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尼美舒利及其主要代谢物4-羟基尼美舒利对超氧阴离子、羟基和过氧自由基的差异抑制作用。

Differential inhibition of superoxide, hydroxyl and peroxyl radicals by nimesulide and its main metabolite 4-hydroxynimesulide.

作者信息

Maffei Facino R, Carini M, Aldini G, Saibene L, Morelli R

机构信息

Istituto Chimico Farmaceutico Tossicologico, University of Milan, Italy.

出版信息

Arzneimittelforschung. 1995 Oct;45(10):1102-9.

PMID:8595069
Abstract

The superoxide and hydroxyl radical scavenging activities of nimesulide (CAS 51803-78-2) and its main metabolite 4-hydroxynimesulide (CAS 109032-22-6) were investigated by Electron Spin Resonance (ESR) spectroscopy, with the spin trapping technique. Hydroxynimesulide is a good scavenger of both O2 degrees- (IC50 = 40 mumol/l) and HO degree (IC50 = 54.8 mumol/l) radicals, and its high reactivity towards HO degree was confirmed by the rate constant for reaction with HO degree (K = 8.9 x 10(10) mol-1 l s-1) determined by competition kinetic studies with 5,5-dimethyl-l-pyrroline-N-oxide. Nimesulide, which has been shown by ESR to be inactive as a superoxide quencher, has a rate constant of reaction with HO degree slightly greater than that of its metabolite (3.3 x 10(11) mol-1 l s-1). In the HO degree-induced peroxidation of phosphatidylcholine (PC) liposomes, both compounds act as potent preventive antioxidants, but the HO degree entrapping capacity of the parent drug was again greater than that of hydroxynimesulide (IC50 2.12 vs 3.84 mumol/l). The metabolite is also a potent scavenger of the peroxyl radical (ROO degree) in the propagation phase of PC peroxidation (marker conjugated dienes), with an IC50 = 2.67 mumol/l; at 5 mumol/l it induces a lag time in the decomposition of PC hydroperoxides (PC-OOH) into aldehydic products of 40 h longer than in the controls (markers: conjugated dienes and total carbonyl functions). In PC liposomes, in the presence of preformed PC-OOH, the metabolite prevents PC peroxidation stimulated by 5 mumol/l Fe2+, via the Fenton reaction (marker: conjugated dienes), at the micromolar level (IC50 = 17 mumol/l) through an anti-free radical activity and a free iron chelating mechanism. Hydroxynimesulide in fact interacts with Fe2+ ions, giving rise to a strong complex, with a stability constant (log K) estimated to be around 8/9. In addition, hydroxynimesulide efficiently protects ex vivo synovial fluid lipids from the oxidative stress induced by Fe2+/ascorbate, already at 10 mumol/l (marker: thiobarbituric acid reactive substances). These results provide evidence for strong antioxidant and iron-chelating properties of 4-hydroxynimesulide, which can act synergistically with the specific HO degree scavenging activity of the parent drug in preventing and limiting in vivo the free radical-mediated tissue damage in both acute and chronic inflammatory situations.

摘要

采用电子自旋共振(ESR)光谱和自旋捕获技术,研究了尼美舒利(CAS 51803-78-2)及其主要代谢产物4-羟基尼美舒利(CAS 109032-22-6)的超氧化物和羟基自由基清除活性。羟基尼美舒利是O2•-(IC50 = 40 μmol/L)和HO•(IC50 = 54.8 μmol/L)自由基的良好清除剂,通过与5,5-二甲基-1-吡咯啉-N-氧化物的竞争动力学研究确定,其与HO•反应的速率常数(K = 8.9×1010 mol-1 L s-1)证实了其对HO•的高反应活性。ESR显示尼美舒利作为超氧化物猝灭剂无活性,其与HO•反应的速率常数略大于其代谢产物(3.3×1011 mol-1 L s-1)。在HO•诱导的磷脂酰胆碱(PC)脂质体过氧化反应中,两种化合物均作为有效的预防性抗氧化剂,但母体药物捕获HO•的能力再次大于羟基尼美舒利(IC50分别为2.12和3.84 μmol/L)。该代谢产物也是PC过氧化反应传播阶段(标记物共轭二烯)过氧自由基(ROO•)的有效清除剂,IC50 = 2.67 μmol/L;在5 μmol/L时,它使PC氢过氧化物(PC-OOH)分解为醛类产物的滞后时间比对照组(标记物:共轭二烯和总羰基功能)长40小时。在PC脂质体中,在预先形成的PC-OOH存在下,该代谢产物通过抗自由基活性和游离铁螯合机制,在微摩尔水平(IC50 = 17 μmol/L)防止5 μmol/L Fe2+通过芬顿反应刺激的PC过氧化反应(标记物:共轭二烯)。事实上,羟基尼美舒利与Fe2+离子相互作用,形成一种强络合物,其稳定常数(log K)估计约为8/9。此外,羟基尼美舒利在10 μmol/L时就能有效保护离体滑液脂质免受Fe2+/抗坏血酸诱导的氧化应激(标记物:硫代巴比妥酸反应性物质)。这些结果为4-羟基尼美舒利具有强大的抗氧化和铁螯合特性提供了证据,在预防和限制急慢性炎症情况下体内自由基介导的组织损伤方面,它可与母体药物特异性的HO•清除活性协同发挥作用。

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