Literature DB >> 22332040

The role of iron in learning and memory.

Stephanie J B Fretham1, Erik S Carlson, Michael K Georgieff.   

Abstract

Iron deficiency (ID) is the most common nutrient deficiency, affecting 2 billion people and 30% of pregnant women and their offspring. Early life ID affects at least 3 major neurobehavioral domains, including speed of processing, affect, and learning and memory, the latter being particularly prominent. The learning and memory deficits occur while the infants are iron deficient and persist despite iron repletion. The neural mechanisms underlying the short- and long-term deficits are being elucidated. Early ID alters the transcriptome, metabolome, structure, intracellular signaling pathways, and electrophysiology of the developing hippocampus, the brain region responsible for recognition learning and memory. Until recently, it was unclear whether these effects are directly due to a lack of iron interacting with important transcriptional, translational, or post-translational processes or to indirect effects such as hypoxia due to anemia or stress. Nonanemic genetic mouse models generated by conditionally altering expression of iron transport proteins specifically in hippocampal neurons in late gestation have led to a greater understanding of iron's role in learning and memory. The learning deficits in adulthood likely result from interactions between direct and indirect effects that contribute to abnormal hippocampal structure and plasticity.

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Year:  2011        PMID: 22332040      PMCID: PMC3065765          DOI: 10.3945/an.110.000190

Source DB:  PubMed          Journal:  Adv Nutr        ISSN: 2161-8313            Impact factor:   8.701


  113 in total

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4.  Iron is essential for neuron development and memory function in mouse hippocampus.

Authors:  Erik S Carlson; Ivan Tkac; Rhamy Magid; Michael B O'Connor; Nancy C Andrews; Timothy Schallert; Hiromi Gunshin; Michael K Georgieff; Anna Petryk
Journal:  J Nutr       Date:  2009-02-11       Impact factor: 4.798

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  71 in total

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8.  Iron Deficiency Impairs Developing Hippocampal Neuron Gene Expression, Energy Metabolism, and Dendrite Complexity.

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9.  Cognitive outcomes of preterm infants randomized to darbepoetin, erythropoietin, or placebo.

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