Effect of an Arsenic Mitigation Program on Arsenic Exposure in American Indian Communities: A Cluster Randomized Controlled Trial of the Community-Led Strong Heart Water Study Program.

Ana Navas-Acien, Ronald Alexander Glabonjat, Ana Rule, Christa Cuny, Leslie Skinner, Annabelle Black Bear, Reno Red Cloud, Lisa Bear Robe, Francine Richards, Kelly Endres, Tracy Zacher, Christine Marie George, Kathrin Schilling, Lyle G Best, Lawrence H Moulton, Joel Gittelsohn, Jason Umans, David Harvey, Jianhui Zhu, Kellogg J Schwab, Marcia O'Leary, Elizabeth D Thomas

Journal: Environmental health perspectives 2024;132(3):37007

PMID: 38534131

Abstract

BACKGROUND

Chronic arsenic exposure has been associated with an increased risk of cardiovascular disease; diabetes; cancers of the lung, pancreas and prostate; and all-cause mortality in American Indian communities in the Strong Heart Study.

OBJECTIVE

The Strong Heart Water Study (SHWS) designed and evaluated a multilevel, community-led arsenic mitigation program to reduce arsenic exposure among private well users in partnership with Northern Great Plains American Indian Nations.

METHODS

A cluster randomized controlled trial (cRCT) was conducted to evaluate the effectiveness of the SHWS arsenic mitigation program over a 2-y period on ) urinary arsenic, and ) reported use of arsenic-safe water for drinking and cooking. The cRCT compared the installation of a point-of-use arsenic filter and a mobile Health (mHealth) program (3 phone calls; SHWS mHealth and Filter arm) to a more intensive program, which included this same program plus three home visits (3 phone calls and 3 home visits; SHWS Intensive arm).

RESULTS

A 47% reduction in urinary arsenic [ creatinine] was observed from baseline to the final follow-up when both study arms were combined. By treatment arm, the reduction in urinary arsenic from baseline to the final follow-up visit was 55% in the mHealth and Filter arm ( creatinine) and 30% in the Intensive arm ( creatinine). There was no significant difference in urinary arsenic levels by treatment arm at the final follow-up visit comparing the Intensive vs. mHealth and Filter arms: GM ratio of 1.21 (95% confidence interval: 0.77, 1.90). In both arms combined, exclusive use of arsenic-safe water from baseline to the final follow-up visit significantly increased for water used for cooking (17% to 53%) and drinking (12% to 46%).

DISCUSSION

Delivery of the interventions for the community-led SHWS arsenic mitigation program, including the installation of a point-of-use arsenic filter and a mHealth program on the use of arsenic-safe water (calls only, no home visits), resulted in a significant reduction in urinary arsenic and increases in reported use of arsenic-safe water for drinking and cooking during the 2-y study period. These results demonstrate that the installation of an arsenic filter and phone calls from a mHealth program presents a promising approach to reduce water arsenic exposure among private well users. https://doi.org/10.1289/EHP12548.

Address: Department of International Health, Johns Hopkins Bloomberg School of Public Health, Baltimore, Maryland, USA.; Missouri Breaks Industries Research Inc., Eagle Butte, South Dakota, USA.; Indian Health Service, Rockville, Maryland, USA.; Environmental Resource Department, Oglala Sioux Tribe, Pine Ridge, South Dakota, USA.; Department of Environmental Health and Engineering, Johns Hopkins Bloomberg School of Public Health, Baltimore, Maryland, USA.; Department of Environmental Health Science, Mailman School of Public Health, Columbia University, New York, New York, USA.; Biomarker, Biochemistry, and Biorepository Core, Medstar Health, Washington, District of Columbia, USA.; Department of Medicine, School of Medicine, Georgetown University, Washington, District of Columbia, USA.; Biomarker, Biochemistry, and Biorepository Core, Medstar Health, Washington, District of Columbia, USA.
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