首页> 外文期刊>Biochemical Pharmacology >Antioxidants significantly affect the formation of different classes of isoprostanes and neuroprostanes in rat cerebral synaptosomes.
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Antioxidants significantly affect the formation of different classes of isoprostanes and neuroprostanes in rat cerebral synaptosomes.

机译:抗氧化剂会显着影响大鼠脑突触小体中不同类别的异前列腺素和神经前列腺素的形成。

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Lipid peroxidation has been implicated in the pathogenesis of a number of diseases, including neurodegenerative disorders. Evidence that antioxidants can affect the clinical course of neurodegenerative diseases is limited. In the present study, we examined the ability of five common antioxidants or antioxidant combinations, alpha-tocopherol, gamma-tocopherol, ascorbic acid, GSH ethyl ester, and a combination of ascorbate and alpha-tocopherol, to modulate lipid peroxidation in peroxidizing rat cerebral synaptosomes, a well-characterized model of oxidant injury. In these studies, we quantified isoprostanes (IsoPs) derived from arachidonic acid as an index of whole tissue oxidation and neuroprostanes (NeuroPs) formed from docosahexaenoic acid as a marker of selective neuronal peroxidation. We report that these various antioxidants displayed markedly different capacities to inhibit IsoP and NeuroP formation with the most potent effects on IsoPs observed for ascorbate, GSH ethyl ester, and the alpha-tocopherol-ascorbate combination. alpha-Tocopherol was slightly less potent and gamma-tocopherol significantly less effective. The concentration-response relationships were significantly different for NeuroP formation with the antioxidants being significantly less potent than for IsoP generation. In particular, alpha-tocopherol did not inhibit NeuroP formation at concentrations up to 100 microM. We also determined that tocopherols, in particular alpha-tocopherol, act in vitro as reducing agents to convert IsoP and NeuroP endoperoxides to reduced F-ring compounds, a finding we have observed previously in vivo in brain. These studies are of importance because they have further defined the role of antioxidants to modulate the formation of lipid peroxidation products in peroxidizing brain tissue. In addition, they suggest that alpha-tocopherol may not be a particularly effective agent to inhibit oxidant stress in the terminal compartment of neurons in the central nervous system.
机译:脂质过氧化与多种疾病的发病机理有关,包括神经退行性疾病。抗氧化剂可以影响神经退行性疾病的临床过程的证据是有限的。在本研究中,我们研究了五种常见的抗氧化剂或抗氧化剂组合,α-生育酚,γ-生育酚,抗坏血酸,GSH乙酯以及抗坏血酸盐和α-生育酚的组合调节过氧化大鼠脑脂质过氧化的能力。突触小体,一种公认的氧化损伤模型。在这些研究中,我们将花生四烯酸衍生的异前列腺素(IsoPs)量化为整个组织氧化的指标,而二十二碳六烯酸形成的神经前列腺素(NeuroPs)作为选择性神经元过氧化的标志物进行了定量。我们报告说,这些各种抗氧化剂显示出明显不同的抑制IsoP和NeuroP形成的能力,对IsoP的抗坏血酸盐,GSH乙酯和α-生育酚-抗坏血酸组合的观察到的效果最强。 α-生育酚的效力稍差,而γ-生育酚的效力则差得多。 NeuroP形成的浓度-反应关系显着不同,抗氧化剂的效力显着低于IsoP产生。特别是,在高达100 microM的浓度下,α-生育酚不会抑制NeuroP的形成。我们还确定了生育酚,特别是α-生育酚,在体外起还原剂的作用,将IsoP和NeuroP内过氧化物转化为还原的F环化合物,这是我们先前在脑中体内观察到的发现。这些研究之所以重要,是因为它们进一步定义了抗氧化剂在过氧化脑组织中调节脂质过氧化产物形成的作用。此外,他们认为α-生育酚可能不是抑制中枢神经系统神经元末端隔室中氧化应激的特别有效的药物。

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