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Vol. 53. Issue 9.
Pages 475-476 (September 2017)
Vol. 53. Issue 9.
Pages 475-476 (September 2017)
Editorial
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Residential Radon and Risk of Lung Cancer in Never-Smokers
Radón residencial y riesgo de cáncer de pulmón en nunca fumadores
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Alberto Ruano-Ravinaa,b,
Corresponding author
alberto.ruano@usc.es

Corresponding author.
, Alberto Fernández-Villarc, Juan M. Barros-Diosa,b,d
a Área de Medicina Preventiva y Salud Pública, Universidad de Santiago de Compostela, Santiago de Compostela, La Coruña, Spain
b CIBER de Epidemiología y Salud Pública (CIBERESP), Spain
c Servicio de Neumología, Hospital Álvaro Cunqueiro, Vigo, Pontevedra, Spain
d Servicio de Medicina Preventiva, Hospital Clínico Universitario de Santiago de Compostela, Santiago de Compostela, La Coruña, Spain
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Scientific evidence suggests that lung cancer (LC) in never-smokers is a different molecular entity to LC in smokers.1,2 The Lung Cancer Risk in Never-Smokers (LCRINS) study, a multicenter case control study competitively funded by the Government of Galicia, began in January 2011. Ten hospitals participated in 3 autonomous communities (Galicia, Asturias, and Madrid). The aim of the study was to determine LC risk factors in never-smokers, looking particularly at residential radon, and the initial results were published in Archivos de Bronconeumología in 2012.3

Six years later, this study has recruited more than 400 cases of LC in never-smokers with an equal number of controls, making it an important source of epidemiological data in this subgroup of LC cases. Moreover, the study provides a model that might serve as a basis for other multicenter studies, a highly desirable design in the investigation of rare diseases. The main findings of the LCRINS study, focusing primarily on residential radon, are highlighted and discussed below.

Residential radon is the second most important risk factor for LC after smoking, and the most important in never-smokers.4 Other significant risk factors for LC include certain occupations that involve exposure primarily to asbestos, polycyclic aromatic hydrocarbons (diesel exhaust), silica dust, or heavy metals, and environmental exposure to tobacco. However, only a small proportion of the population is employed in risk occupations (a risk that has decreased since environmental exposure to tobacco smoke among workers in the bar and restaurant sector has been eliminated). Environmental exposure to tobacco smoke is a quantitatively smaller risk than indoor radon, and is less ubiquitous.

Galicia, along with regions of Madrid, Extremadura and Castile-Leon, are areas with high radon concentrations, due to the geological characteristics of the subsoil. Other studies have suggested that the greatest numbers of cases of LC in female never-smokers occurred in the province of Ourense, which may be due to exposure to indoor radon, although this was not measured.5

The World Health Organization sets the action level of radon at 100Bq per cubic meter,4 while the United States Environmental Protection Agency sets it at 148Bq per cubic meter.6 The action level is understood as the lowest concentration at which radon significantly increases the risk of LC. These risk levels are based on a European study that included over 7000 cases and 14000 controls and revealed a significant linear risk of developing LC due to exposure to residential radon, namely, a 16% increase in risk per 100Bq/m3 increase in indoor radon concentration.7

Most of the research performed on residential radon before the start of the LCRINS study had included cases of LC in smokers and former smokers. The LCRINS study confirmed that the risk of LC was also greater in never-smokers, and that this risk was significant at concentrations higher than 200Bq per cubic meter8 compared to the risk in subjects exposed to less than 100Bq per cubic meter (OR: 2.42; 95% CI: 1.45–4.06), indicating that radon is a risk factor for LC. These results suggest that to induce LC, never-smokers must be exposed to higher radon concentrations than smokers. This study also showed evidence of an interaction between residential radon and environmental exposure to tobacco smoke. A detailed analysis of the cases reveals that subjects diagnosed before the age of 60 years were exposed to a higher concentration of residential radon than those diagnosed at older ages, suggesting that exposure to a very high concentration of radon could cause LC to develop earlier.9 Our analysis of histological types showed that residential radon appears to be more closely associated with small cell cancer and other less common histological types, such as large cell LC. Nevertheless, exposure to radon is associated with all histological types of LC in never-smokers.10,11

The LCRINS study also showed that there may be an association between residential radon and mutations or alterations in LC driver genes. We found no differences in residential radon concentrations between patients with and without EGFR mutations, but we did find close to significant differences in radon exposure in patients with the exon 19 deletion compared to patients with the L858R single-point substitution mutation, who were less exposed to radon (P=.057). We also found that subjects with ALK translocation had almost twice the radon exposure as subjects without ALK translocation, although the results were not significant12 (the proportion of ALK-positive subjects is low). We will have to wait for the results of future studies to see if these findings are confirmed or not.

Genes conferring sensitivity to LC, such as GSTM1 and GSTT1, seem to modulate exposure to residential radon to a certain extent, and, similar to findings in smokers, studies performed in Galicia and other regions indicate that subjects with any of these gene deletions exposed to the same concentrations of radon had a greater risk of lung cancer.13,14

In view of the accumulated evidence, we propose that scales predicting the risk of LC death or incidence should include exposure to radon, in addition to tobacco consumption and the many other variables that are already included, but which do not show the same degree of causal association as seen for residential radon.15

Radon is a risk factor for LC, both in smokers and never-smokers. It should be considered as a cause of LC when this disease is detected in a never-smoker, particularly in areas with high exposure to radon. From a practical point of view, studies such as this highlight the usefulness of multicenter research in respiratory medicine for relatively unusual diseases such as LC in never-smokers or small cell LC, in which we began a similar study in 2015.

