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Associations of iron metabolism genes with blood manganese levels: a population-based study with validation data from animal models

BACKGROUND: Given mounting evidence for adverse effects from excess manganese exposure, it is critical to understand host factors, such as genetics, that affect manganese metabolism. METHODS: Archived blood samples, collected from 332 Mexican women at delivery, were analyzed for manganese. We evalua...

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Autores principales: Claus Henn, Birgit, Kim, Jonghan, Wessling-Resnick, Marianne, Téllez-Rojo, Martha María, Jayawardene, Innocent, Ettinger, Adrienne S, Hernández-Avila, Mauricio, Schwartz, Joel, Christiani, David C, Hu, Howard, Wright, Robert O
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3248860/
https://www.ncbi.nlm.nih.gov/pubmed/22074419
http://dx.doi.org/10.1186/1476-069X-10-97
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author Claus Henn, Birgit
Kim, Jonghan
Wessling-Resnick, Marianne
Téllez-Rojo, Martha María
Jayawardene, Innocent
Ettinger, Adrienne S
Hernández-Avila, Mauricio
Schwartz, Joel
Christiani, David C
Hu, Howard
Wright, Robert O
author_facet Claus Henn, Birgit
Kim, Jonghan
Wessling-Resnick, Marianne
Téllez-Rojo, Martha María
Jayawardene, Innocent
Ettinger, Adrienne S
Hernández-Avila, Mauricio
Schwartz, Joel
Christiani, David C
Hu, Howard
Wright, Robert O
author_sort Claus Henn, Birgit
collection PubMed
description BACKGROUND: Given mounting evidence for adverse effects from excess manganese exposure, it is critical to understand host factors, such as genetics, that affect manganese metabolism. METHODS: Archived blood samples, collected from 332 Mexican women at delivery, were analyzed for manganese. We evaluated associations of manganese with functional variants in three candidate iron metabolism genes: HFE [hemochromatosis], TF [transferrin], and ALAD [δ-aminolevulinic acid dehydratase]. We used a knockout mouse model to parallel our significant results as a novel method of validating the observed associations between genotype and blood manganese in our epidemiologic data. RESULTS: Percentage of participants carrying at least one copy of HFE C282Y, HFE H63D, TF P570S, and ALAD K59N variant alleles was 2.4%, 17.7%, 20.1%, and 6.4%, respectively. Percentage carrying at least one copy of either C282Y or H63D allele in HFE gene was 19.6%. Geometric mean (geometric standard deviation) manganese concentrations were 17.0 (1.5) μg/l. Women with any HFE variant allele had 12% lower blood manganese concentrations than women with no variant alleles (β = -0.12 [95% CI = -0.23 to -0.01]). TF and ALAD variants were not significant predictors of blood manganese. In animal models, Hfe(-/- )mice displayed a significant reduction in blood manganese compared with Hfe(+/+ )mice, replicating the altered manganese metabolism found in our human research. CONCLUSIONS: Our study suggests that genetic variants in iron metabolism genes may contribute to variability in manganese exposure by affecting manganese absorption, distribution, or excretion. Genetic background may be critical to consider in studies that rely on environmental manganese measurements.
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spelling pubmed-32488602011-12-31 Associations of iron metabolism genes with blood manganese levels: a population-based study with validation data from animal models Claus Henn, Birgit Kim, Jonghan Wessling-Resnick, Marianne Téllez-Rojo, Martha María Jayawardene, Innocent Ettinger, Adrienne S Hernández-Avila, Mauricio Schwartz, Joel Christiani, David C Hu, Howard Wright, Robert O Environ Health Research BACKGROUND: Given mounting evidence for adverse effects from excess manganese exposure, it is critical to understand host factors, such as genetics, that affect manganese metabolism. METHODS: Archived blood samples, collected from 332 Mexican women at delivery, were analyzed for manganese. We evaluated associations of manganese with functional variants in three candidate iron metabolism genes: HFE [hemochromatosis], TF [transferrin], and ALAD [δ-aminolevulinic acid dehydratase]. We used a knockout mouse model to parallel our significant results as a novel method of validating the observed associations between genotype and blood manganese in our epidemiologic data. RESULTS: Percentage of participants carrying at least one copy of HFE C282Y, HFE H63D, TF P570S, and ALAD K59N variant alleles was 2.4%, 17.7%, 20.1%, and 6.4%, respectively. Percentage carrying at least one copy of either C282Y or H63D allele in HFE gene was 19.6%. Geometric mean (geometric standard deviation) manganese concentrations were 17.0 (1.5) μg/l. Women with any HFE variant allele had 12% lower blood manganese concentrations than women with no variant alleles (β = -0.12 [95% CI = -0.23 to -0.01]). TF and ALAD variants were not significant predictors of blood manganese. In animal models, Hfe(-/- )mice displayed a significant reduction in blood manganese compared with Hfe(+/+ )mice, replicating the altered manganese metabolism found in our human research. CONCLUSIONS: Our study suggests that genetic variants in iron metabolism genes may contribute to variability in manganese exposure by affecting manganese absorption, distribution, or excretion. Genetic background may be critical to consider in studies that rely on environmental manganese measurements. BioMed Central 2011-11-10 /pmc/articles/PMC3248860/ /pubmed/22074419 http://dx.doi.org/10.1186/1476-069X-10-97 Text en Copyright ©2011 Henn et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Claus Henn, Birgit
Kim, Jonghan
Wessling-Resnick, Marianne
Téllez-Rojo, Martha María
Jayawardene, Innocent
Ettinger, Adrienne S
Hernández-Avila, Mauricio
Schwartz, Joel
Christiani, David C
Hu, Howard
Wright, Robert O
Associations of iron metabolism genes with blood manganese levels: a population-based study with validation data from animal models
title Associations of iron metabolism genes with blood manganese levels: a population-based study with validation data from animal models
title_full Associations of iron metabolism genes with blood manganese levels: a population-based study with validation data from animal models
title_fullStr Associations of iron metabolism genes with blood manganese levels: a population-based study with validation data from animal models
title_full_unstemmed Associations of iron metabolism genes with blood manganese levels: a population-based study with validation data from animal models
title_short Associations of iron metabolism genes with blood manganese levels: a population-based study with validation data from animal models
title_sort associations of iron metabolism genes with blood manganese levels: a population-based study with validation data from animal models
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3248860/
https://www.ncbi.nlm.nih.gov/pubmed/22074419
http://dx.doi.org/10.1186/1476-069X-10-97
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