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通过化学发光和电子自旋共振(ESR)对非甾体抗炎药抗氧化特性的体外研究。

In vitro study of the antioxidant properties of non steroidal anti-inflammatory drugs by chemiluminescence and electron spin resonance (ESR).

作者信息

Mouithys-Mickalad A M, Zheng S X, Deby-Dupont G P, Deby C M, Lamy M M, Reginster J Y, Henrotin Y E

机构信息

Centre for Oxygen Research and Development (CORD), Institute of Chemistry, , University of Liège, Belgium.

出版信息

Free Radic Res. 2000 Nov;33(5):607-21. doi: 10.1080/10715760000301131.

Abstract

OBJECTIVES

To determine the antioxidant activities of nonsteroidal anti-inflammatory drugs (NSAIDS), we examined by chemiluminescence (CL) and electron spin resonance (ESR) their scavenging properties towards lipid peroxides, hypochlorous acid and peroxynitrite.

METHODS

The antioxidant properties of nimesulide (NIM), 4-hydroxynimesulide (4-HONIM), aceclofenac (ACLO), 4-hydroxyaceclofenac (4-HOA-CLO), diclofenac (DICLO) and indomethacin (INDO) were tested on four different reactive oxygen species (ROS) generating systems: (I) phorbol-myristate acetate (PMA)-activated neutrophils, (II) Fe2+/ascorbate-induced lipid peroxidation, (III) HOCl-induced light emission, (IV) the kinetics of ONOO- decomposition followed by spectrophotometry. ROS production was monitored by luminol-enhanced CL or by ESR using two different spin traps.

RESULTS

At 10 microM, ACLO, NIM, 4-HONIM, 4-HOA-CLO, and DICLO decreased luminol-enhanced CL generated by PMA-activated neutrophils. Inversely, INDO increased the luminol enhanced CL. Interestingly, hydroxylated metabolites were more potent antioxidants than the parent drugs. Furthermore, all drugs tested, excepted ACLO, lowered lipid peroxidation induced by Fe2+/ascorbate system. ACLO and DICLO, even at the highest concentration tested (100 microM), did not significantly lower HOCl induced CL, whereas the other drugs were potent scavengers. Finally, all the NSAIDS accelerated decomposition of ONOO-, suggesting a potential capacity of the molecules to scavenge peroxynitrite.

CONCLUSION

The NSAIDs possess variable degrees of antioxidant activities, linked to their ability to react with HOCl, lipid peroxides or ONOO-. These antioxidant activities could offer interesting targeted side-effects in the treatment of joint inflammatory diseases.

摘要

目的

为了确定非甾体抗炎药(NSAIDs)的抗氧化活性,我们通过化学发光(CL)和电子自旋共振(ESR)检测了它们对脂质过氧化物、次氯酸和过氧亚硝酸盐的清除特性。

方法

在四种不同的活性氧(ROS)生成系统中测试了尼美舒利(NIM)、4-羟基尼美舒利(4-HONIM)、醋氯芬酸(ACLO)、4-羟基醋氯芬酸(4-HOA-CLO)、双氯芬酸(DICLO)和吲哚美辛(INDO)的抗氧化特性:(I)佛波醇-肉豆蔻酸酯乙酸酯(PMA)激活的中性粒细胞,(II)Fe2+/抗坏血酸诱导的脂质过氧化,(III)HOCl诱导的发光,(IV)通过分光光度法跟踪ONOO-分解的动力学。使用两种不同的自旋捕获剂通过鲁米诺增强的CL或ESR监测ROS的产生。

结果

在10微摩尔时,ACLO、NIM、4-HONIM、4-HOA-CLO和DICLO降低了PMA激活的中性粒细胞产生的鲁米诺增强的CL。相反,INDO增加了鲁米诺增强的CL。有趣的是,羟基化代谢物比母体药物具有更强的抗氧化剂活性。此外,除ACLO外,所有测试药物均降低了Fe2+/抗坏血酸系统诱导的脂质过氧化。即使在测试的最高浓度(100微摩尔)下,ACLO和DICLO也没有显著降低HOCl诱导的CL,而其他药物是有效的清除剂。最后,所有NSAIDs都加速了ONOO-的分解,表明这些分子具有清除过氧亚硝酸盐的潜在能力。

结论

NSAIDs具有不同程度的抗氧化活性,这与其与HOCl、脂质过氧化物或ONOO-反应的能力有关。这些抗氧化活性可能在关节炎症性疾病的治疗中提供有趣的靶向副作用。

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