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铜冶炼和精炼工人尿砷浓度与 PNP、GSTO-1、AS3MT 和 ADRB3 基因多态性的关系。

The relationship between PNP, GSTO-1, AS3MT and ADRB3 gene polymorphisms and urinary arsenic concentration among copper smelter and refinery employers.

机构信息

Department of Internal Medicine, Occupational Diseases and Hypertension, Wroclaw Medical University, Wroclaw, Poland.

Department of Hygiene, Wroclaw Medical University, Wroclaw, Poland.

出版信息

Hum Exp Toxicol. 2020 Nov;39(11):1443-1453. doi: 10.1177/0960327120925891. Epub 2020 May 26.

DOI:10.1177/0960327120925891
PMID:32452228
Abstract

INTRODUCTION

The aim of this study was to assess the relationship between polymorphisms of genes encoding enzymes involved in arsenic metabolism and urinary arsenic concentration in people occupationally exposed to arsenic.

MATERIALS AND METHODS

The data from 113 employers directly exposed to lead, cadmium, and arsenic in copper smelter in Legnica and Glogow were collected. Urinary arsenic concentration was measured. In addition, blood level of cadmium, lead, and zinc protoporphyrins was assayed. Genetic analyses included polymorphism of PNP (rs 1130650), GSTO-1 (rs 4925), AS3MT (rs 11191439), and ADRB3 (rs4994) genes.

RESULTS

Individuals occupationally exposed to arsenic compounds, who have allele T in homozygous constellation in locus rs 1130650 of PNP gene, are predisposed to lower urinary arsenic concentration, while AA homozygosity in locus rs 4925 of GSTO-1 gene may result in statistically significant higher urinary arsenic concentration. Polymorphisms of AS3MT and ADRB3 genes showed no statistically significant correlation with urinary arsenic, however, there was a tendency to higher arsenic concentration in allele A carriers in locus rs4994 of ADRB3 gene and in allele T carriers in rs 11191439 of AS3MT gene.

CONCLUSION

This study indicates that arsenic absorption and metabolism depend on polymorphisms of genes encoding PNP and GSTO-1. Individuals with disadvantageous constellation of polymorphisms are more susceptible to harmful effects of arsenic exposure.

摘要

简介

本研究旨在评估参与砷代谢的酶基因多态性与职业性接触砷人群尿砷浓度之间的关系。

材料与方法

收集了来自莱格尼察和格洛戈夫铜冶炼厂直接接触铅、镉和砷的 113 名雇主的数据。测量了尿砷浓度。此外,还测定了血液中镉、铅和锌原卟啉的水平。基因分析包括 PNP(rs1130650)、GSTO-1(rs4925)、AS3MT(rs11191439)和 ADRB3(rs4994)基因的多态性。

结果

在 PNP 基因 rs1130650 位点纯合 TT 等位基因的个体中,职业性接触砷化合物的个体,其尿砷浓度较低,而 GSTO-1 基因 rs4925 位点 AA 纯合可能导致尿砷浓度显著升高。AS3MT 和 ADRB3 基因的多态性与尿砷浓度无统计学显著相关性,但 ADRB3 基因 rs4994 位点的等位基因 A 携带者和 AS3MT 基因 rs11191439 位点的等位基因 T 携带者的砷浓度有升高的趋势。

结论

本研究表明,砷的吸收和代谢依赖于编码 PNP 和 GSTO-1 的基因的多态性。具有不利多态性组合的个体更容易受到砷暴露的有害影响。

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