Serum organochlorine pesticide residues and risk of testicular germ cell carcinoma: a population-based case-control study
- PMID: 18708392
- PMCID: PMC2766345
- DOI: 10.1158/1055-9965.EPI-08-0032
Serum organochlorine pesticide residues and risk of testicular germ cell carcinoma: a population-based case-control study
Abstract
Testicular germ cell carcinoma (TGCC) is the most common malignancy among men ages 20 to 34 years. Although the pathogenesis of TGCC is poorly understood, suboptimal androgen levels or impaired androgen signaling may play a role. Some persistent organochlorine pesticides commonly found in human tissue possess antiandrogenic properties. We examined whether the risk of TGCC is associated with serum levels of 11 organochlorine pesticides, including p,p'-DDE, and whether the p,p'-DDE-TGCC association is modified by CAG or GGN repeat polymorphisms in the androgen receptor gene. We conducted a population-based case-control study among 18- to 44-year-old male residents of three Washington State counties. Cases (n = 246) were diagnosed during 1999 to 2003 with a first, primary TGCC. Controls (n = 630) were men of similar age with no history of TGCC from the same population identified through random-digit telephone dialing. Questionnaires elicited information on demographic, medical, and lifestyle factors. A blood specimen provided serum for gas chromatography-high-resolution mass spectrometry analysis of organochlorine pesticide residues and DNA for genotyping. We observed no clear patterns between TGCC risk and concentrations of any of the organochlorines measured, nor did we observe that the risk associated with p,p'-DDE was modified by androgen receptor CAG (<23 versus > or =23 repeats) or GGN (<17 versus > or =17 repeats) genotype. This study does not provide support for the hypothesis that adult exposure to organochlorine pesticides is associated with risk of TGCC. Due to uncertainty regarding how well organochlorine levels measured in adulthood reflect exposures during early life, further research is needed using exposure measurements collected in utero or during infancy.
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References
-
- Brown LM, Pottern LM, Hoover RN, Devesa SS, Aselton P, Flannery JT. Testicular cancer in the United States: trends in incidence and mortality. Int J Epidemiol. 1986;15(2):164–170. - PubMed
-
- Bergstrom R, Adami HO, Mohner M, et al. Increase in testicular cancer incidence in six European countries: a birth cohort phenomenon. J Natl Cancer Inst. 1996;88(11):727–733. - PubMed
-
- Bray F, Richiardi L, Ekbom A, Pukkala E, Cuninkova M, Moller H. Trends in testicular cancer incidence and mortality in 22 European countries: continuing increases in incidence and declines in mortality. Int J Cancer. 2006;118(12):3099–3111. - PubMed
-
- Pharris-Ciurej ND, Cook LS, Weiss NS. Incidence of testicular cancer in the United States: has the epidemic begun to abate? Am J Epidemiol. 1999;150(1):45–46. - PubMed
-
- Moller H. Trends in incidence of testicular cancer and prostate cancer in Denmark. Human Reprod. 2001;16(5):1007–1011. - PubMed
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