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职业性接触射频电磁场与脑肿瘤风险:INTEROCC工作暴露矩阵的应用

Occupational exposure to radiofrequency electromagnetic fields and brain tumor risk: Application of the INTEROCC job-exposure matrix.

作者信息

Turuban Maxime, Kromhout Hans, Vila Javier, Vallbona-Vistós Miquel, De Vocht Frank, Baldi Isabelle, Richardson Lesley, Benke Geza, Krewski Daniel, Parent Marie-Elise, Sadetzki Siegal, Schlehofer Brigitte, Schüz Joachim, Siemiatycki Jack, van Tongeren Martie, Woodward Alistair, Cardis Elisabeth, Turner Michelle C

机构信息

Barcelona Institute for Global Health (ISGlobal), Barcelona, Spain.

Universitat Pompeu Fabra (UPF), Barcelona, Spain.

出版信息

Int J Cancer. 2025 Feb 1;156(3):538-551. doi: 10.1002/ijc.35182. Epub 2024 Sep 20.

Abstract

Radiofrequency electromagnetic fields (RF-EMF, 100 kHz to 300 GHz) are classified by IARC as possibly carcinogenic to humans (Group 2B). This study evaluates the potential association between occupational RF-EMF exposure and brain tumor risk, utilizing for the first time, a RF-EMF job-exposure matrix (RF-JEM) developed in the multi-country INTEROCC case-control study. Cumulative and time-weighted average (TWA) occupational RF-EMF exposures were estimated for study participants based on lifetime job histories linked to the RF-JEM using three different methods: (1) by considering RF-EMF intensity among all exposed jobs, (2) by considering RF-EMF intensity among jobs with an exposure prevalence ≥ the median exposure prevalence of all exposed jobs, and (3) by considering RF-EMF intensity of jobs of participants who reported RF-EMF source use. Stratified conditional logistic regression models were used, considering various lag periods and exposure time windows defined a priori. Generally, no clear associations were found for glioma or meningioma risk. However, some statistically significant positive associations were observed including in the highest exposure categories for glioma for cumulative and TWA exposure in the 1- to 4-year time window for electric fields (E) in the first JEM application method (odds ratios [ORs] = 1.36, 95% confidence interval [95% CI] 1.08, 1.72 and 1.27, 95% CI 1.01, 1.59, respectively), as well as for meningioma for cumulative exposure in the 5- to 9-year time window for electric fields (E) in the third JEM application method (OR = 2.30, 95% CI 1.11, 4.78). We did not identify convincing associations between occupational RF-EMF exposure and risk of glioma or meningioma.

摘要

射频电磁场(RF - EMF,100kHz至300GHz)被国际癌症研究机构(IARC)归类为可能对人类致癌(2B组)。本研究利用多国INTEROCC病例对照研究中开发的射频电磁场职业暴露矩阵(RF - JEM),首次评估职业性射频电磁场暴露与脑肿瘤风险之间的潜在关联。基于与RF - JEM相关的终生工作经历,使用三种不同方法为研究参与者估计累积和时间加权平均(TWA)职业性射频电磁场暴露:(1)考虑所有暴露工作中的射频电磁场强度;(2)考虑暴露患病率≥所有暴露工作的中位数暴露患病率的工作中的射频电磁场强度;(3)考虑报告使用射频电磁场源的参与者工作的射频电磁场强度。使用分层条件逻辑回归模型,考虑先验定义的各种滞后时间和暴露时间窗。总体而言,未发现胶质瘤或脑膜瘤风险有明确关联。然而,观察到一些具有统计学意义的正相关,包括在第一种JEM应用方法中,电场(E)在1至4年时间窗内累积和TWA暴露的胶质瘤最高暴露类别中(优势比[ORs]分别为1.36,95%置信区间[95%CI] 1.08,1.72和1.27,95%CI 1.01,1.59),以及在第三种JEM应用方法中,电场(E)在5至9年时间窗内累积暴露的脑膜瘤(OR = 2.30,95%CI 1.11,4.78)。我们未发现职业性射频电磁场暴露与胶质瘤或脑膜瘤风险之间有令人信服的关联。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/badf/11621992/b6d61eb1bed0/IJC-156-538-g002.jpg

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