Incidence of lung cancer and mortality among civil construction industry workers: A protocol for a systematic review and meta-analysis

The construction sector is one of the most stable growth industries in the world. However, many studies have suggested an association between occupational exposure in civil construction and lung cancer risk. Thus, this study aims to assess lung cancer risk in civil construction workers occupationall...

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Autores:
Cahuana Pinto, Rita
Castro Panzenhagen, Alana
Silva Oliveira, Luis Felipe
Moreira, José Cláudio Fonseca
Schnorr, Carlos Eduardo
Tipo de recurso:
Article of journal
Fecha de publicación:
2021
Institución:
Corporación Universidad de la Costa
Repositorio:
REDICUC - Repositorio CUC
Idioma:
eng
OAI Identifier:
oai:repositorio.cuc.edu.co:11323/8266
Acceso en línea:
https://hdl.handle.net/11323/8266
https://doi.org/10.1371/journal.pone.0250377
https://repositorio.cuc.edu.co/
Palabra clave:
Lung cancer
Civil construction workers
Occupational exposure
Systematic review
Rights
openAccess
License
CC0 1.0 Universal
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dc.title.eng.fl_str_mv Incidence of lung cancer and mortality among civil construction industry workers: A protocol for a systematic review and meta-analysis
title Incidence of lung cancer and mortality among civil construction industry workers: A protocol for a systematic review and meta-analysis
spellingShingle Incidence of lung cancer and mortality among civil construction industry workers: A protocol for a systematic review and meta-analysis
Lung cancer
Civil construction workers
Occupational exposure
Systematic review
title_short Incidence of lung cancer and mortality among civil construction industry workers: A protocol for a systematic review and meta-analysis
title_full Incidence of lung cancer and mortality among civil construction industry workers: A protocol for a systematic review and meta-analysis
title_fullStr Incidence of lung cancer and mortality among civil construction industry workers: A protocol for a systematic review and meta-analysis
title_full_unstemmed Incidence of lung cancer and mortality among civil construction industry workers: A protocol for a systematic review and meta-analysis
title_sort Incidence of lung cancer and mortality among civil construction industry workers: A protocol for a systematic review and meta-analysis
dc.creator.fl_str_mv Cahuana Pinto, Rita
Castro Panzenhagen, Alana
Silva Oliveira, Luis Felipe
Moreira, José Cláudio Fonseca
Schnorr, Carlos Eduardo
dc.contributor.author.spa.fl_str_mv Cahuana Pinto, Rita
Castro Panzenhagen, Alana
Silva Oliveira, Luis Felipe
Moreira, José Cláudio Fonseca
Schnorr, Carlos Eduardo
dc.subject.eng.fl_str_mv Lung cancer
Civil construction workers
Occupational exposure
Systematic review
topic Lung cancer
Civil construction workers
Occupational exposure
Systematic review
description The construction sector is one of the most stable growth industries in the world. However, many studies have suggested an association between occupational exposure in civil construction and lung cancer risk. Thus, this study aims to assess lung cancer risk in civil construction workers occupationally exposed to physical and chemical agents through a systematic review and meta-analysis. Studies will be identified by searching PUBMED, Embase, SCOPUS, WEB OF SCIENCE and the reference list of included articles. Eligible study designs will be cohort, cross-sectional, and case-control studies that report occupational exposure to physical or chemical agents and lung cancer risk through mortality or incidence outcomes. A meta-analysis will be used to combine odds ratios (ORs) from case-control studies and relative risks (RR) from cohort studies. Two reviewers will independently screen articles, extract data, and assess scientific quality using standardized forms and ROBINS-E tool if available. Otherwise, the New-Castle Ottawa rating scale will be used. Any of those will also be used in combination with the GRADE approach for quality of evidence. Overall risk estimates and their corresponding 95% confidence intervals (CIs) will be obtained using the random-effects model meta-analysis. This systematic review and meta-analysis will be conducted following the Meta-analysis of Observational Studies in Epidemiology (MOOSE) guidelines. Results will be reported according to the Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) statement. This review will identify and synthesize studies investigating the association between occupational exposure in the construction industry and lung cancer. The findings will help governmental entities and researchers with evidence-based decision-making because they will integrate and validate the evidence on construction workers’ health effects due to occupational exposure.
