Literature DB >> 30537579

Elevated arsenic exposure and efficient arsenic metabolism in indigenous women around Lake Poopó, Bolivia.

Jessica De Loma1, Noemi Tirado2, Franz Ascui3, Michael Levi1, Marie Vahter1, Karin Broberg4, Jacques Gardon5.   

Abstract

Elevated concentrations of inorganic arsenic, one of the most potent environmental toxicants and carcinogens, have been detected in well water around Lake Poopó, Bolivia. This study aimed to assess human exposure to arsenic in villages around Lake Poopó, and also to elucidate whether the metabolism and detoxification of arsenic in this population is as efficient as previously indicated in other Andean areas. We recruited 201 women from 10 villages around Lake Poopó. Arsenic exposure was determined as the sum concentration of arsenic metabolites (inorganic arsenic; monomethylarsonic acid, MMA; and dimethylarsinic acid, DMA) in urine (U-As), measured by HPLC-HG-ICP-MS. Efficiency of arsenic metabolism was assessed by the relative fractions of the urinary metabolites. The women had a wide variation in U-As (range 12-407 μg/L, median 65 μg/L) and a markedly efficient metabolism of arsenic with low %MMA (median 7.7%, range: 2.2-18%) and high %DMA (80%, range: 54-91%) in urine. In multivariable-adjusted linear regression models, ethnicity (Aymara-Quechua vs. Uru), body weight, fish consumption and tobacco smoking were associated with urinary arsenic metabolite fractions. On average, the Uru women had 2.5 lower % (percentage unit) iAs, 2.2 lower %MMA and 4.7 higher %DMA compared with the Aymara-Quechua women. Our study identified several factors that may predict these women's arsenic methylation capacity, particularly ethnicity. Further studies should focus on mechanisms underlying these differences in arsenic metabolism efficiency, and its importance for the risk of arsenic-related health effects.
Copyright © 2018 The Authors. Published by Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Arsenic; Aymara; Bolivia; Methylation; Quechua; Uru

Mesh:

Substances:

Year:  2018        PMID: 30537579     DOI: 10.1016/j.scitotenv.2018.11.473

Source DB:  PubMed          Journal:  Sci Total Environ        ISSN: 0048-9697            Impact factor:   7.963


  9 in total

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2.  Genetic Determinants of Reduced Arsenic Metabolism Efficiency in the 10q24.32 Region Are Associated With Reduced AS3MT Expression in Multiple Human Tissue Types.

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6.  Arsenic Exposure and Cancer-Related Proteins in Urine of Indigenous Bolivian Women.

Authors:  Jessica De Loma; Anda R Gliga; Michael Levi; Franz Ascui; Jacques Gardon; Noemi Tirado; Karin Broberg
Journal:  Front Public Health       Date:  2020-12-14

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8.  Arsenic Species in Cordyceps sinensis and Its Potential Health Risks.

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Review 9.  Evolutionary genetics and acclimatization in nephrology.

Authors:  Adebowale A Adeyemo; Daniel Shriner; Amy R Bentley; Rasheed A Gbadegesin; Charles N Rotimi
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  9 in total

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