TY - JOUR
T1 - Pooled exposure-response analyses and risk assessment for lung cancer in 10 cohorts of silica-exposed workers
T2 - An IARC multicentre study
AU - Steenland, Kyle
AU - Mannetje, Andrea
AU - Boffetta, Paolo
AU - Stayner, Leslie
AU - Attfield, Michael
AU - Chen, Jingqiong
AU - Dosemeci, Mustafa
AU - DeKlerk, Nicholas
AU - Hnizdo, Eva
AU - Koskela, Riitta
AU - Checkoway, Harvey
PY - 2001
Y1 - 2001
N2 - Objectives: Silica is one of the most common occupational exposures worldwide. In 1997 the International Agency for Research on Cancer (IARC) classified inhaled crystalline silica as a human carcinogen (group 1), but acknowledged limitations in the epidemiologic data, including inconsistencies across studies and the lack of extensive exposure-response data. We have conducted a pooled exposure-response analysis of 10 silica-exposed cohorts to investigate lung cancer. Methods: The pooled cohort included 65,980 workers (44,160 miners, 21,820 nominees), and 1072 lung cancer deaths (663 miners, 409 nonminers). Follow-up has been extended for five of these cohorts beyond published data. Quantitative exposure estimates by job and calendar time were adopted, modified, or developed to permit common analyses by respirable silica (mg/m3) across cohorts. Results: The log of cumulative exposure, with a 15-year lag, was a strong predictor of lung cancer (p = 00001), with consistency across studies (test for heterogeneity, p = 034). Results for the log of cumulative exposure were consistent between underground mines and other facilities. Categorical analyses by quintile of cumulative exposure resulted in a monotonic trend with odds ratios of 1.0, 1.0, 1.3, 1.5, 1.6. Analyses using a spline curve also showed a monotonic increase in risk with increasing exposure. The estimated excess lifetime risk (through age 75) of lung cancer for a worker exposed from age 20 to 65 at 0.1 mg/m3 respirable crystalline silica (the permissible level in many countries) was 1.1-1.7%, above background risks of 3-6%. Conclusions: Our results support the decision by the IARC to classify inhaled silica in occupational settings as a carcinogen, and suggest that the current exposure limits in many countries may be inadequate. These data represent the first quantitative exposure-response analysis and risk assessment for silica using data from multiple studies.
AB - Objectives: Silica is one of the most common occupational exposures worldwide. In 1997 the International Agency for Research on Cancer (IARC) classified inhaled crystalline silica as a human carcinogen (group 1), but acknowledged limitations in the epidemiologic data, including inconsistencies across studies and the lack of extensive exposure-response data. We have conducted a pooled exposure-response analysis of 10 silica-exposed cohorts to investigate lung cancer. Methods: The pooled cohort included 65,980 workers (44,160 miners, 21,820 nominees), and 1072 lung cancer deaths (663 miners, 409 nonminers). Follow-up has been extended for five of these cohorts beyond published data. Quantitative exposure estimates by job and calendar time were adopted, modified, or developed to permit common analyses by respirable silica (mg/m3) across cohorts. Results: The log of cumulative exposure, with a 15-year lag, was a strong predictor of lung cancer (p = 00001), with consistency across studies (test for heterogeneity, p = 034). Results for the log of cumulative exposure were consistent between underground mines and other facilities. Categorical analyses by quintile of cumulative exposure resulted in a monotonic trend with odds ratios of 1.0, 1.0, 1.3, 1.5, 1.6. Analyses using a spline curve also showed a monotonic increase in risk with increasing exposure. The estimated excess lifetime risk (through age 75) of lung cancer for a worker exposed from age 20 to 65 at 0.1 mg/m3 respirable crystalline silica (the permissible level in many countries) was 1.1-1.7%, above background risks of 3-6%. Conclusions: Our results support the decision by the IARC to classify inhaled silica in occupational settings as a carcinogen, and suggest that the current exposure limits in many countries may be inadequate. These data represent the first quantitative exposure-response analysis and risk assessment for silica using data from multiple studies.
KW - Centre study
KW - Lung cancer
KW - Multi
KW - Silica
UR - http://www.scopus.com/inward/record.url?scp=0034775046&partnerID=8YFLogxK
U2 - 10.1023/A:1012214102061
DO - 10.1023/A:1012214102061
M3 - Article
C2 - 11714104
AN - SCOPUS:0034775046
SN - 0957-5243
VL - 12
SP - 773
EP - 784
JO - Cancer Causes and Control
JF - Cancer Causes and Control
IS - 9
ER -