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Published on: February 23, 2019
Children's intellectual function in relation to arsenic exposure
Ondine S von Ehrenstein1, Shalini Poddar, Yan Yuan
1School of Public Health, University of California, Berkeley, California 94720-7360, USA.
Insights
Arsenic exposure in children is linked to lower intellectual function, particularly in vocabulary and problem-solving skills. Current urinary arsenic levels, reflecting recent exposure, showed negative impacts on cognitive tests in West Bengal children.
Area of Science:
- Environmental Health
- Pediatric Health
- Neuroscience
Background:
- Limited evidence on arsenic's impact on children's intellectual development.
- Arsenic exposure in utero and early childhood is a concern.
Purpose of the Study:
- To investigate the association between arsenic exposure and intellectual function in children.
- To assess the impact of both recent and long-term arsenic exposure.
Main Methods:
- Cross-sectional study of 351 children (5-15 years) in West Bengal, India.
- Intellectual function assessed using Wechsler Intelligence Scale for Children and other cognitive tests.
- Arsenic exposure measured via urinary samples and well water analysis.
Main Results:
- Higher urinary arsenic concentrations correlated with reduced scores in vocabulary, object assembly, and picture completion tests.
- Significant declines observed in the upper tertile of urinary arsenic.
- No significant association found between water arsenic levels and cognitive test results.
Conclusions:
- Current arsenic levels in urine are associated with minor intellectual decrements in school-aged children.
- Recent arsenic exposure, from various sources, appears more strongly linked to cognitive deficits than long-term water exposure.
Background:
Very little evidence exists concerning the possible impairment of children's intellectual function in relation to arsenic exposure in utero and during childhood.
Methods:
We conducted a cross-sectional study among 351 children age 5 to 15 years who were selected from a source population of 7683 people in West Bengal, India, in 2001-2003. Intellectual function was assessed with 6 subtests from the Wechsler Intelligence Scale for Children as well as with the Total Sentence Recall test, the Colored Progressive Matrices test, and a pegboard test. Arsenic in urine and lifetime water sources (including during the pregnancy period) were assessed using measurements of samples from 409 wells. The test scores were analyzed with linear regression analyses based on the method of generalized estimating equations incorporating relevant covariates.
Results:
Stratifying urinary arsenic concentrations into tertiles, we found associations between arsenic and reductions in the adjusted scores of the vocabulary test (0, -0.14, -0.28; P for trend = 0.02), the object assembly test (0, -0.16, -0.24; P for trend = 0.03), and the picture completion test (0, -0.15, -0.26; P for trend = 0.02). These findings correspond to relative declines of 12% (95% confidence interval =0.4% to 24%) in the vocabulary test, 21% (-0.8% to 42%) in the object assembly test, and of 13% (0.3% to 24%) in the picture completion test in the upper urinary arsenic tertile. However, we did not find evidence of an association between test results and arsenic water concentrations during pregnancy or childhood.
Conclusions:
Current arsenic concentrations in urine, which reflect all sources of recent exposure, including water and food, were associated with small decrements in intellectual testing in school-aged children in West Bengal. We did not see associations between long-term water arsenic concentrations and intellectual function.
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