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Oxidative DNA damage and oxidative stress in lead-exposed workers

机译:铅暴露工人的氧化DNA损伤和氧化应激

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There are many discrepancies among the results of studies on the genotoxicity of lead. The aim of the study was to explore lead-induced DNA damage, including oxidative damage, in relation to oxidative stress intensity parameters and the antioxidant defense system in human leukocytes. The study population consisted of 100 male workers exposed to lead. According to the blood lead (PbB) levels, they were divided into the following three subgroups: a group with PbB of 20-35 g/dL (low exposure to lead (LE) group), a group with a PbB of 35-50 mu g/dL (medium exposure to lead (ME) group), and a group with a PbB of >50 g/dL (high exposure to lead (HE) group). The control group consisted of 42 healthy males environmentally exposed to lead (PbB < 10 g/dL). A comet assay was used to measure the DNA damage in leukocytes. We measured the activity of superoxide dismutase (SOD), catalase, glutathione reductase (GR), glucose-6-phosphate dehydrogenase (G6PD), and glutathione-S-transferase (GST) as well as the concentration of malondialdehyde (MDA), and the value of the total antioxidant capacity. The level of PbB was significantly higher in the examined subgroups than in the control group. The percentage of DNA in the tail was significantly higher in the LE, ME, and HE subgroups than in the control group by 10% (p = 0.001), 15% (p < 0.001), and 20% (p < 0.001), respectively. The activity of GR was significantly lower in the LE and ME subgroups than in the control group by 25% (p = 0.007) and 17% (p = 0.028), respectively. The activity of G6PD was significantly lower in the ME subgroup by 25% (p = 0.022), whereas the activity of GST was significantly higher in the HE subgroup by 101% (p = 0.001) than in the control group. Similarly, the activity of SOD was significantly higher in the LE and ME subgroups by 48% (p = 0.026) and 34% (p = 0.002), respectively. The concentration of MDA was significantly higher in the LE, ME, and HE subgroups than in the control group by 43% (p = 0.016), 57% (p < 0.001), and 108% (p < 0.001), respectively. Occupational lead exposure induces DNA damage, including oxidative damage, in human leukocytes. The increase in DNA damage was accompanied by an elevated intensity of oxidative stress.
机译:关于铅的遗传毒性的研究结果存在许多差异。该研究的目的是探讨铅诱导的DNA损伤,包括氧化损伤,与人白细胞中的氧化应激强度参数和抗氧化剂防御系统有关。学习人口由100名男性工人暴露在一起。根据血铅(PBB)水平,它们分为以下三个亚组:一个具有20-35g / dL的PBB(低暴露于铅(Le)组),其中PBB为35-50 mu g / dl(中等暴露于铅(me)组),以及具有> 50g / dl的PBB的基团(高暴露于铅(He)组)。对照组由42种健康的男性组成,环境暴露于铅(PBB <10g / dl)。使用彗星测定来测量白细胞中的DNA损伤。我们测量超氧化物歧化酶(SOD),过氧化氢酶,谷胱甘肽还原酶(GR),葡萄糖-6-磷酸脱氢酶(G6PD)和谷胱甘肽-S-转移酶(GST)以及丙二醛(MDA)的浓度的活性,以及总抗氧化能力的值。在检测的亚组中,PBB的水平明显高于对照组。尾部的DNA百分比在Le,Me和He亚组中显着高于对照组10%(p = 0.001),15%(P <0.001)和20%(P <0.001),分别。 LE和ME亚组的GR的活性显着低于对照组,分别在对照组中分别在25%(p = 0.007)和17%(P = 0.028)中。 G6PD的活性在ME亚组中显着降低25%(P = 0.022),而GST的活性在HE亚组中显着高于对照组中的101%(p = 0.001)。类似地,SOD的活性在LE和ME亚组中显着较高48%(p = 0.026)和34%(P = 0.002)。 MDA的浓度在Le,Me和He亚组中显着高于对照组,分别在43%(p = 0.016),57%(P <0.001)和108%(P <0.001)中。职业铅暴露会诱导人白细胞中的DNA损伤,包括氧化损伤。 DNA损伤的增加伴随着氧化应激强度升高。

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