Elevated Bladder Cancer in Northern New England: The Role of Drinking Water and Arsenic
- PMID: 27140955
- PMCID: PMC5939854
- DOI: 10.1093/jnci/djw099
Elevated Bladder Cancer in Northern New England: The Role of Drinking Water and Arsenic
Abstract
Background: Bladder cancer mortality rates have been elevated in northern New England for at least five decades. Incidence rates in Maine, New Hampshire, and Vermont are about 20% higher than the United States overall. We explored reasons for this excess, focusing on arsenic in drinking water from private wells, which are particularly prevalent in the region.
Methods: In a population-based case-control study in these three states, 1213 bladder cancer case patients and 1418 control subjects provided information on suspected risk factors. Log transformed arsenic concentrations were estimated by linear regression based on measurements in water samples from current and past homes. All statistical tests were two-sided.
Results: Bladder cancer risk increased with increasing water intake (Ptrend = .003). This trend was statistically significant among participants with a history of private well use (Ptrend = .01). Among private well users, this trend was apparent if well water was derived exclusively from shallow dug wells (which are vulnerable to contamination from manmade sources, Ptrend = .002) but not if well water was supplied only by deeper drilled wells (Ptrend = .48). If dug wells were used pre-1960, when arsenical pesticides were widely used in the region, heavier water consumers (>2.2 L/day) had double the risk of light users (<1.1 L/day, Ptrend = .01). Among all participants, cumulative arsenic exposure from all water sources, lagged 40 years, yielded a positive risk gradient (Ptrend = .004); among the highest-exposed participants (97.5th percentile), risk was twice that of the lowest-exposure quartile (odds ratio = 2.24, 95% confidence interval = 1.29 to 3.89).
Conclusions: Our findings support an association between low-to-moderate levels of arsenic in drinking water and bladder cancer risk in New England. In addition, historical consumption of water from private wells, particularly dug wells in an era when arsenical pesticides were widely used, was associated with increased bladder cancer risk and may have contributed to the New England excess.
Published by Oxford University Press 2016. This work is written by US Government employees and is in the public domain in the United States.
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References
-
- U.S. National Cancer Institute, Cancer Mortality Maps . http://ratecalc.cancer.gov/ .
-
- Howe HL. Urban-rural gradients in cancer incidence and mortality in the United States . Springfield, IL: : North American Association of Central Cancer Registries, Inc; .; 2005. .
-
- Colli J, Lee BR, Thomas R. Population densities in relation to bladder cancer mortality rates in America from 1950 to 1994 . Int Urol Nephrol . 2012. ; 44 ( 2 ): 443 – 449 . - PubMed
-
- Brown LM, Zahm SH, Hoover RN , et al. . High bladder cancer mortality in rural New England (United States): an etiologic study . Cancer Causes Control. 1995. ; 6 ( 4 ): 361 – 368 . - PubMed
-
- Silverman D, Devesa SS, Moore LE , et al. . Bladder Cancer . In: Schottenfeld D, Fraumeni JF. (eds). Cancer Epidemiology and Prevention . 3rd Edition ed.Oxford: : Oxford University Press; ; 2006. .
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