publishDate 2021
dc.date.accessioned.none.fl_str_mv 2021-05-20T15:25:19Z
dc.date.available.none.fl_str_mv 2021-05-20T15:25:19Z
dc.date.issued.none.fl_str_mv 2021-04-26
dc.type.spa.fl_str_mv Artículo de revista
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https://doi.org/10.1371/journal.pone.0250377
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dc.relation.references.spa.fl_str_mv 1. Sertyeşilışık B. Global Trends in the Construction Industry: Challenges of Employment. Handbook of Research on Unemployment and Labor Market Sustainability in the Era of Globalization. IGI Global; 2017. pp. 255–274. https://doi.org/10.4018/978-1-5225-2008-5.ch015
2. UN, IEA. Global status report for buildings and construction. 2019.
3. Burkhart G, Schulte PA, Robinson C, Sieber WK, Vossenas P, Ringen K. Job tasks, potential exposures, and health risks of laborers employed in the construction industry. Am J Ind Med. 1993; 24: 413– 425. https://doi.org/10.1002/ajim.4700240407 PMID: 8250061
4. Ortega Herrera J. Contaminantes quı´micos en la construccio´n. Consejerı´a de Economı´a y Empleo, editor. Castilla y Leo´n, España: Direccio´n General de Trabajo y Prevencio´n de Riesgos Laborales; 2004.
5. Thienen G Van, Spee T. Health Effects of construction materials and construction products. TTA Broch NR1. 2008; 22.
6. British Health and Safety Executive. Occupational Cancer statistics in Great Britain, 2020. London; 2020.
7. IARC. IARC Monographs on the Identification of Carcinogenic Hazards to Humans Volume 1–125. IARC Working Group, editor. Lyon, France: WHO Press; 2020.
8. Dement JM, Ringen K, Welch LS, Bingham E, Quinn P. Mortality of older construction and craft workers employed at department of energy (DOE) nuclear sites. Am J Ind Med. 2009; 52: 671–682. https://doi.org/10.1002/ajim.20729 PMID: 19670258
9. Veglia F, Vineis P, Overvad K, Boeing H, Bergmann MM, Trichopoulou A, et al. Occupational Exposures, Environmental Tobacco Smoke, and Lung Cancer. Epidemiology. 2007; 18: 769–775. https:// doi.org/10.1097/ede.0b013e318142c8a1 PMID: 18062064
10. DONG W, VAUGHAN P, SULLIVAN K, FLETCHER T. Mortality Study of Construction Workers in the UK. Int J Epidemiol. 1995; 24: 750–757. https://doi.org/10.1093/ije/24.4.750 PMID: 8550272
11. Koskinen K, Pukkala E, Martikainen R, Reijula K, Karjalainen A. Different Measures of Asbestos Exposure in Estimating Risk of Lung Cancer and Mesothelioma Among Construction Workers. J Occup Environ Med. 2002; 44: 1190–1196. https://doi.org/10.1097/00043764-200212000-00015 PMID: 12500463
12. Stocks SJ, McNamee R, Carder M, Agius RM. The incidence of medically reported work-related ill health in the UK construction industry. Occup Environ Med. 2010; 67: 574–576. https://doi.org/10.1136/ oem.2009.053595 PMID: 20647381
13. Thuret A, Geoffroy-Perez B, Luce D, Goldberg M, Imbernon E. A 26-Year Cohort Mortality Study of French Construction Workers Aged 20 to 64 Years. J Occup Environ Med. 2007; 49: 546–556. https:// doi.org/10.1097/JOM.0b013e3180577714 PMID: 17495697
14. d’Errico A, Mamo C, Tomaino A, Dalmasso M, Demaria M, Costa G. Mortality of a cohort of road construction and maintenance workers with work disability compensation. Med Lav. 2002; 93: 519–26. Available: http://www.ncbi.nlm.nih.gov/pubmed/12596422 PMID: 12596422
