Back to Search
Start Over
Recovery of network-driven glutamatergic activity in rat hippocampal neurons during chronic glutamate receptor blockade
- Source :
- Brain research. 1251
- Publication Year :
- 2008
-
Abstract
- Previous studies indicated that a long-term decrease in the activity of ionotropic glutamate receptors induces cholinergic activity in rat and mouse hypothalamic neuronal cultures. Here we studied whether a prolonged inactivation of ionotropic glutamate receptors also induces cholinergic activity in hippocampal neurons. Receptor activity was chronically suppressed in rat hippocampal primary neuronal cultures with two proportionally increasing sets of concentrations of NMDA plus non-NMDA receptor antagonists: 100 microM/10 microM AP5/CNQX (1X cultures) and 200 microM/20 microM AP5/CNQX (2X cultures). Using calcium imaging we demonstrate that cholinergic activity does not develop in these cultures. Instead, network-driven glutamate-dependent activity, that normally is detected in hyper-excitable conditions, reappears in each culture group in the presence of these antagonists and can be reversibly suppressed by higher concentrations of AP5/CNQX. This activity is mediated by non-NMDA receptors and is modulated by NMDA receptors. Further, non-NMDA receptors, the general level of glutamate receptor activity and CaMK-dependent signaling are critical for development of this network-driven glutamatergic activity in the presence of receptor antagonists. Using electrophysiology, western blotting and calcium imaging we show that some neuronal parameters are either reduced or not affected by chronic glutamate receptor blockade. However, other parameters (including neuronal excitability, mEPSC frequency, and expression of GluR1, NR1 and betaCaMKII) become up-regulated and, in some cases, proportionally between the non-treated, 1X and 2X cultures. Our data suggest recovery of the network-driven glutamatergic activity after chronic glutamate receptor blockade. This recovery may represent a form of neuronal plasticity that compensates for the prolonged suppression of the activity of glutamate receptors.
- Subjects :
- Glutamic Acid
Biology
Hippocampus
Receptors, N-Methyl-D-Aspartate
Synaptic Transmission
Article
Rats, Sprague-Dawley
chemistry.chemical_compound
Excitatory Amino Acid Agonists
Animals
Receptors, AMPA
Long-term depression
Molecular Biology
Cells, Cultured
Neurons
Neuronal Plasticity
Dose-Response Relationship, Drug
Metabotropic glutamate receptor 5
General Neuroscience
Excitatory Postsynaptic Potentials
Cell biology
Rats
Up-Regulation
chemistry
nervous system
Receptors, Glutamate
Metabotropic glutamate receptor
Glutamate receptor activity
Silent synapse
CNQX
Metabotropic glutamate receptor 1
NMDA receptor
Neurology (clinical)
Nerve Net
Calcium-Calmodulin-Dependent Protein Kinase Type 2
Neuroscience
Excitatory Amino Acid Antagonists
Developmental Biology
Subjects
Details
- ISSN :
- 18726240
- Volume :
- 1251
- Database :
- OpenAIRE
- Journal :
- Brain research
- Accession number :
- edsair.doi.dedup.....463d3a040081aee2c9de3c36ecfff24b