Perinatal Iron Deficiency Decreases Cytochrome c Oxidase (CytOx) Activity in Selected Regions of Neonatal Rat Brain
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- 1 August 2000
- journal article
- Published by Springer Nature in Pediatric Research
- Vol. 48 (2) , 169-176
- https://doi.org/10.1203/00006450-200008000-00009
Abstract
Intrauterine growth retardation and diabetes mellitus during human gestation result in significant losses of fetal and neonatal brain iron. Brain iron deficiency is associated with impaired cognitive processes including memory and attention. The regional distribution of iron staining and cytochrome c oxidase (CytOx) activity have not been mapped in the iron-sufficient or -deficient neonatal rat. CytOx is the iron-containing terminal enzyme in oxidative phosphorylation; its activity reflects neuronal metabolism. We hypothesized that neonatal brain iron deficiency differentially decreases iron and CytOx activity in brain regions, with more pronounced losses in structures involved in recognition memory. Pregnant Sprague Dawley rats were fed either an iron-deficient or -fortified diet from gestational d 1 until postnatal d 10. Iron staining and CytOx activity of 20 brain structures were mapped histochemically in 25 rats from each group. Brain iron staining was reduced from 75% to 100% and CytOx staining was decreased from 0% to 42% in the iron-deficient group (p < 0.001). Areas with significantly reduced CytOx activity (p < 0.001) included all measured subareas of the hippocampus (CA1: 42%, CA3ab: 34%, CA3c: 33%, and dentate gyrus: 32%), the piriform cortex (17%), the medial dorsal thalamic nucleus (28%), and the cingulate cortex (41%). In contrast, the anterior thalamic nucleus, the lateral amygdaloid nucleus, and the medial habenula, areas not involved in higher cognitive functions, did not have significantly reduced CytOx activity (0%, 10%, and 16%, respectively). We conclude that perinatal iron deficiency differentially reduces neuronal metabolic activity, specifically targeting areas of the brain involved in memory processing.Keywords
This publication has 40 references indexed in Scilit:
- Auditory Brain Maturation and Recognition Memory in Newborn Infants of Diabetic Mothers 1237Pediatric Research, 1998
- Electrophysiological Assessment of Recognition Memory in 6-Month-Old Infants of Diabetic Mothers and Growth Retarded Infants ♦ 1304Pediatric Research, 1998
- Iron-deficiency anemia and infant development: Effects of extended oral iron therapyThe Journal of Pediatrics, 1996
- Liver and Brain Iron Deficiency in Newborn Infants with Bilateral Renal Agenesis (Potter's Syndrome)Fetal and Pediatric Pathology, 1996
- Iron deficiency of liver, heart, and brain in newborn infants of diabetic mothersThe Journal of Pediatrics, 1992
- Long-Term Developmental Outcome of Infants with Iron DeficiencyNew England Journal of Medicine, 1991
- Vulnerable Periods in Developing BrainPublished by Springer Nature ,1990
- Biochemical Basis for the Manifestations of Iron DeficiencyAnnual Review of Nutrition, 1986
- Four- to seven-year evaluation in two groups of small-for-gestational age infantsAmerican Journal of Obstetrics and Gynecology, 1982
- The effects of iron deficiency on brain biogenic monoamine biochemistry and function in ratsNeuropharmacology, 1980