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Arsenic Relative Bioavailability in Rice Using a Mouse Arsenic Urinary Excretion Bioassay and Its Application to Assess Human Health Risk.

Authors :
Hong-Bo Li
Jie Li
Di Zhao
Chao Li
Xue-Jiao Wang
Hong-Jie Sun
Juhasz, Albert L.
Ma, Lena Q.
Source :
Environmental Science & Technology. 4/18/2017, Vol. 51 Issue 8, p4689-4696. 8p.
Publication Year :
2017

Abstract

A steady-state mouse model was developed to determine arsenic (As) relative bioavailability (RBA) in rice to refine As exposure in humans. Fifty-five rice samples from 15 provinces of China were analyzed for total As, with 11 cooked for As speciation and bioavailability assessment. Arsenic concentrations were 38--335 µg kg-1, averaging 133 µg kg-1, with AsIII being dominant (36--79%), followed by DMAV (18--58%) and AsV (0.5--16%). Following oral doses of individual As species to mice at low As exposure (2.5--15 µg As per mouse) over a 7-d period, strong linear correlations (R² = 0.99) were observed between As urinary excretion and cumulative As intake, suggesting the suitability and sensitivity of the mouse bioassay to measure As-RBA in rice. Urinary excretion factor for DMAV (0.46) was less than inorganic As (0.63--0.69). As-RBA in cooked rice ranged from 13.2 ± 2.2% to 53.6 ± 11.1% (averaging 27.0 ± 12.2%) for DMAV and 26.2 ± 7.0% to 49.5 ± 4.7% (averaging 39.9 ± 8.3%) for inorganic As. Calculation of inorganic As intake based on total inorganic As in rice overestimated As exposure by 2.0--3.7 fold compared to that based on bioavailable inorganic As. For accurate assessment of the health risk associated with rice consumption, it is important to consider As bioavailability especially inorganic As in rice. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
0013936X
Volume :
51
Issue :
8
Database :
Academic Search Index
Journal :
Environmental Science & Technology
Publication Type :
Academic Journal
Accession number :
122581342
Full Text :
https://doi.org/10.1021/acs.est.7b00495