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首页> 外文期刊>Luminescence: The journal of biological and chemical luminescence >Ultrasensitive peroxynitrite-based luminescence with L-012 as a screening system for antioxidative/antinitrating substances, e.g. Tylenol(R) (acetaminophen), 4-OH tempol, quercetin and carboxy-PTIO
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Ultrasensitive peroxynitrite-based luminescence with L-012 as a screening system for antioxidative/antinitrating substances, e.g. Tylenol(R) (acetaminophen), 4-OH tempol, quercetin and carboxy-PTIO

机译:基于L-012的超敏感的基于亚硝酸盐的发光,作为抗氧化/抗引发物质(例如抗氧化剂)的筛选系统(对乙酰氨基酚),4-OH tempol,槲皮素和羧基PTIO

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摘要

Previously our group developed a water-soluble antioxidant screening system using the luminescence of the reaction of peroxynitrite and luminol. In the present study we replaced luminol with the luminol-like compound L-012. This increases the production of luminescence approximately 100-fold and therefore, with a higher signal:noise ratio, this new system can detect antioxidation and antinitration effects at lower doses of the inhibitor. We studied acetaminophen (Tylenol(R)) and its metabolite 3-nitroacetanninophen, tyrosine and nitrotyrosine and all these substances were inhibitory in a dose-responsive manner and below micromolar amounts. In addition quercetin, a polyphenol, was highly active (below micromolar amounts) as an antioxidant and antinitrating compound. 4-OH tempol, the stable free radical, superoxide dismutase (SOD) mimetic, was inhibitory in a dose-responsive manner and below micromolar amounts. Carboxy-PTIO was inhibitory at 10 times micromolar amount but not below that dose, which may be related to colour quenching, since the drug is deeply blue, or possibly it is an inhibitor with a slow kinetic profile. Finally, the amino acid tyrosine has been found to be inhibitory in micromolar amounts, similar to acetaminophen. This indicates that tyrosine can act as an antioxidant and antinitration target alone or conjugated in protein, e.g. insulin. Copyright (D 2007 John Wiley & Sons, Ltd.
机译:先前,我们的小组使用过氧亚硝酸盐和鲁米诺反应的发光来开发水溶性抗氧化剂筛选系统。在本研究中,我们用类似鲁米诺的化合物L-012代替了鲁米诺。这使发光产生增加了大约100倍,因此,在更高的信噪比下,该新系统可以在较低剂量的抑制剂下检测到抗氧化和抗硝化作用。我们研究了对乙酰氨基酚(Tylenol(R))及其代谢物3-硝基对乙酰氨基酚,酪氨酸和硝基酪氨酸,所有这些物质均以剂量响应方式且低于微摩尔量被抑制。此外,槲皮素(一种多酚)作为抗氧化剂和抗硝化化合物具有很高的活性(低于微摩尔量)。稳定的自由基,超氧化物歧化酶(SOD)模拟物4-OH tempol具有剂量反应性且低于微摩尔量的抑制作用。 Carboxy-PTIO具有10倍微摩尔量的抑制性,但不能低于该剂量,这可能与颜色猝灭有关,因为该药物是深蓝色的,或者可能是动力学特性较慢的抑制剂。最后,已发现氨基酸酪氨酸具有抑制作用,类似于对乙酰氨基酚,其摩尔含量微乎其微。这表明酪氨酸可以单独或结合在蛋白质中作为抗氧化剂和反硝化目标,例如蛋白质。胰岛素。版权所有(D 2007 John Wiley&Sons,Ltd.

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