15. Sun J. Mortality among Japanese construction workers in Mie Prefecture. Occup Environ Med. 2002; 59: 512–516. https://doi.org/10.1136/oem.59.8.512 PMID: 12151606
16. Arndt V. All-cause and cause specific mortality in a cohort of 20 000 construction workers; results from a 10 year follow up. Occup Environ Med. 2004; 61: 419–425. https://doi.org/10.1136/oem.2003.008680PMID: 15090662
17. Consonni D, De Matteis S, Pesatori AC, Cattaneo A, Cavallo DM, Lubin JH, et al. Increased lung cancer risk among bricklayers in an Italian population-based case-control study. Am J Ind Med. 2012; 55: 423–428. https://doi.org/10.1002/ajim.22017 PMID: 22298231
18. Consonni D, Matteis S De, Pesatori AC, Cattaneo A, Cavallo DM, Lubin JH, et al. Erratum to “Increased lung cancer risk among bricklayers in an italian population-based case-control study.” Am J Ind Med. 2013; 56: 825–825. https://doi.org/10.1002/ajim.ERRATUM
19. Calvert GM, Luckhaupt S, Lee S, Cress R, Schumacher P, Shen R, et al. Lung cancer risk among construction workers in California, 1988–2007. Am J Ind Med. 2012; 55: 412–422. https://doi.org/10.1002/ajim.22010 PMID: 22237930
20. Donato F, Garzaro G, Pira E, Boffetta P. Mortality and cancer morbidity among cement production workers: a meta-analysis. Int Arch Occup Environ Health. 2016; 89: 1155–1168. https://doi.org/10. 1007/s00420-016-1167-x PMID: 27604876
21. Alonso-Sardo´n M, Chamorro A-J, Herna´ndez-Garc´ıa I, Iglesias-de-Sena H, Martı´n-Rodero H, Herrera C, et al. Association between Occupational Exposure to Wood Dust and Cancer: A Systematic Review and Meta-Analysis. Zhang Z, editor. PLoS One. 2015; 10: e0133024. https://doi.org/10.1371/journal.pone.0133024 PMID: 26191795
22. Boschman JS, van der Molen HF, Sluiter JK, Frings-Dresen MHW. Occupational demands and health effects for bricklayers and construction supervisors: A systematic review. Am J Ind Med. 2011; 54: 55– 77. https://doi.org/10.1002/ajim.20899 PMID: 20886532
23. Stroup D F, Berlin J A, Morton S C, Olkin I, Williamson G D, Rennie D, et al. Meta-analysis of ObservationalStudies in Epidemiology: a proposal for reporting Meta-analysis Of Observational Studies in Epidemiology (MOOSE) group. JAMA. 2000; 283: 2008. https://doi.org/10.1001/jama.283.15.2008 PMID: 10789670
24. Liberati A, Altman DG, Tetzlaff J, Mulrow C, Gotzsche PC, Ioannidis JPA, et al. The PRISMA statement for reporting systematic reviews and meta-analyses of studies that evaluate healthcare interventions: explanation and elaboration. BMJ. 2009; 339: b2700–b2700. https://doi.org/10.1136/bmj.b2700 PMID:19622552
25. GA Wells, B Shea, D O’Connell, J Peterson, V Welch, M Losos PT. The Newcastle-Ottawa Scale (NOS) for assessing the quality of nonrandomised studies in meta-analyses. Ottawa, Canada: The Ottawa Hospital Research Institute; 2000.
26. Lo CK, Mertz D, Loeb M. Newcastle-Ottawa Scale: comparing reviewers’ to authors’ assessments. BMC Med Res Methodol. 2014; 14: 45. https://doi.org/10.1186/1471-2288-14-45 PMID: 24690082
27. Schu¨nemann, Holger; Brożek, Jan; Guyatt, Gordon; Oxman A. GRADE handbook for grading quality of evidence and strength of recommendations. Updated October 2013. The GRADE Working Group, editor. The Cochrane Colaboration; 2013.
