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双氯芬酸酰基葡萄糖醛酸与谷胱甘肽的化学反应性研究:大鼠胆汁中双氯芬酸 - S - 酰基谷胱甘肽的鉴定。

Studies on the chemical reactivity of diclofenac acyl glucuronide with glutathione: identification of diclofenac-S-acyl-glutathione in rat bile.

作者信息

Grillo Mark P, Knutson Charles G, Sanders Phillip E, Waldon Daniel J, Hua Fengmei, Ware Joseph A

机构信息

Pharmacokinetics, Dynamics, and Metabolism, Pfizer, Inc., Kalamazoo, Michigan, USA.

出版信息

Drug Metab Dispos. 2003 Nov;31(11):1327-36. doi: 10.1124/dmd.31.11.1327.

Abstract

Diclofenac, a nonsteroidal anti-inflammatory drug, is metabolized to a reactive acyl glucuronide that has been proposed to mediate toxic adverse drug reactions associated with its use. In the present study, we examined the ability of diclofenac acyl glucuronide (D-1-O-G) to transacylate glutathione (GSH) in vitro in buffer and in vivo in rats. Thus, in vitro reactions of D-1-O-G (100 microM) with GSH (10 mM) at pH 7.4 and 37 degrees C showed a linear time-dependent formation of diclofenac-S-acyl-glutathione (D-SG, 3 microM/h) through 60 min of incubation, reaching a maximum of 3.7 microM after 2 h of incubation. The major reaction that occurred was acyl migration of D-1-O-G (t1/2, 54 min) to less reactive isomers. The D-SG thioester product was shown to be unstable by degrading primarily to 1-(2,6-dichlorophenyl)indolin-2-one and by hydrolysis to diclofenac. After administration of diclofenac to rats (200 mg/kg), bile was collected and analyzed for D-SG by liquid chromatography-tandem mass spectrometry. Results indicated the presence of D-SG, which was confirmed by coelution with synthetic standard and by its tandem mass spectrum. When the reactivity of D-SG (100 microM) was compared with D-1-O-G (100 microM) in vitro in reactions with N-acetylcysteine (NAC, 10 mM), results showed the quantitative reaction of D-SG with NAC after 30 min of incubation, whereas only approximately 1% of D-1-O-G reacted to form diclofenac-S-acyl-NAC at the same time point. Results from these studies indicate that GSH reacts with D-1-O-G in vitro, and presumably in vivo, to form D-SG, and that the product D-SG thioester is chemically more reactive in transacylation-type reactions than the D-1-O-G metabolite.

摘要

双氯芬酸是一种非甾体抗炎药,可代谢为一种活性酰基葡萄糖醛酸化物,有人认为该物质介导了与其使用相关的毒性药物不良反应。在本研究中,我们检测了双氯芬酸酰基葡萄糖醛酸化物(D-1-O-G)在缓冲液中体外转酰谷胱甘肽(GSH)的能力以及在大鼠体内的转酰能力。因此,在pH 7.4和37℃条件下,D-1-O-G(100 microM)与GSH(10 mM)的体外反应显示,孵育60分钟时,双氯芬酸-S-酰基谷胱甘肽(D-SG,3 microM/h)呈线性时间依赖性形成,孵育2小时后达到最大值3.7 microM。发生的主要反应是D-1-O-G(半衰期54分钟)向反应性较低的异构体进行酰基迁移。结果表明,D-SG硫酯产物不稳定,主要降解为1-(2,6-二氯苯基)吲哚-2-酮并水解为双氯芬酸。给大鼠(200 mg/kg)注射双氯芬酸后,收集胆汁并用液相色谱-串联质谱法分析D-SG。结果表明存在D-SG,通过与合成标准品共洗脱及其串联质谱得以证实。当在体外将D-SG(100 microM)与N-乙酰半胱氨酸(NAC,10 mM)反应时D-SG的反应性与D-1-O-G(100 microM)进行比较,结果显示孵育30分钟后D-SG与NAC发生定量反应,而在同一时间点只有约1%的D-1-O-G反应形成双氯芬酸-S-酰基-NAC。这些研究结果表明,GSH在体外以及可能在体内与D-1-O-G反应形成D-SG,并且产物D-SG硫酯在转酰基类型反应中比D-1-O-G代谢物具有更高的化学反应活性。

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