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Exposure–Response Analyses of Asbestos and Lung Cancer Subtypes in a Pooled Analysis of Case–Control Studies
BACKGROUND: Evidence is limited regarding risk and the shape of the exposure–response curve at low asbestos exposure levels. We estimated the exposure–response for occupational asbestos exposure and assessed the joint effect of asbestos exposure and smoking by sex and lung cancer subtype in general...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Lippincott Williams & Wilkins
2017
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5287435/ https://www.ncbi.nlm.nih.gov/pubmed/28141674 http://dx.doi.org/10.1097/EDE.0000000000000604 |
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author | Olsson, Ann C. Vermeulen, Roel Schüz, Joachim Kromhout, Hans Pesch, Beate Peters, Susan Behrens, Thomas Portengen, Lützen Mirabelli, Dario Gustavsson, Per Kendzia, Benjamin Almansa, Josue Luzon, Veronique Vlaanderen, Jelle Stücker, Isabelle Guida, Florence Consonni, Dario Caporaso, Neil Landi, Maria Teresa Field, John Brüske, Irene Wichmann, Heinz-Erich Siemiatycki, Jack Parent, Marie-Elise Richiardi, Lorenzo Merletti, Franco Jöckel, Karl-Heinz Ahrens, Wolfgang Pohlabeln, Hermann Plato, Nils Tardón, Adonina Zaridze, David McLaughlin, John Demers, Paul Szeszenia-Dabrowska, Neonila Lissowska, Jolanta Rudnai, Peter Fabianova, Eleonora Stanescu Dumitru, Rodica Bencko, Vladimir Foretova, Lenka Janout, Vladimir Boffetta, Paolo Bueno-de-Mesquita, Bas Forastiere, Francesco Brüning, Thomas Straif, Kurt |
author_facet | Olsson, Ann C. Vermeulen, Roel Schüz, Joachim Kromhout, Hans Pesch, Beate Peters, Susan Behrens, Thomas Portengen, Lützen Mirabelli, Dario Gustavsson, Per Kendzia, Benjamin Almansa, Josue Luzon, Veronique Vlaanderen, Jelle Stücker, Isabelle Guida, Florence Consonni, Dario Caporaso, Neil Landi, Maria Teresa Field, John Brüske, Irene Wichmann, Heinz-Erich Siemiatycki, Jack Parent, Marie-Elise Richiardi, Lorenzo Merletti, Franco Jöckel, Karl-Heinz Ahrens, Wolfgang Pohlabeln, Hermann Plato, Nils Tardón, Adonina Zaridze, David McLaughlin, John Demers, Paul Szeszenia-Dabrowska, Neonila Lissowska, Jolanta Rudnai, Peter Fabianova, Eleonora Stanescu Dumitru, Rodica Bencko, Vladimir Foretova, Lenka Janout, Vladimir Boffetta, Paolo Bueno-de-Mesquita, Bas Forastiere, Francesco Brüning, Thomas Straif, Kurt |
author_sort | Olsson, Ann C. |
collection | PubMed |
description | BACKGROUND: Evidence is limited regarding risk and the shape of the exposure–response curve at low asbestos exposure levels. We estimated the exposure–response for occupational asbestos exposure and assessed the joint effect of asbestos exposure and smoking by sex and lung cancer subtype in general population studies. METHODS: We pooled 14 case–control studies conducted in 1985–2010 in Europe and Canada, including 17,705 lung cancer cases and 21,813 controls with detailed information on tobacco habits and lifetime occupations. We developed a quantitative job-exposure-matrix to estimate job-, time period-, and region-specific exposure levels. Fiber-years (ff/ml-years) were calculated for each subject by linking the matrix with individual occupational histories. We fit unconditional logistic regression models to estimate odds ratios (ORs), 95% confidence intervals (CIs), and trends. RESULTS: The fully adjusted OR for ever-exposure to asbestos was 1.24 (95% CI, 1.18, 1.31) in men and 1.12 (95% CI, 0.95, 1.31) in women. In men, increasing lung cancer risk was observed with increasing exposure in all smoking categories and for all three major lung cancer subtypes. In women, lung cancer risk for all subtypes was increased in current smokers (ORs ~two-fold). The joint effect of asbestos exposure and smoking did not deviate from multiplicativity among men, and was more than additive among women. CONCLUSIONS: Our results in men showed an excess risk of lung cancer and its subtypes at low cumulative exposure levels, with a steeper exposure–response slope in this exposure range than at higher, previously studied levels. (See video abstract at, http://links.lww.com/EDE/B161.) |
format | Online Article Text |
id | pubmed-5287435 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2017 |
publisher | Lippincott Williams & Wilkins |
record_format | MEDLINE/PubMed |