28. Fernandez Chinguel JE, Zafra Tanaka JH, Goicochea Lugo S, Peralta CI, Taype Rondan A. Aspectos ba´sicos sobre la lectura de revisiones sistema´ticas y la interpretacio´n de meta-ana´lisis. ACTA MEDICA Peru. 2019; 36: 157–169. https://doi.org/10.35663/amp.2019.362.818
29. Higgins JP, Green S, editors. Cochrane Handbook for Systematic Reviews of Interventions Version 5.1.0 [updated March 2011]. 2011.
30. Egger M, Smith GD, Schneider M, Minder C. Bias in meta-analysis detected by a simple, graphical test. BMJ. 1997; 315: 629–634. https://doi.org/10.1136/bmj.315.7109.629 PMID: 9310563
31. Ferreira Gonza´lez I, Urru´tia G, Alonso-Coello P. Revisiones sistema´ticas y metaana´lisis: bases conceptuales e interpretacio´n. Rev Española Cardiol. 2011; 64: 688–696. https://doi.org/10.1016/j.recesp.2011.03.029 PMID: 21719182
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spelling Cahuana Pinto, RitaCastro Panzenhagen, AlanaSilva Oliveira, Luis FelipeMoreira, José Cláudio FonsecaSchnorr, Carlos Eduardo2021-05-20T15:25:19Z2021-05-20T15:25:19Z2021-04-261932-6203https://hdl.handle.net/11323/8266https://doi.org/10.1371/journal.pone.0250377Corporación Universidad de la CostaREDICUC - Repositorio CUChttps://repositorio.cuc.edu.co/The construction sector is one of the most stable growth industries in the world. However, many studies have suggested an association between occupational exposure in civil construction and lung cancer risk. Thus, this study aims to assess lung cancer risk in civil construction workers occupationally exposed to physical and chemical agents through a systematic review and meta-analysis. Studies will be identified by searching PUBMED, Embase, SCOPUS, WEB OF SCIENCE and the reference list of included articles. Eligible study designs will be cohort, cross-sectional, and case-control studies that report occupational exposure to physical or chemical agents and lung cancer risk through mortality or incidence outcomes. A meta-analysis will be used to combine odds ratios (ORs) from case-control studies and relative risks (RR) from cohort studies. Two reviewers will independently screen articles, extract data, and assess scientific quality using standardized forms and ROBINS-E tool if available. Otherwise, the New-Castle Ottawa rating scale will be used. Any of those will also be used in combination with the GRADE approach for quality of evidence. Overall risk estimates and their corresponding 95% confidence intervals (CIs) will be obtained using the random-effects model meta-analysis. This systematic review and meta-analysis will be conducted following the Meta-analysis of Observational Studies in Epidemiology (MOOSE) guidelines. Results will be reported according to the Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) statement. This review will identify and synthesize studies investigating the association between occupational exposure in the construction industry and lung cancer. The findings will help governmental entities and researchers with evidence-based decision-making because they will integrate and validate the evidence on construction workers’ health effects due to occupational exposure.Cahuana Pinto, Rita-will be generated-orcid-0000-0002-3296-2808-600Castro Panzenhagen, Alana-will be generated-orcid-0000-0002-8844-3468-600Silva Oliveira, Luis FelipeMoreira, José Cláudio Fonseca-will be generated-orcid-0000-0002-0619-4913-600Schnorr, Carlos Eduardo-will be generated-orcid-0000-0002-2047-2107-600application/pdfengCorporación Universidad de la CostaCC0 1.0 Universalhttp://creativecommons.org/publicdomain/zero/1.0/info:eu-repo/semantics/openAccesshttp://purl.org/coar/access_right/c_abf2PLoS