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叔丁基过氧化氢和溴三氯甲烷同时存在对大鼠红细胞氧化损伤的增强作用。

Potentiation of oxidative damage to rat red blood cells by the concurrent presence of t-butyl hydroperoxide and bromotrichloromethane.

作者信息

Sano M, Kawabata H, Tomita I, Yoshioka H, Hu M L

机构信息

Laboratory of Health Science, School of Pharmaceutical Sciences, University of Shizuoka, Japan.

出版信息

J Toxicol Environ Health. 1994 Nov;43(3):339-50. doi: 10.1080/15287399409531925.

Abstract

Recently potentiation of oxidative damage in rat red blood cells (rRBC) incubated with t-butylhydroperoxide (BHP) in combination with bromotrichloromethane (BrCCI3) was demonstrated. The mechanism by which this combination (BrCCI3/BHP) potentiates the oxidative damage to rRBC was investigated in this study. When rRBC were incubated with 0.1 mM BHP, 0.5 mM BrCCI3, or the two combined, BrCCI3/BHP-potentiated lipid peroxidation and hemolysis were further enhanced under anaerobic conditions. However, the potentiation of lipid peroxidation was abolished by heating or trypsin digestion of rRBC. Electron spin resonance (ESR) studies demonstrated an increase of alkoyl radical induced by BrCCI3/BHP in rRBC, and this increase was abolished by heating or predigestion of hemolysates with trypsin. The inhibition of lipid peroxidation by diphenylamine (which reacts with alkoxyl radicals but not peroxyl radicals) suggests an important role of alkoxyl radicals. Overall, the present findings demonstrate that the increase in radical-related oxidative damage, possibly mediated by proteinlike materials, may be at least partially responsible for the potentiation of damage to rRBC induced by BrCCI3/BHP, and perhaps by BrCCI3. Although the in vivo significance of these results remains to be investigated, it seems likely that halocarbon toxicity may be amplified by elevated levels of lipid peroxide in blood.

摘要

最近有研究表明,叔丁基过氧化氢(BHP)与溴三氯甲烷(BrCCI3)联合孵育的大鼠红细胞(rRBC)中氧化损伤增强。本研究探讨了这种组合(BrCCI3/BHP)增强rRBC氧化损伤的机制。当rRBC与0.1 mM BHP、0.5 mM BrCCI3或两者联合孵育时,在厌氧条件下,BrCCI3/BHP增强的脂质过氧化和溶血作用进一步增强。然而,rRBC经加热或胰蛋白酶消化后,脂质过氧化的增强作用消失。电子自旋共振(ESR)研究表明,BrCCI3/BHP诱导rRBC中烷氧自由基增加,而这种增加在溶血产物经加热或胰蛋白酶预消化后消失。二苯胺(与烷氧自由基反应但不与过氧自由基反应)对脂质过氧化的抑制作用表明烷氧自由基起重要作用。总体而言,目前的研究结果表明,自由基相关的氧化损伤增加,可能由类蛋白质物质介导,可能至少部分是BrCCI3/BHP诱导rRBC损伤增强的原因,也许也是BrCCI3的原因。尽管这些结果在体内的意义仍有待研究,但血液中脂质过氧化物水平升高可能会放大卤代烃的毒性,这似乎是很有可能的。

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