Literature DB >> 17241128

Critical role of sodium in cytosolic [Ca2+] elevations in cultured hippocampal CA1 neurons during anoxic depolarization.

Lech Kiedrowski1.   

Abstract

Although the extent of ischemic brain damage is directly proportional to the duration of anoxic depolarization (AD), the mechanism of cytosolic [Ca(2+)] ([Ca(2+)](c)) elevation during AD is poorly understood. To address the mechanism in this study, [Ca(2+)](c) was monitored in cultured rat hippocampal CA1 neurons loaded with a Ca-sensitive dye, fura-2FF, and exposed to an AD-simulating medium containing (in mmol/L): K(+) 65, Na(+) 50, Ca(2+) 0.13, glutamate 0.1, and pH reduced to 6.6. Application of this medium promptly elevated [Ca(2+)](c) to about 30 micromol/L, but only if oxygen was removed, the respiratory chain was inhibited, or if the mitochondria were uncoupled. These high [Ca(2+)](c) elevations depended on external Ca(2+) and could not be prevented by inhibiting NMDA or alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionate (AMPA)/kainate receptors, or gadolinium-sensitive channels. However, they could be prevented by removing external Na(+) or simultaneously inhibiting NMDA and AMPA/kainate receptors; 2-[2-[4-(4-nitrobenzyloxy)phenyl]ethyl]isothiourea methanesulfonate (KB-R7943), an inhibitor of plasmalemmal Na(+)/Ca(2+) exchanger, partly suppressed them. The data indicate that the [Ca(2+)](c) elevations to 30 micromol/L during AD result from Na(+) influx. Activation of either NMDA or AMPA/kainate channels provides adequate Na(+) influx to induce these [Ca(2+)](c) elevations, which are mediated by KB-R7943-sensitive and KB-R7943-resistant mechanisms.

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Year:  2007        PMID: 17241128     DOI: 10.1111/j.1471-4159.2006.04308.x

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


  12 in total

1.  Neuroprotective effect of KB-R7943 against glutamate excitotoxicity is related to mild mitochondrial depolarization.

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2.  Hydrogen sulfide induced disruption of Na+ homeostasis in the cortex.

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3.  Proton-dependent zinc release from intracellular ligands.

Authors:  Lech Kiedrowski
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4.  TRPM4 activation by chemically- and oxygen deprivation-induced ischemia and reperfusion triggers neuronal death.

Authors:  Elías Leiva-Salcedo; Denise Riquelme; Oscar Cerda; Andrés Stutzin
Journal:  Channels (Austin)       Date:  2017-10-05       Impact factor: 2.581

5.  Calpains and delayed calcium deregulation in excitotoxicity.

Authors:  Inês M Araújo; Bruno P Carreira; Caetana M Carvalho; Arsélio P Carvalho
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6.  Activation of DOR attenuates anoxic K+ derangement via inhibition of Na+ entry in mouse cortex.

Authors:  Dongman Chao; Alia Bazzy-Asaad; Gianfranco Balboni; Severo Salvadori; Ying Xia
Journal:  Cereb Cortex       Date:  2008-01-17       Impact factor: 5.357

7.  Na+ mechanism of delta-opioid receptor induced protection from anoxic K+ leakage in the cortex.

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Review 8.  Ionic storm in hypoxic/ischemic stress: can opioid receptors subside it?

Authors:  Dongman Chao; Ying Xia
Journal:  Prog Neurobiol       Date:  2009-12-28       Impact factor: 11.685

9.  Localized loss of Ca2+ homeostasis in neuronal dendrites is a downstream consequence of metabolic compromise during extended NMDA exposures.

Authors:  Thomas A Vander Jagt; John A Connor; C William Shuttleworth
Journal:  J Neurosci       Date:  2008-05-07       Impact factor: 6.167

10.  Changes in the Distribution of the α 3 Na(+)/K(+) ATPase Subunit in Heterozygous Lurcher Purkinje Cells as a Genetic Model of Chronic Depolarization during Development.

Authors:  Rebecca McFarland; Hadi S Zanjani; Jean Mariani; Michael W Vogel
Journal:  Int J Cell Biol       Date:  2014-02-27
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