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Effects of an acute exposure to toluene on the DNA repair activity of the human 8-oxoguanine DNA glycosylase 1 (hOGG1) in healthy subjects

机译:急性接触甲苯对健康受试者中人8-氧代鸟嘌呤DNA糖基化酶1(hOGG1)的DNA修复活性的影响

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摘要

The structure and previous studies on the biotransformation of toluene lead to the suspicion that metabolites may be formed which preferentially react with strongly nucleophilic partners such as sulfhydryl groups of cysteines in proteins. Human 8-oxoguanine DNA glycosylase 1 removes the major oxidative DNA damage and possesses eight cysteines. Its potential inactivation may lead to accumulation of DNA damage by reactive oxygen species formed by exogenous agents or by ubiquitous endogenous processes. The goal of the present investigation was to study the in vivo effect in humans of an acute toluene exposure on hOGG1 activity. Twenty healthy, non-smoking males were exposed to 50 ppm toluene and to filtered air in an exposure chamber for 270 min, using a cross-over design. Before and 30 min after the end of exposure, blood samples were taken and toluene concentrations and the hOGG1 activity were measured. hOGG1 activity was determined in peripheral mononuclear blood cells. Thirty minutes after exposure to toluene, we found a median blood concentration of 0.25 mg toluene/l. Compared with the activity before exposure, upon exposure to toluene a statistically insignificant median increase of hOGG1 activity by +0.4% and upon exposure to air by +2.3% was determined. Thus, no reduction of the hOGG1 repair activity after acute exposure to 50 ppm toluene was observed.
机译:甲苯生物转化的结构和先前的研究导致怀疑可能形成代谢产物,这些代谢产物优先与蛋白质中的半胱氨酸的巯基等强亲核性伴侣发生反应。人8-氧鸟嘌呤DNA糖基化酶1消除了主要的氧化DNA损伤,并拥有八个半胱氨酸。其潜在的失活可能导致外源性试剂或普遍存在的内源性过程形成的活性氧导致DNA损伤积累。本研究的目的是研究人体内急性甲苯暴露对hOGG1活性的体内作用。使用交叉设计,将20名健康,不吸烟的男性暴露于50 ppm的甲苯中,并在暴露室内暴露于过滤空气中270分钟。在暴露结束前和暴露结束后30分钟,采集血液样本并测量甲苯浓度和hOGG1活性。在外周单个核血细胞中测定了hOGG1活性。接触甲苯30分钟后,我们发现血液中位数浓度为0.25 mg / l。与暴露前的活性相比,确定了在暴露于甲苯后,hOGG1活性的中位数增加了+ 0.4%,而在暴露于空气中的增加了+ 2.3%,这在统计学上没有统计学意义。因此,未观察到急性暴露于50ppm甲苯后hOGG1修复活性的降低。

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