Literature DB >> 25941121

Combined administration of levetiracetam and valproic acid attenuates age-related hyperactivity of CA3 place cells, reduces place field area, and increases spatial information content in aged rat hippocampus.

Jonathan Robitsek1, Marcia H Ratner1, Tara Stewart1, Howard Eichenbaum2, David H Farb1.   

Abstract

Learning and memory deficits associated with age-related mild cognitive impairment have long been attributed to impaired processing within the hippocampus. Hyperactivity within the hippocampal CA3 region that is associated with aging is mediated in part by a loss of functional inhibitory interneurons and thought to underlie impaired performance in spatial memory tasks, including the abnormal tendency in aged animals to pattern complete spatial representations. Here, we asked whether the spatial firing patterns of simultaneously recorded CA3 and CA1 neurons in young and aged rats could be manipulated pharmacologically to selectively reduce CA3 hyperactivity and thus, according to hypothesis, the associated abnormality in spatial representations. We used chronically implanted high-density tetrodes to record the spatial firing properties of CA3 and CA1 units during animal exploration for food in familiar and novel environments. Aged CA3 place cells have higher firing rates, larger place fields, less spatial information content, and respond less to a change from a familiar to a novel environment than young CA3 cells. We also find that the combination of levetiracetam (LEV) + valproic acid (VPA), previously shown to act as a cognitive enhancer in tests of spatial memory, attenuate CA3 place cell firing rates, reduce place field area, and increase spatial information content in aged but not young adult rats. This is consistent with drug enhancing the specificity of neuronal firing with respect to spatial location. Contrary to expectation, however, LEV + VPA reduces place cell discrimination between novel and familiar environments, i.e., spatial correlations increase, independent of age even though drug enhances performance in cognitive tasks. The results demonstrate that spatial information content, or the number of bits of information encoded per action potential, may be the key correlate for enhancement of spatial memory by LEV + VPA.
© 2015 Wiley Periodicals, Inc.

Entities:  

Keywords:  aging; levetiracetam; memory; place cells; valproic acid

Mesh:

Substances:

Year:  2015        PMID: 25941121      PMCID: PMC4633399          DOI: 10.1002/hipo.22474

Source DB:  PubMed          Journal:  Hippocampus        ISSN: 1050-9631            Impact factor:   3.899


  62 in total

1.  Differential modulation of CA1 and dentate gyrus interneurons during exploration of novel environments.

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2.  A double dissociation between hippocampal subfields: differential time course of CA3 and CA1 place cells for processing changed environments.

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3.  Distinct ensemble codes in hippocampal areas CA3 and CA1.

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4.  Cognitive aging and the hippocampus: how old rats represent new environments.

Authors:  Iain A Wilson; Sami Ikonen; Irina Gureviciene; Robert W McMahan; Michela Gallagher; Howard Eichenbaum; Heikki Tanila
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5.  The effect of midazolam on conscious, controlled processing: evidence from the process-dissociation procedure.

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Review 7.  Valproate: a reappraisal of its pharmacodynamic properties and mechanisms of action.

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8.  The synaptic vesicle protein SV2A is the binding site for the antiepileptic drug levetiracetam.

Authors:  Berkley A Lynch; Nathalie Lambeng; Karl Nocka; Patricia Kensel-Hammes; Sandra M Bajjalieh; Alain Matagne; Bruno Fuks
Journal:  Proc Natl Acad Sci U S A       Date:  2004-06-21       Impact factor: 11.205

9.  Aging in the rat hippocampus is associated with widespread reductions in the number of glutamate decarboxylase-67 positive interneurons but not interneuron degeneration.

Authors:  Dirk P Stanley; Ashok K Shetty
Journal:  J Neurochem       Date:  2004-04       Impact factor: 5.372

10.  Treatment strategies targeting excess hippocampal activity benefit aged rats with cognitive impairment.

Authors:  Ming Teng Koh; Rebecca P Haberman; Stacey Foti; Thomas J McCown; Michela Gallagher
Journal:  Neuropsychopharmacology       Date:  2009-12-23       Impact factor: 7.853

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1.  Cognitive aging is associated with redistribution of synaptic weights in the hippocampus.

Authors:  Eric W Buss; Nicola J Corbett; Joshua G Roberts; Natividad Ybarra; Timothy F Musial; Dina Simkin; Elizabeth Molina-Campos; Kwang-Jin Oh; Lauren L Nielsen; Gelique D Ayala; Sheila A Mullen; Anise K Farooqi; Gary X D'Souza; Corinne L Hill; Linda A Bean; Annalise E Rogalsky; Matthew L Russo; Dani M Curlik; Marci D Antion; Craig Weiss; Dane M Chetkovich; M Matthew Oh; John F Disterhoft; Daniel A Nicholson
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2.  Heightened cortical excitability in aged rodents with memory impairment.

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3.  Functional Imbalance of Anterolateral Entorhinal Cortex and Hippocampal Dentate/CA3 Underlies Age-Related Object Pattern Separation Deficits.

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4.  Attenuated Activity across Multiple Cell Types and Reduced Monosynaptic Connectivity in the Aged Perirhinal Cortex.

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Review 5.  Cognitive deficits caused by prefrontal cortical and hippocampal neural disinhibition.

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6.  The Antiepileptic Ketogenic Diet Alters Hippocampal Transporter Levels and Reduces Adiposity in Aged Rats.

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7.  Heterogeneity of Age-Related Neural Hyperactivity along the CA3 Transverse Axis.

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8.  Loss of functional heterogeneity along the CA3 transverse axis in aging.

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9.  Unilateral Perforant Path Transection Does Not Alter Lateral Entorhinal Cortical or Hippocampal CA3 Arc Expression.

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10.  Dysregulation of Npas4 and Inhba expression and an altered excitation-inhibition balance are associated with cognitive deficits in DBA/2 mice.

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