Enhanced Astrocytic Ca2+Signals Contribute to Neuronal Excitotoxicity after Status Epilepticus
Top Cited Papers
Open Access
- 3 October 2007
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 27 (40) , 10674-10684
- https://doi.org/10.1523/jneurosci.2001-07.2007
Abstract
Status epilepticus (SE), an unremitting seizure, is known to cause a variety of traumatic responses including delayed neuronal death and later cognitive decline. Although excitotoxicity has been implicated in this delayed process, the cellular mechanisms are unclear. Because our previous brain slice studies have shown that chemically induced epileptiform activity can lead to elevated astrocytic Ca2+ signaling and because these signals are able to induce the release of the excitotoxic transmitter glutamate from these glia, we asked whether astrocytes are activated during status epilepticus and whether they contribute to delayed neuronal death in vivo. Using two-photon microscopy in vivo, we show that status epilepticus enhances astrocytic Ca2+ signals for 3 d and that the period of elevated glial Ca2+ signaling is correlated with the period of delayed neuronal death. To ask whether astrocytes contribute to delayed neuronal death, we first administered antagonists which inhibit gliotransmission: MPEP [2-methyl-6-(phenylethynyl)pyridine], a metabotropic glutamate receptor 5 antagonist that blocks astrocytic Ca2+ signals in vivo, and ifenprodil, an NMDA receptor antagonist that reduces the actions of glial-derived glutamate. Administration of these antagonists after SE provided significant neuronal protection raising the potential for a glial contribution to neuronal death. To test this glial hypothesis directly, we loaded Ca2+ chelators selectively into astrocytes after status epilepticus. We demonstrate that the selective attenuation of glial Ca2+ signals leads to neuronal protection. These observations support neurotoxic roles for astrocytic gliotransmission in pathological conditions and identify this process as a novel therapeutic target.Keywords
This publication has 53 references indexed in Scilit:
- mGluR5 stimulates gliotransmission in the nucleus accumbensProceedings of the National Academy of Sciences, 2007
- Imaging cellular network dynamics in three dimensions using fast 3D laser scanningNature Methods, 2006
- Target cell-specific modulation of neuronal activity by astrocytesProceedings of the National Academy of Sciences, 2006
- Astrocyte-mediated control of cerebral blood flowNature Neuroscience, 2005
- Coupling between NMDA Receptor and Acid-Sensing Ion Channel Contributes to Ischemic Neuronal DeathNeuron, 2005
- The Dark Side of GliaScience, 2005
- Sulforhodamine 101 as a specific marker of astroglia in the neocortex in vivoNature Methods, 2004
- NR2B-Containing Receptors Mediate Cross Talk among Hippocampal SynapsesJournal of Neuroscience, 2004
- Calcium Dynamics of Cortical Astrocytic Networks In VivoPLoS Biology, 2004
- Dynamic Signaling Between Astrocytes and NeuronsAnnual Review of Physiology, 2001