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单独使用5,5-二甲基-1-吡咯啉-N-氧化物可增强伯氨喹诱导的自发性超氧化物生成。

5,5-dimethyl-1-pyrroline-N-oxide alone enhances the spontaneous superoxide generation by primaquine.

作者信息

Prónai L, Ichimori K, Saigusa Y, Nakazawa H

机构信息

Second Department of Physiology, Tokai University School of Medicine, Kanagawa-ken, Japan.

出版信息

Arch Biochem Biophys. 1991 Jul;288(1):276-81. doi: 10.1016/0003-9861(91)90195-o.

Abstract

Primaquine (PQ), a well-known antimalarial drug, has been reported to generate superoxide (O2-) in the presence of reducing agents such as NADPH. In the present study, chemiluminescence was detected by adding only PQ to aqueous 2-methyl-6-[p-methoxyphenyl]-3,7-dihydroimidazo-[1,2-alpha] pyrazin-3-one (MCLA), which is a specific chemiluminescent probe for O2-, and was quenched by superoxide dismutase (SOD), indicating that PQ alone can generate O2- in aerobic conditions. Furthermore, 5,5-dimethyl-1-pyrroline-N-oxide (DMPO) enhanced the O2- generation by PQ. Superoxide spin adduct, DMPO-OOH, was also detected by ESR both in aqueous solutions and in dimethyl sulfoxide with DMPO. The level of O2- generation showed a linear correlation with the DMPO concentration, and SOD competitively inhibited the DMPO-OOH formation. The results suggested that in aerobic conditions PQ is autoxidized to 5-hydroxy-PQ, which generates O2-, and DMPO accelerates the autoxidation process by trapping O2-. DMPO or M4PO alone enhances the spontaneous O2- generation by PQ, therefore cautious evaluation is necessary in all studies using the ESR/spin trapping technique to elucidate the mechanism of PQ-related radical generation.

摘要

伯氨喹(PQ)是一种著名的抗疟药物,据报道,在存在如NADPH等还原剂的情况下,它会产生超氧阴离子(O2-)。在本研究中,通过仅向2-甲基-6-[对甲氧基苯基]-3,7-二氢咪唑并-[1,2-α]吡嗪-3-酮(MCLA)水溶液中添加PQ来检测化学发光,MCLA是一种对O2-的特异性化学发光探针,且超氧化物歧化酶(SOD)可淬灭该化学发光,这表明单独的PQ在有氧条件下可产生O2-。此外,5,5-二甲基-1-吡咯啉-N-氧化物(DMPO)增强了PQ产生O2-的能力。在水溶液和含有DMPO的二甲基亚砜中,通过电子自旋共振(ESR)也检测到了超氧自旋加合物DMPO-OOH。O2-的产生水平与DMPO浓度呈线性相关,且SOD竞争性抑制DMPO-OOH的形成。结果表明,在有氧条件下,PQ自氧化为5-羟基-PQ,后者产生O2-,而DMPO通过捕获O2-加速自氧化过程。单独的DMPO或M4PO会增强PQ自发产生O2-的能力,因此在所有使用ESR/自旋捕获技术阐明PQ相关自由基产生机制的研究中,都需要谨慎评估。

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