Indoor radon exposure and excess of lung cancer mortality: the case of Mexico—an ecological study

被引:0
作者
G. Ponciano-Rodríguez
M. I. Gaso
M. A. Armienta
C. Trueta
I. Morales
R. Alfaro
N. Segovia
机构
[1] UNAM,Departamento de Salud Publica, Facultad de Medicina
[2] ININ,Instituto de Investigaciones en Ciencias de la Tierra
[3] Instituto Nacional de Investigaciones Nucleares,undefined
[4] IGFUNAM,undefined
[5] Instituto Nacional de Psiquiatría Ramón de la Fuente,undefined
[6] Universidad Michoacana de San Nicolas de Hidalgo,undefined
[7] SNI,undefined
[8] Sistema Nacional de Investigadores,undefined
来源
Environmental Geochemistry and Health | 2021年 / 43卷
关键词
Mexico; Indoor radon; Radon exposure; Lung cancer risk; Lung cancer mortality; Excess mortality;
D O I
暂无
中图分类号
学科分类号
摘要
Radon is a radioactive gas that can migrate from soils and rocks and accumulate in indoor areas such as dwellings and buildings. Many studies have shown a strong association between the exposure to radon, and its decay products, and lung cancer (LC), particularly in miners. In Mexico, according to published surveys, there is evidence of radon exposure in large groups of the population, nevertheless, only few attention has been paid to its association as a risk factor for LC. The aim of this ecological study is to evaluate the excess risk of lung cancer mortality in Mexico due to indoor radon exposure. Mean radon levels per state of the Country were obtained from different publications and lung cancer mortality was obtained from the National Institute of Statistics, Geography and Informatics for the period 2001–2013. A model proposed by the International Commission on Radiological Protection to estimate the annual excess risk of LC mortality (per 105 inhabitants) per dose unit of radon was used. The average indoor radon concentrations found rank from 51 to 1863 Bq m−3, the higher average dose exposure found was 3.13 mSv year−1 in the north of the country (Chihuahua) and the mortality excess of LC cases found in the country was 10 ± 1.5 (range 1–235 deaths) per 105 inhabitants. The highest values were found mainly in the Northern part of the country, where numerous uranium deposits are found, followed by Mexico City, the most crowded and most air polluted area in the country. A positive correlation (r = 0.98 p < 0.0001) was found between the excess of LC cases and the dose of radon exposure. Although the excess risk of LC mortality associated with indoor radon found in this study was relatively low, further studies are needed in order to accurately establish its magnitude in the country.
引用
收藏
页码:221 / 234
页数:13
相关论文
共 276 条
[1]  
Al-Zoughool M(2009)Health effects of radon: A review of the literature International Journal on Radiation and Biology 85 57-69
[2]  
Krewski D(2015)Different mutation profiles and clinical characteristics among Hispanic patients with non-small cell lung cancer could explain the “Hispanic Paradox” Lung Cancer 90 161-166
[3]  
Arrieta O(1995)Cancer risk from exposure to radon in homes Environmental Health Perspectives 103 37-43
[4]  
Ramírez TLA(2018)Influence of architectural style on indoor radon concentration in a radon prone area: A case study The Science of the Total Environment 610–611 258-266
[5]  
Báez SR(1978)Génesis y depositación de los yacimientos de milibdeno y uranio, en el Distrito de Villa Aldama y Chihuahua Boletin de la Sociedad Geologica Mexicana 39 29-33
[6]  
Peña CO(2017)Fast determination of indoor radon (222Rn) concentration using liquid scintillation counting Journal of Radioanalytical and Nuclear Chemistry 312 337-342
[7]  
Soca CHU(2019)Consideraciones sobre el sistema geotérmico de San Bartolomé de los baños, Guanajuato (México), desde un análisis de las inclusiones fluidas Geofísica Internacional 58–3 229-246
[8]  
Macedo POE(2002)Indoor radon measurements in six Latin American Countries Geofisica International 41 453-457
[9]  
Axelson O(2006)Lung cancer attributable to indoor radon exposure in France: Impact of the risk models and uncertainty analysis Environmental Health Perspectives 114 1361-1366
[10]  
Baeza A(2017)Canadian population risk of radon induced lung-cancer variation range assessment based on various radon risk models Radiation Protection Dosimetry 177 63-68