Association between asbestos exposure, cigarette smoking, myeloperoxidase (MPO) genotypes, and lung cancer risk
- 20 June 2002
- journal article
- research article
- Published by Wiley in American Journal of Industrial Medicine
- Vol. 42 (1) , 29-37
- https://doi.org/10.1002/ajim.10084
Abstract
Background As observed in tobacco‐associated carcinogenesis, genetic factors such as the polymorphic metabolic/oxidative enzyme myeloperoxidase (MPO) could modulate individual susceptibility to asbestos‐associated carcinogenesis. Methods RFLP‐PCR analysis identified the MPO genotypes in 375 Caucasian lung cancer cases and 378 matched controls. An epidemiological interview elicited detailed information regarding smoking history and occupational history and exposures. Results Asbestos exposure was associated with a significantly elevated risk estimate (OR = 1.45; 95% CI 1.04–2.02). On stratified analysis, we found the MPO genotypes modified the effect of asbestos exposure on lung cancer risk. Specifically, G/G carriers who were exposed to asbestos had an odds ratio (OR) of 1.72 (95% CI; 1.09–2.66), while A‐allele carriers (G/A + A/A) exposed to asbestos exhibited a reduced OR of 0.89 (95% CI; 0.56–1.44). The OR was further reduced to 0.73 (0.49–1.06) for A‐allele carriers not exposed to asbestos. A similar trend was observed for the joint effects between the MPO genotypes and pack‐years smoking. Next, all three risk factors (MPO genotypes, asbestos exposure, and smoking) were analyzed simultaneously for joint effects. Heavy smokers with the G/G genotype and a history of asbestos exposure demonstrated a statistically significant elevated risk estimate (OR = 2.19; 95% CI 1.16–4.11), while the A‐allele carriers with the same exposure profile were at a lower risk for lung cancer (OR = 1.18; 95% CI 0.58–2.38). The A‐allele genotypes demonstrated similar protective effects for the other three exposure profiles. Conclusions For a similar level of exposure to established carcinogens, individuals with the MPO A‐allele genotypes appear to have a reduced risk of lung cancer. Am. J. Ind. Med. 42:29–37, 2002.Keywords
This publication has 20 references indexed in Scilit:
- The molecular basis of asbestos induced lung injuryThorax, 1999
- The 1996 Veylien Henderson Award of the Society of Toxicology of Canada. Current concepts: neutrophils and the activation of carcinogens in the breast and other organsCanadian Journal of Physiology and Pharmacology, 1998
- The glutathione S-transferase ? and ? deletion polymorphisms in asbestosisAmerican Journal of Industrial Medicine, 1997
- Glutathione S-Transferase and N-Acetyltransferase Genotypes and Asbestos-Associated Pulmonary DisordersJNCI Journal of the National Cancer Institute, 1996
- An Alu Element in the Myeloperoxidase Promoter Contains a Composite SP1-Thyroid Hormone-Retinoic Acid Response ElementJournal of Biological Chemistry, 1996
- Hypochlorous acid/N-chloramines are naturally produced DNA repair inhibitorsCarcinogenesis: Integrative Cancer Research, 1996
- Genetic polymorphism for glutathione-S-transferase mu in asbestos cement workers.Occupational and Environmental Medicine, 1994
- Myeloperoxidase-enhanced formation of (±)-trans-7,8-dihydroxy-7,8-dihydrobenzo[a] pyrene adducts in lung tissue in vitro: a role of pulmonary inflammation in the bioactivation of a procarcinogenCarcinogenesis: Integrative Cancer Research, 1992
- Possible cellular and molecular mechanisms for asbestos carcinogenicityAmerican Journal of Industrial Medicine, 1992
- ON ESTIMATING THE RELATION BETWEEN BLOOD GROUP AND DISEASEAnnals of Human Genetics, 1955