Literature DB >> 23321855

Measured versus modeled dietary arsenic and relation to urinary arsenic excretion and total exposure.

Margaret Kurzius-Spencer1, Mary K O'Rourke, Chiu-Hsieh Hsu, Vern Hartz, Robin B Harris, Jefferey L Burgess.   

Abstract

Chronic exposure to arsenic (As) in food and water is a significant public health problem. Person-specific aggregate exposure is difficult to collect and modeling based on limited food As residue databases is of uncertain reliability. Two cross-sectional population exposure studies, the National Human Exposure Assessment Survey-Arizona and Arizona Border Survey, had a combined total of 252 subjects with diet, water, and urinary As data. Total As was measured in 24-h duplicate diet samples and modeled using 24-h diet diaries in conjunction with several published food surveys of As. Two-stage regression was used to assess the effects of dietary As on urinary total As (uAs): (1) generalized linear mixed models of uAs above versus below the limit of detection (LOD); and (2) restricted models limited to those subjects with uAs>LOD, using bootstrap sampling and mixed models adjusted for age, sex, body mass index, ethnicity, current smoking, and As intake from drinking and cooking water. In restricted models, measured and modeled estimates were significant predictors of uAs. Modeled dietary As based on Total Diet Study mean residues greatly underestimated the dietary intake. In households with tap water As ≤10 p.p.b., over 93% of total arsenic exposure was attributable to diet.

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Year:  2013        PMID: 23321855      PMCID: PMC4039495          DOI: 10.1038/jes.2012.120

Source DB:  PubMed          Journal:  J Expo Sci Environ Epidemiol        ISSN: 1559-0631            Impact factor:   5.563


  40 in total

1.  Spatial distributions of arsenic exposure and mining communities from NHEXAS Arizona. National Human Exposure Assessment Survey.

Authors:  M K O'Rourke; S P Rogan; S Jin; G L Robertson
Journal:  J Expo Anal Environ Epidemiol       Date:  1999 Sep-Oct

2.  Evaluations of primary metals from NHEXAS Arizona: distributions and preliminary exposures. National Human Exposure Assessment Survey.

Authors:  M K O'Rourke; P K Van de Water; S Jin; S P Rogan; A D Weiss; S M Gordon; D M Moschandreas; M D Lebowitz
Journal:  J Expo Anal Environ Epidemiol       Date:  1999 Sep-Oct

3.  Probabilistic Modeling of Dietary Arsenic Exposure and Dose and Evaluation with 2003-2004 NHANES Data.

Authors:  Jianping Xue; Valerie Zartarian; Sheng-Wei Wang; Shi V Liu; Panos Georgopoulos
Journal:  Environ Health Perspect       Date:  2010-03       Impact factor: 9.031

4.  Speciation of arsenic in biological samples.

Authors:  Badal Kumar Mandal; Yasumitsu Ogra; Kazunori Anzai; Kazuo T Suzuki
Journal:  Toxicol Appl Pharmacol       Date:  2004-08-01       Impact factor: 4.219

5.  Bladder cancer mortality associated with arsenic in drinking water in Argentina.

Authors:  C Hopenhayn-Rich; M L Biggs; A Fuchs; R Bergoglio; E E Tello; H Nicolli; A H Smith
Journal:  Epidemiology       Date:  1996-03       Impact factor: 4.822

6.  A new predictive equation for resting energy expenditure in healthy individuals.

Authors:  M D Mifflin; S T St Jeor; L A Hill; B J Scott; S A Daugherty; Y O Koh
Journal:  Am J Clin Nutr       Date:  1990-02       Impact factor: 7.045

Review 7.  Procedures for screening out inaccurate reports of dietary energy intake.

Authors:  Megan A McCrory; Megan A McCrory; Cheryl L Hajduk; Susan B Roberts
Journal:  Public Health Nutr       Date:  2002-12       Impact factor: 4.022

8.  Reduction in urinary arsenic with bottled-water intervention.

Authors:  Arun B Josyula; Hannah McClellen; Tracy A Hysong; Margaret Kurzius-Spencer; Gerald S Poplin; Stefan Stürup; Jefferey L Burgess
Journal:  J Health Popul Nutr       Date:  2006-09       Impact factor: 2.000

9.  Arsenic exposure within the Korean community (United States) based on dietary behavior and arsenic levels in hair, urine, air, and water.

