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The Association of Manganese Overexposure and Neurobehavioral Function is Moderated by Arsenic: A Metal Mixture Analysis of Children Living Near Coal Ash Storage Sites

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Journal Neurotoxicology
Date 2024 Jun 13
PMID 38871300
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Abstract

Manganese is an essential element but can be neurotoxic if overexposed. Our previous study found that a higher level of manganese in nail biomarkers from children living near coal ash storage sites was associated with poorer neurobehavioral function. Children living near this type of pollution may be exposed to other metal neurotoxicants and a better understanding of manganese in the context of multiple exposures is needed. Mixture analyses were completed using nail samples from 251 children aged 6-14 years old. These biomarkers containing metals known to impact brain functioning were investigated to test our hypothesis that a mixture of metals including manganese impacts the development of children living near coal ash sites. Nails collected from children were analyzed using ICP-MS for manganese, arsenic, cadmium, lead, and zinc based on previous research on neurotoxicity. Bayesian kernel machine regression (BKMR) was used while adjusting for age, sex, and maternal education as potential covariates. Children also completed the Behavioral Assessment Research System (BARS) to provide neurobehavioral measures of attention and processing speed as outcomes for mixture analyses. Metal mixture analyses indicated that the relationship of manganese concentration and attention and processing speed was moderated by arsenic.,. When nail biomarkers for arsenic were highest (90th percentile), manganese was associated with poorer neurobehavioral performance on the BARS, measured by CPT hit latency. At low levels of arsenic (10th percentile), there was no evidence of harmful effects from overexposure to manganese on CPT hit latency based on BKMR analysis. Previously reported effects of manganese on neurobehavioral function may be moderated by arsenic exposure. Metal exposures and behavior outcomes can be studied with mixture analyses such as BKMR to evaluate effects of simultaneous exposures on children exposed to pollution.

References
1.
Soares A, Silva A, Tinkov A, Khan H, Santamaria A, Skalnaya M . The impact of manganese on neurotransmitter systems. J Trace Elem Med Biol. 2020; 61:126554. PMC: 7677177. DOI: 10.1016/j.jtemb.2020.126554. View

2.
Bobb J, Valeri L, Claus Henn B, Christiani D, Wright R, Mazumdar M . Bayesian kernel machine regression for estimating the health effects of multi-pollutant mixtures. Biostatistics. 2014; 16(3):493-508. PMC: 5963470. DOI: 10.1093/biostatistics/kxu058. View

3.
Oulhote Y, Mergler D, Barbeau B, Bellinger D, Bouffard T, Brodeur M . Neurobehavioral function in school-age children exposed to manganese in drinking water. Environ Health Perspect. 2014; 122(12):1343-50. PMC: 4256698. DOI: 10.1289/ehp.1307918. View

4.
HOPPS H . The biologic bases for using hair and nail for analyses of trace elements. Sci Total Environ. 1977; 7(1):71-89. DOI: 10.1016/0048-9697(77)90018-3. View

5.
Merced-Nieves F, Arora M, Wright R, Curtin P . Metal mixtures and neurodevelopment: recent findings and emerging principles. Curr Opin Toxicol. 2021; 26:28-32. PMC: 8130851. DOI: 10.1016/j.cotox.2021.03.005. View