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Exposures to Drinking Water Contaminants in Community Water Systems and Risk of Ovarian Cancer in the California
Maya Spaur1, Lauren M Hurwitz1, Danielle N Medgyesi2
1Occupational and Environmental Epidemiology Branch, Division of Cancer Epidemiology and Genetics, National Cancer Institute, Rockville, Maryland 20892, United States.
Background:
Several drinking water contaminants are known or suspected carcinogens; however, there are only a few investigations of drinking water exposure and ovarian cancer. We evaluated associations between regulated contaminants in community water systems (CWS) and ovarian cancer risk in the California Teachers Study, a prospective cohort of female California educators.
Methods:
Participants were cancer-free, without bilateral oophorectomy, living in California at baseline (1995-1996) with geocoded addresses linked to a CWS (N = 91,127, 92%), with follow-up through 2020 (mean = 19.0 years). Among participants with a residential duration at enrollment of at least 10 years, we computed 15-year (1990-2005) averages of log2-transformed arsenic, nitrate, total trihalomethanes (TTHM) (N = 59,881), and uranium concentrations (N = 56,314). We estimated hazard ratios (HRs, 95% CIs) for all epithelial ovarian cancers (n = 413) and the high-grade serous histotype (n = 199), using Cox proportional hazards regression, adjusting for age, body mass index, menopause status, oral contraceptive use, and parity. We evaluated the mixture effect (per IQR in log2 concentrations) using quantile-based g-computation.
Results:
Almost all women (>99%) had average exposures below regulatory limits for all contaminants. In single contaminant analyses, a doubling in average uranium concentrations was associated with all ovarian cancer (HRperlog2 = 1.07, CI 1.00-1.15), whereas a doubling in nitrate was associated with the high-grade serous histotype (HRperlog2 = 1.09, 95% CI 1.01, 1.17). Findings were similar in models adjusted for other contaminants. We observed positive but imprecise associations for arsenic and TTHM in single-contaminant and contaminant-adjusted analyses. HRs per increase in the mixture were 1.34 (0.95, 1.88) and 1.77 (1.09, 2.87) for all ovarian cancer and the high-grade serous histotype, respectively. Uranium was the largest contributor (56%) to the mixture effect for all ovarian cancers, and nitrate was the largest contributor (48%) for the high-grade serous histotype.
Conclusions:
Novel associations between drinking water contaminants and ovarian cancer risk at levels below regulatory limits warrant further investigation.
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