spelling | pubmed-52874352017-02-15 Exposure–Response Analyses of Asbestos and Lung Cancer Subtypes in a Pooled Analysis of Case–Control Studies Olsson, Ann C. Vermeulen, Roel Schüz, Joachim Kromhout, Hans Pesch, Beate Peters, Susan Behrens, Thomas Portengen, Lützen Mirabelli, Dario Gustavsson, Per Kendzia, Benjamin Almansa, Josue Luzon, Veronique Vlaanderen, Jelle Stücker, Isabelle Guida, Florence Consonni, Dario Caporaso, Neil Landi, Maria Teresa Field, John Brüske, Irene Wichmann, Heinz-Erich Siemiatycki, Jack Parent, Marie-Elise Richiardi, Lorenzo Merletti, Franco Jöckel, Karl-Heinz Ahrens, Wolfgang Pohlabeln, Hermann Plato, Nils Tardón, Adonina Zaridze, David McLaughlin, John Demers, Paul Szeszenia-Dabrowska, Neonila Lissowska, Jolanta Rudnai, Peter Fabianova, Eleonora Stanescu Dumitru, Rodica Bencko, Vladimir Foretova, Lenka Janout, Vladimir Boffetta, Paolo Bueno-de-Mesquita, Bas Forastiere, Francesco Brüning, Thomas Straif, Kurt Epidemiology Occupational Epidemiology BACKGROUND: Evidence is limited regarding risk and the shape of the exposure–response curve at low asbestos exposure levels. We estimated the exposure–response for occupational asbestos exposure and assessed the joint effect of asbestos exposure and smoking by sex and lung cancer subtype in general population studies. METHODS: We pooled 14 case–control studies conducted in 1985–2010 in Europe and Canada, including 17,705 lung cancer cases and 21,813 controls with detailed information on tobacco habits and lifetime occupations. We developed a quantitative job-exposure-matrix to estimate job-, time period-, and region-specific exposure levels. Fiber-years (ff/ml-years) were calculated for each subject by linking the matrix with individual occupational histories. We fit unconditional logistic regression models to estimate odds ratios (ORs), 95% confidence intervals (CIs), and trends. RESULTS: The fully adjusted OR for ever-exposure to asbestos was 1.24 (95% CI, 1.18, 1.31) in men and 1.12 (95% CI, 0.95, 1.31) in women. In men, increasing lung cancer risk was observed with increasing exposure in all smoking categories and for all three major lung cancer subtypes. In women, lung cancer risk for all subtypes was increased in current smokers (ORs ~two-fold). The joint effect of asbestos exposure and smoking did not deviate from multiplicativity among men, and was more than additive among women. CONCLUSIONS: Our results in men showed an excess risk of lung cancer and its subtypes at low cumulative exposure levels, with a steeper exposure–response slope in this exposure range than at higher, previously studied levels. (See video abstract at, http://links.lww.com/EDE/B161.) Lippincott Williams & Wilkins 2017-03 2017-02-01 /pmc/articles/PMC5287435/ /pubmed/28141674 http://dx.doi.org/10.1097/EDE.0000000000000604 Text en Copyright © 2017 The Author(s). Published by Wolters Kluwer Health, Inc. This is an open access article distributed under the Creative Commons Attribution License 4.0 (CCBY) (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Occupational Epidemiology Olsson, Ann C. Vermeulen, Roel Schüz, Joachim Kromhout, Hans Pesch, Beate Peters, Susan Behrens, Thomas Portengen, Lützen Mirabelli, Dario Gustavsson, Per Kendzia, Benjamin Almansa, Josue Luzon, Veronique Vlaanderen, Jelle Stücker, Isabelle Guida, Florence Consonni, Dario Caporaso, Neil Landi, Maria Teresa Field, John Brüske, Irene Wichmann, Heinz-Erich Siemiatycki, Jack Parent, Marie-Elise Richiardi, Lorenzo Merletti, Franco Jöckel, Karl-Heinz Ahrens, Wolfgang Pohlabeln, Hermann Plato, Nils Tardón, Adonina Zaridze, David McLaughlin, John Demers, Paul Szeszenia-Dabrowska, Neonila Lissowska, Jolanta Rudnai, Peter Fabianova, Eleonora Stanescu Dumitru, Rodica Bencko, Vladimir Foretova, Lenka Janout, Vladimir Boffetta, Paolo Bueno-de-Mesquita, Bas Forastiere, Francesco Brüning, Thomas Straif, Kurt Exposure–Response Analyses of Asbestos and Lung Cancer Subtypes in a Pooled Analysis of Case–Control Studies |
title | Exposure–Response Analyses of Asbestos and Lung Cancer Subtypes in a Pooled Analysis of Case–Control Studies |
title_full | Exposure–Response Analyses of Asbestos and Lung Cancer Subtypes in a Pooled Analysis of Case–Control Studies |
title_fullStr | Exposure–Response Analyses of Asbestos and Lung Cancer Subtypes in a Pooled Analysis of Case–Control Studies |
title_full_unstemmed | Exposure–Response Analyses of Asbestos and Lung Cancer Subtypes in a Pooled Analysis of Case–Control Studies |
title_short | Exposure–Response Analyses of Asbestos and Lung Cancer Subtypes in a Pooled Analysis of Case–Control Studies |
title_sort | exposure–response analyses of asbestos and lung cancer subtypes in a pooled analysis of case–control studies |
topic | Occupational Epidemiology |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5287435/ https://www.ncbi.nlm.nih.gov/pubmed/28141674 http://dx.doi.org/10.1097/EDE.0000000000000604 |
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