Literature DB >> 9798933

Extracellular glutamate levels are chronically elevated in the brains of LP-BM5-infected mice: a mechanism of retrovirus-induced encephalopathy.

M G Espey1, Y Kustova, Y Sei, A S Basile.   

Abstract

Mice infected with the LP-BM5 leukemia retrovirus mixture develop a progressive immunodeficiency with associated behavioral, histological, and neurochemical alterations consistent with glutamatergic hyperactivation. To gain insight into the contribution of excitatory amino acids to the neurodegeneration observed in these mice, their concentrations were measured in the CSF and striatal microdialysates. Glutamate concentrations were significantly elevated in CSF but not plasma as early as 4 weeks postinoculation. Steady-state glutamate levels in striatal microdialysates were increased threefold and could be reduced 40% by application of L-alpha-aminoadipate, an inhibitor of microglial glutamate transport. Stimulation of infected mice with KCl/L-trans-2,4-pyrrolidine dicarboxylate further increased glutamate levels 170-270% above those evoked in control mice. Tetrodotoxin suppressed the depolarization-evoked increase in glutamate by 88% in control mice, but it had only negligible effects in 40% of infected mice. Analysis of glutamate transport and catabolism suggests that abnormal astrocytic function does not contribute to the increase in basal extracellular glutamate levels. These findings are the first direct evidence that infection with an immunodeficiency-inducing retrovirus leads to a chronic elevation of extracellular free glutamate levels in the brain, which contributes to the neurodegenerative and cognitive deficits observed in these mice.

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Year:  1998        PMID: 9798933     DOI: 10.1046/j.1471-4159.1998.71052079.x

Source DB:  PubMed          Journal:  J Neurochem        ISSN: 0022-3042            Impact factor:   5.372


  22 in total

1.  LP-BM5 virus-infected mice produce activating autoantibodies to the AMPA receptor.

Authors:  E Koustova; Y Sei; L Fossom; M L Wei; P N Usherwood; N B Keele; M A Rogawski; A S Basile
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Review 3.  Glutamate metabolism and HIV-associated neurocognitive disorders.

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4.  Glutamate release from activated microglia requires the oxidative burst and lipid peroxidation.

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5.  Mutant Huntingtin Impairs BDNF Release from Astrocytes by Disrupting Conversion of Rab3a-GTP into Rab3a-GDP.

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Review 8.  Excitotoxicity in the pathogenesis of autism.

Authors:  M M Essa; N Braidy; K R Vijayan; S Subash; G J Guillemin
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9.  Isoxazole analogues bind the system xc- transporter: structure-activity relationship and pharmacophore model.

Authors:  Sarjubhai A Patel; Trideep Rajale; Erin O'Brien; David J Burkhart; Jared K Nelson; Brendan Twamley; Alex Blumenfeld; Monika I Szabon-Watola; John M Gerdes; Richard J Bridges; Nicholas R Natale
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10.  Decreased dopamine D4 receptor expression increases extracellular glutamate and alters its regulation in mouse striatum.

Authors:  Theresa Currier Thomas; David K Grandy; Greg A Gerhardt; Paul E A Glaser
Journal:  Neuropsychopharmacology       Date:  2008-06-04       Impact factor: 7.853

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