首页> 外文期刊>Free radical research >Protection of U937 cells from free radical damage by the macrophage synthesized antioxidant 7,8-dihydroneopterin.
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Protection of U937 cells from free radical damage by the macrophage synthesized antioxidant 7,8-dihydroneopterin.

机译:巨噬细胞合成的抗氧化剂7,8-二氢蝶呤类化合物可保护U937细胞免受自由基破坏。

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摘要

Interferon-gamma stimulation of human macrophages causes the synthesis and release of neopterin and its reduced form 7,8-dihydroneopterin (7,8-NP). The purpose of this cellular response is undetermined but in vitro experiments suggests 7,8-NP is an antioxidant. We have found 7,8-NP can protect monocyte-like U937 cells from oxidative damage. 7,8-NP inhibited ferrous ion and hypochlorite mediated loss of cell viability. Fe++ mediated lipid peroxidation was effectively inhibited by 7,8-NP, however, no correlation was found between peroxide concentration and cell viability. Hypochlorite was scavenged by 7,8-NP, preventing the loss of cell viability. 7,8-NP was less effective in inhibiting H2O2-mediated loss of cell viability with significant inhibition only occurring at high 7,8-NP concentrations. Analysis of cellular protein hydrolysates showed none of the oxidants caused the formation of any protein bound DOPA or dityrosine but did show 7,8-NP prevented the loss of cellular tyrosine by HOCl. Our data suggests macrophages may synthesize 7,8-NP for antioxidant protection during inflammatory events in vivo.
机译:干扰素对人巨噬细胞的刺激会导致新蝶呤的合成和释放及其还原形式的7​​,8-二氢蝶呤(7,8-NP)。这种细胞应答的目的尚未确定,但体外实验表明7,8-NP是抗氧化剂。我们发现7,8-NP可以保护单核细胞样U937细胞免受氧化损伤。 7,8-NP抑制亚铁离子和次氯酸盐介导的细胞活力丧失。 Fe ++介导的脂质过氧化被7,8-NP有效抑制,但是,过氧化物浓度和细胞活力之间没有相关性。次氯酸盐被7,8-NP清除,从而防止了细胞活力的丧失。 7,8-NP在抑制H2O2介导的细胞活力丧失方面效果较差,只有在高7,8-NP浓度下才会显着抑制。细胞蛋白水解产物的分析表明,没有氧化剂能引起任何蛋白结合的DOPA或二酪氨酸的形成,但确实表明7,8-NP阻止了HOCl引起的细胞酪氨酸的损失。我们的数据表明巨噬细胞可能合成7,8-NP在体内炎症事件中提供抗氧化保护。

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