Funding

The LCRINS study was partially funded by the Government of Galicia (10CSA208057PR). Part of the study was performed with a Fulbright grant for senior researchers awarded to Alberto Ruano Raviña (PRX14/00365). The protocol was approved by the Clinical Research Ethics Committee of Galicia (2010/295).

LCRINS investigators

Carmen Montero Martínez (Corunna), Iria Vidal García (Corunna), Olalla Castro Añón (Lugo), Margarita Amenedo (Corunna), Antonio Golpe Gómez (Santiago), Francisco J González Barcala (Santiago), Isaura Parente Lamelas (Ourense), José Abal Arca (Ourense), Ángeles Rodríguez (Pontevedra), María Torres-Durán (Vigo), Virginia Leiro Fernández (Vigo), Mariano Provencio Pulla (Majadahonda), Rosirys Guzmán Taveras (Oviedo), Cristina Martínez (Oviedo) y María José Mejuto Martí (Ferrol).

References
[1]
A.M. Chapman, K.Y. Sun, P. Ruestow, D.M. Cowan, A.K. Madl.
Lung cancer mutation profile of EGFR, ALK, and KRAS: meta-analysis and comparison of never and ever smokers.
Lung Cancer, 102 (2016), pp. 122-134
[2]
S. Couraud, G. Zalcman, B. Milleron, F. Morin, P-J. Souquet.
Lung cancer in never smokers—a review.
Eur J Cancer, 48 (2012), pp. 1299-1311
[3]
A. Ruano-Ravina, L. Prini-Guadalupe, J.M. Barros-Dios, J. Abal-Arca, V. Leiro-Fernández, A.I. González-Silva, et al.
Exposure to residential radon and lung cancer in never-smokers: the preliminary results of the LCRINS study.
Arch Bronconeumol, 48 (2012), pp. 405-409
[4]
WHO handbook on indoor radon: a public health perspective, pp. 94
[5]
J.S. de Cos, L. Miravet, J. Abal, A. Núñez, F.J. Muñoz, L. García, et al.
Lung cancer survival in Spain and prognostic factors: a prospective, multiregional study.
Lung Cancer, 59 (2008), pp. 246-254
[6]
Environmental Protection Agency.
Basic Radon Facts [Internet].
(2013),
Available in: https://www.epa.gov/sites/production/files/2016-08/documents/july_2016_radon_factsheet.pdf [accessed 02.01.17].
[7]
S. Darby, D. Hill, A. Auvinen, J.M. Barros-Dios, H. Baysson, F. Bochicchio, et al.
Radon in homes and risk of lung cancer: collaborative analysis of individual data from 13 European case–control studies.
[8]
M. Torres-Durán, A. Ruano-Ravina, I. Parente-Lamelas, V. Leiro-Fernández, J. Abal-Arca, C. Montero-Martínez, et al.
Lung cancer in never-smokers: a case-control study in a radon-prone area (Galicia, Spain).
Eur Respir J, 44 (2014), pp. 994-1001
[9]
M. Torres-Durán, A. Ruano-Ravina, I. Parente-Lamelas, V. Leiro-Fernández, J. Abal-Arca, C. Montero-Martínez, et al.
Residential radon and lung cancer characteristics in never smokers.
Int J Radiat Biol, 91 (2015), pp. 605-610
[10]
J.M. Barros-Dios, A. Ruano-Ravina, M. Pérez-Ríos, M. Castro-Bernárdez, J. Abal-Arca, M. Tojo-Castro.
Residential radon exposure, histologic types, and lung cancer risk. A case–control study in Galicia, Spain.
Cancer Epidemiol Biomark Prev, 21 (2012), pp. 951-958
[11]
M. Torres-Durán, A. Ruano-Ravina, K.T. Kelsey, I. Parente-Lamelas, M. Provencio, V. Leiro-Fernández, et al.
Small cell lung cancer in never-smokers.
Eur Respir J, 47 (2016), pp. 947-953
[12]
A. Ruano-Ravina, M. Torres-Durán, K.T. Kelsey, I. Parente-Lamelas, V. Leiro-Fernández, I. Abdulkader, et al.
Residential radon, EGFR mutations and ALK alterations in never-smoking lung cancer cases.
Eur Respir J, 48 (2016), pp. 1462-1470
[13]
M.R. Bonner, W.P. Bennett, W. Xiong, Q. Lan, R.C. Brownson, C.C. Harris, et al.
Radon, secondhand smoke, glutathione-S-transferase M1 and lung cancer among women.
Int J Cancer, 119 (2006), pp. 1462-1467
[14]
A. Ruano-Ravina, M.F. Pereyra, M.T. Castro, M. Pérez-Ríos, J. Abal-Arca, J.M. Barros-Dios.
Genetic susceptibility, residential radon, and lung cancer in a radon prone area.
J Thorac Oncol, 9 (2014), pp. 1073-1080
[15]
M. Torres-Durán, A. Fernández-Villar, J.M. Barros-Dios, A. Ruano-Ravina.
Residential radon: the neglected risk factor in lung cancer risk scores.
J Thorac Oncol, 11 (2016), pp. 1384-1386

Please cite this article as: Ruano-Ravina A, Fernández-Villar A, Barros-Dios JM. Radón residencial y riesgo de cáncer de pulmón en nunca fumadores. Arch Bronconeumol. 2017;53:475–476.

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