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与铅(Pb)代谢相关的基因多态性与金属体内负荷以及氧化应激生物标志物有关。

Polymorphisms of genes related to metabolism of lead (Pb) are associated with the metal body burden and with biomarkers of oxidative stress.

作者信息

Gomes Willian Robert, Devóz Paula Pícoli, Luiz Bruno Limonti Cano, Grotto Denise, Batista Bruno Lemos, Barbosa Fernando, Barcelos Gustavo Rafael Mazzaron

机构信息

Department of Clinical Analyses, Toxicology and Food Sciences, School of Pharmaceutical Sciences of Ribeirão Preto, University of São Paulo, Avenida do Café s/n°, CEP 14040-903, Ribeirão Preto, Brazil.

University of Sorocaba, Rodovia Raposo Tavares, km 92.5, CEP 18023-000 Sorocaba, SP, Brazil.

出版信息

Mutat Res Genet Toxicol Environ Mutagen. 2018 Dec;836(Pt B):42-46. doi: 10.1016/j.mrgentox.2018.05.016. Epub 2018 May 25.

Abstract

Individual susceptibility to the toxic effects induced by exposure to lead (Pb) may be affected by several variables, such as environmental factors, as well as intrinsic variations among the individuals, which are hypothetically associated to genetic differences in enzymes metabolizing the metal. Aim of the present study was to evaluate the effects of polymorphisms of glutathione (GSH)-genes related to the antioxidant status and Pb metabolism (GCLC, rs17883901 and GCLM, rs41303970) on Pb levels in blood (B-Pb) and plasma (P-Pb), as well as Pb-related effects on activity of glutathione-peroxidase (GPX) and on GSH concentrations. A cross-sectional study with 236 adults (men, >18 years old) was carried out with workers from automotive battery factories, Brazil. B-Pb and P-Pb were determined by ICP-MS; blood GPX and GSH were determined by spectrophotometry and qPCR TaqMan assays were used for genotyping. A questionnaire was applied in order to collect socio-demographic, lifestyle and time of exposure. The mean B-Pb level was 211 ± 118 μg/L and P-Pb was 6.05 ± 7.13 μg/L. GCLM are associated with changes of B-Pb and P-Pb; individuals who carry at least one polymorphic allele for GCLM gene had lower metal levels in the blood and plasma (β = -1.5; p = 0.0080; β = -0.12 and p = 0.050). In addition, individuals carrying at least one polymorphic allele for the GCLC gene had higher concentrations of GSH than the non-polymorphic ones, as a function of B-Pb (β = 0.072; p = 0.029). Significant associations were also observed with GCLC polymorphism on GSH concentrations (as a function of P-Pb), that is, polymorphic individuals tended to have higher concentrations of GSH than non-polymorphic ones (β = 0.072; p = 0.030), while those individuals who are polymorphic for GCLM had higher activities of GPX, compared to the non-variant genotype (β = 0.19; p = 0.028). Taken together, our data indicate that polymorphisms related to Pb toxicokinetics modify the metal body burden and Pb-related antioxidant effects.

摘要

个体对铅(Pb)暴露所诱导的毒性作用的易感性可能受多种变量影响,如环境因素以及个体间的内在差异,这些差异假设与金属代谢酶的基因差异有关。本研究的目的是评估与抗氧化状态和铅代谢相关的谷胱甘肽(GSH)基因多态性(GCLC,rs17883901和GCLM,rs41303970)对血液(B-Pb)和血浆(P-Pb)中铅水平的影响,以及铅对谷胱甘肽过氧化物酶(GPX)活性和GSH浓度的相关影响。对来自巴西汽车电池厂的236名成年人(男性,>18岁)进行了一项横断面研究。通过电感耦合等离子体质谱法测定B-Pb和P-Pb;通过分光光度法测定血液中的GPX和GSH,并使用qPCR TaqMan分析进行基因分型。应用问卷收集社会人口统计学、生活方式和暴露时间信息。B-Pb的平均水平为211±118μg/L,P-Pb为6.05±7.13μg/L。GCLM与B-Pb和P-Pb的变化相关;携带GCLM基因至少一个多态性等位基因的个体血液和血浆中的金属水平较低(β=-1.5;p=0.0080;β=-0.12,p=0.050)。此外,携带GCLC基因至少一个多态性等位基因的个体,其GSH浓度高于非多态性个体,这是B-Pb的函数(β=0.072;p=0.029)。在GSH浓度方面(作为P-Pb的函数)也观察到与GCLC多态性的显著关联,即多态性个体的GSH浓度往往高于非多态性个体(β=0.072;p=0.030),而GCLM多态性个体的GPX活性高于非变异基因型个体(β=0.19;p=0.028)。综上所述,我们的数据表明与铅毒代动力学相关的多态性会改变金属体内负荷和与铅相关的抗氧化作用。

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