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Perinatal iron and copper deficiencies alter neonatal rat circulating and brain thyroid hormone concentrations.
Bastian, Thomas W; Prohaska, Joseph R; Georgieff, Michael K; Anderson, Grant W.
Affiliation
  • Bastian TW; Department of Pharmacy Practice and Pharmaceutical Sciences, College of Pharmacy, University of Minnesota Duluth, Duluth, Minnesota 55812, USA.
Endocrinology ; 151(8): 4055-65, 2010 Aug.
Article in En | MEDLINE | ID: mdl-20573724
ABSTRACT
Copper (Cu), iron (Fe), and iodine/thyroid hormone (TH) deficiencies lead to similar defects in late brain development, suggesting that these micronutrient deficiencies share a common mechanism contributing to the observed derangements. Previous studies in rodents (postweanling and adult) and humans (adolescent and adult) indicate that Cu and Fe deficiencies affect the hypothalamic-pituitary-thyroid axis, leading to altered TH status. Importantly, however, relationships between Fe and Cu deficiencies and thyroidal status have not been assessed in the most vulnerable population, the developing fetus/neonate. We hypothesized that Cu and Fe deficiencies reduce circulating and brain TH levels during development, contributing to the defects in brain development associated with these deficiencies. To test this hypothesis, pregnant rat dams were rendered Cu deficient (CuD), FeD, or TH deficient from early gestation through weaning. Serum thyroxine (T(4)) and triiodothyronine (T(3)), and brain T(3) levels, were subsequently measured in postnatal d 12 (P12) pups. Cu deficiency reduced serum total T(3) by 48%, serum total T(4) by 21%, and whole-brain T(3) by 10% at P12. Fe deficiency reduced serum total T(3) by 43%, serum total T(4) by 67%, and whole-brain T(3) by 25% at P12. Brain mRNA analysis revealed that expression of several TH-responsive genes were altered in CuD or FeD neonates, suggesting that reduced TH concentrations were sensed by the FeD and CuD neonatal brain. These results indicate that at least some of the brain defects associated with neonatal Fe and Cu deficiencies are mediated through reductions in circulating and brain TH levels.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Thyroid Hormones / Brain / Copper / Iron Deficiencies Limits: Animals / Pregnancy Language: En Journal: Endocrinology Year: 2010 Document type: Article Affiliation country: United States

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Thyroid Hormones / Brain / Copper / Iron Deficiencies Limits: Animals / Pregnancy Language: En Journal: Endocrinology Year: 2010 Document type: Article Affiliation country: United States