解释,尽管未在生理学背景下讨论过这些发现。

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