ONEhttps://journals.plos.org/plosone/article?id=10.1371/journal.pone.0250377Lung cancerCivil construction workersOccupational exposureSystematic reviewIncidence of lung cancer and mortality among civil construction industry workers: A protocol for a systematic review and meta-analysisArtículo de revistahttp://purl.org/coar/resource_type/c_6501http://purl.org/coar/resource_type/c_2df8fbb1Textinfo:eu-repo/semantics/articlehttp://purl.org/redcol/resource_type/ARTinfo:eu-repo/semantics/acceptedVersion1. Sertyeşilışık B. Global Trends in the Construction Industry: Challenges of Employment. Handbook of Research on Unemployment and Labor Market Sustainability in the Era of Globalization. IGI Global; 2017. pp. 255–274. https://doi.org/10.4018/978-1-5225-2008-5.ch0152. UN, IEA. Global status report for buildings and construction. 2019.3. Burkhart G, Schulte PA, Robinson C, Sieber WK, Vossenas P, Ringen K. Job tasks, potential exposures, and health risks of laborers employed in the construction industry. Am J Ind Med. 1993; 24: 413– 425. https://doi.org/10.1002/ajim.4700240407 PMID: 82500614. Ortega Herrera J. Contaminantes quı´micos en la construccio´n. Consejerı´a de Economı´a y Empleo, editor. Castilla y Leo´n, España: Direccio´n General de Trabajo y Prevencio´n de Riesgos Laborales; 2004.5. Thienen G Van, Spee T. Health Effects of construction materials and construction products. TTA Broch NR1. 2008; 22.6. British Health and Safety Executive. Occupational Cancer statistics in Great Britain, 2020. London; 2020.7. IARC. IARC Monographs on the Identification of Carcinogenic Hazards to Humans Volume 1–125. IARC Working Group, editor. Lyon, France: WHO Press; 2020.8. Dement JM, Ringen K, Welch LS, Bingham E, Quinn P. Mortality of older construction and craft workers employed at department of energy (DOE) nuclear sites. Am J Ind Med. 2009; 52: 671–682. https://doi.org/10.1002/ajim.20729 PMID: 196702589. Veglia F, Vineis P, Overvad K, Boeing H, Bergmann MM, Trichopoulou A, et al. Occupational Exposures, Environmental Tobacco Smoke, and Lung Cancer. Epidemiology. 2007; 18: 769–775. https:// doi.org/10.1097/ede.0b013e318142c8a1 PMID: 1806206410. DONG W, VAUGHAN P, SULLIVAN K, FLETCHER T. Mortality Study of Construction Workers in the UK. Int J Epidemiol. 1995; 24: 750–757. https://doi.org/10.1093/ije/24.4.750 PMID: 855027211. Koskinen K, Pukkala E, Martikainen R, Reijula K, Karjalainen A. Different Measures of Asbestos Exposure in Estimating Risk of Lung Cancer and Mesothelioma Among Construction Workers. J Occup Environ Med. 2002; 44: 1190–1196. https://doi.org/10.1097/00043764-200212000-00015 PMID: 1250046312. Stocks SJ, McNamee R, Carder M, Agius RM. The incidence of medically reported work-related ill health in the UK construction industry. Occup Environ Med. 2010; 67: 574–576. https://doi.org/10.1136/ oem.2009.053595 PMID: 2064738113. Thuret A, Geoffroy-Perez B, Luce D, Goldberg M, Imbernon E. A 26-Year Cohort Mortality Study of French Construction Workers Aged 20 to 64 Years. J Occup Environ Med. 2007; 49: 546–556. https:// doi.org/10.1097/JOM.0b013e3180577714 PMID: 1749569714. d’Errico A, Mamo C, Tomaino A, Dalmasso M, Demaria M, Costa G. Mortality of a cohort of road construction and maintenance workers with work disability compensation. Med Lav. 2002; 93: 519–26. Available: http://www.ncbi.nlm.nih.gov/pubmed/12596422 PMID: 1259642215. Sun J. Mortality among Japanese construction workers in Mie Prefecture. Occup Environ Med. 2002; 59: 512–516. https://doi.org/10.1136/oem.59.8.512 PMID: 1215160616. Arndt V. All-cause and cause specific mortality in a cohort of 20 000 construction workers; results from a 10 year follow up. Occup Environ Med. 2004; 61: 419–425. https://doi.org/10.1136/oem.2003.008680PMID: 1509066217. Consonni D, De Matteis S, Pesatori AC, Cattaneo A, Cavallo DM, Lubin JH, et al. Increased lung cancer risk among bricklayers in an Italian population-based case-control study. Am J Ind Med. 2012; 55: 423–428. https://doi.org/10.1002/ajim.22017 PMID: 2229823118. Consonni D, Matteis S De, Pesatori AC, Cattaneo A, Cavallo DM, Lubin JH, et al. Erratum to “Increased lung cancer risk among bricklayers in an italian population-based case-control study.” Am J Ind Med. 2013; 56: 825–825. https://doi.org/10.1002/ajim.ERRATUM19. Calvert GM, Luckhaupt S, Lee S, Cress R, Schumacher P, Shen R, et al. Lung cancer risk among construction workers in California, 1988–2007. Am J Ind Med. 2012; 55: 412–422. https://doi.org/10.1002/ajim.22010 PMID: 2223793020. Donato F, Garzaro G, Pira E, Boffetta P. Mortality and cancer morbidity among cement production workers: a meta-analysis. Int Arch Occup Environ Health. 2016; 89: 1155–1168. https://doi.org/10. 1007/s00420-016-1167-x PMID: 2760487621. Alonso-Sardo´n M, Chamorro A-J, Herna´ndez-Garc´ıa I, Iglesias-de-Sena H, Martı´n-Rodero H, Herrera C, et al. Association between Occupational Exposure to Wood Dust and Cancer: A Systematic Review and Meta-Analysis. Zhang Z, editor. PLoS One. 2015; 10: e0133024. https://doi.org/10.1371/journal.pone.0133024 PMID: 2619179522. Boschman JS, van der Molen HF, Sluiter JK, Frings-Dresen MHW. Occupational demands and health effects for bricklayers and construction supervisors: A systematic review. Am J Ind Med. 2011; 54: 55– 77. https://doi.org/10.1002/ajim.20899 PMID: 2088653223. Stroup D F, Berlin J A, Morton S C, Olkin I, Williamson G D, Rennie D, et al. Meta-analysis of ObservationalStudies in Epidemiology: a proposal for reporting Meta-analysis Of Observational Studies in Epidemiology (MOOSE) group. JAMA. 2000; 283: 2008. https://doi.org/10.1001/jama.283.15.2008 PMID: 1078967024. Liberati A, Altman DG, Tetzlaff J, Mulrow C, Gotzsche PC, Ioannidis JPA, et al. The PRISMA statement for reporting systematic reviews and meta-analyses of studies that evaluate healthcare interventions: explanation and elaboration. BMJ. 2009; 339: b2700–b2700. https://doi.org/10.1136/bmj.b2700 PMID:1962255225. GA Wells, B Shea, D O’Connell, J Peterson, V Welch, M Losos PT. The Newcastle-Ottawa Scale (NOS) for assessing the quality of nonrandomised studies in meta-analyses. Ottawa, Canada: The Ottawa Hospital Research Institute; 2000.26. Lo CK, Mertz D, Loeb M. Newcastle-Ottawa Scale: comparing reviewers’ to authors’ assessments. BMC Med Res Methodol. 2014; 14: 45. https://doi.org/10.1186/1471-2288-14-45 PMID: 2469008227. Schu¨nemann, Holger; Brożek, Jan; Guyatt, Gordon; Oxman A. GRADE handbook for grading quality of evidence and strength of recommendations. Updated October 2013. The GRADE Working Group, editor. The Cochrane Colaboration; 2013.28. Fernandez Chinguel JE, Zafra Tanaka JH, Goicochea Lugo S, Peralta CI, Taype Rondan A. Aspectos ba´sicos sobre la lectura de revisiones sistema´ticas y la interpretacio´n de meta-ana´lisis. ACTA MEDICA Peru. 2019; 36: 157–169. https://doi.org/10.35663/amp.2019.362.81829. Higgins JP, Green S, editors. Cochrane Handbook for Systematic Reviews of Interventions Version 5.1.0 [updated March 2011]. 2011.30. Egger M, Smith GD, Schneider M, Minder C. Bias in meta-analysis detected by a simple, graphical test. BMJ. 1997; 315: 629–634. https://doi.org/10.1136/bmj.315.7109.629 PMID: 931056331. Ferreira Gonza´lez I, Urru´tia G, Alonso-Coello P. Revisiones sistema´ticas y metaana´lisis: bases conceptuales e interpretacio´n. 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