Authors:  Bill Cleland; Ami Tsuchiya; David A Kalman; Russell Dills; Thomas M Burbacher; Jim W White; Elaine M Faustman; Koenraad Mariën
Journal:  Environ Health Perspect       Date:  2008-12-08       Impact factor: 9.031

10.  Mean total arsenic concentrations in chicken 1989-2000 and estimated exposures for consumers of chicken.

Authors:  Tamar Lasky; Wenyu Sun; Abdel Kadry; Michael K Hoffman
Journal:  Environ Health Perspect       Date:  2004-01       Impact factor: 9.031

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  14 in total

1.  Arsenic exposure and cancer mortality in a US-based prospective cohort: the strong heart study.

Authors:  Esther García-Esquinas; Marina Pollán; Jason G Umans; Kevin A Francesconi; Walter Goessler; Eliseo Guallar; Barbara Howard; John Farley; Lyle G Best; Ana Navas-Acien
Journal:  Cancer Epidemiol Biomarkers Prev       Date:  2013-10-17       Impact factor: 4.254

2.  Mitigating dietary arsenic exposure: Current status in the United States and recommendations for an improved path forward.

Authors:  Keeve E Nachman; Gary L Ginsberg; Mark D Miller; Carolyn J Murray; Anne E Nigra; Claire B Pendergrast
Journal:  Sci Total Environ       Date:  2017-01-05       Impact factor: 7.963

3.  Inorganic arsenic exposure and neuropsychological development of children of 4-5 years of age living in Spain.

Authors:  Antonio J Signes-Pastor; Jesús Vioque; Eva M Navarrete-Muñoz; Manus Carey; Miguel García-Villarino; Ana Fernández-Somoano; Adonina Tardón; Loreto Santa-Marina; Amaia Irizar; Maribel Casas; Mònica Guxens; Sabrina Llop; Raquel Soler-Blasco; Manoli García-de-la-Hera; Margaret R Karagas; Andrew A Meharg
Journal:  Environ Res       Date:  2019-04-29       Impact factor: 6.498

4.  Human exposure to dietary inorganic arsenic and other arsenic species: State of knowledge, gaps and uncertainties.

Authors:  Francesco Cubadda; Brian P Jackson; Kathryn L Cottingham; Yoshira Ornelas Van Horne; Margaret Kurzius-Spencer
Journal:  Sci Total Environ       Date:  2016-11-30       Impact factor: 7.963

5.  Relation of dietary inorganic arsenic to serum matrix metalloproteinase-9 (MMP-9) at different threshold concentrations of tap water arsenic.

Authors:  Margaret Kurzius-Spencer; Robin B Harris; Vern Hartz; Jason Roberge; Chiu-Hsieh Hsu; Mary Kay O'Rourke; Jefferey L Burgess
Journal:  J Expo Sci Environ Epidemiol       Date:  2015-01-21       Impact factor: 5.563

Review 6.  A Clinical Perspective on Arsenic Exposure and Development of Atherosclerotic Cardiovascular Disease.

Authors:  Gurleen Kaur; Karan P Desai; Isabella Y Chang; Jonathan D Newman; Roy O Mathew; Sripal Bangalore; Ferdinand J Venditti; Mandeep S Sidhu
Journal:  Cardiovasc Drugs Ther       Date:  2022-01-14       Impact factor: 3.727

7.  Contribution of diet to aggregate arsenic exposures-an analysis across populations.

Authors:  Margaret Kurzius-Spencer; Jefferey L Burgess; Robin B Harris; Vern Hartz; Jason Roberge; Shuang Huang; Chiu-Hsieh Hsu; M K O'Rourke
Journal:  J Expo Sci Environ Epidemiol       Date:  2013-07-17       Impact factor: 5.563

8.  Association between exposure to low to moderate arsenic levels and incident cardiovascular disease. A prospective cohort study.

Authors:  Katherine A Moon; Eliseo Guallar; Jason G Umans; Richard B Devereux; Lyle G Best; Kevin A Francesconi; Walter Goessler; Jonathan Pollak; Ellen K Silbergeld; Barbara V Howard; Ana Navas-Acien
Journal:  Ann Intern Med       Date:  2013-11-19       Impact factor: 25.391

9.  Assessing arsenic exposure in households using bottled water or point-of-use treatment systems to mitigate well water contamination.

Authors:  Andrew E Smith; Rebecca A Lincoln; Chris Paulu; Thomas L Simones; Kathleen L Caldwell; Robert L Jones; Lorraine C Backer
Journal:  Sci Total Environ       Date:  2015-12-10       Impact factor: 7.963

10.  Arsenic, blood pressure, and hypertension in the Strong Heart Family Study.

Authors:  John A Kaufman; Claire Mattison; Amanda M Fretts; Jason G Umans; Shelley A Cole; V Saroja Voruganti; Walter Goessler; Lyle G Best; Ying Zhang; Maria Tellez-Plaza; Ana Navas-Acien; Matthew O Gribble
Journal:  Environ Res       Date:  2021-02-11       Impact factor: 6.498

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