Recovery of Afferent Function and Synaptic Strength in Hippocampal CA1 following Traumatic Brain Injury
- 1 December 2009
- journal article
- research article
- Published by Mary Ann Liebert Inc in Journal of Neurotrauma
- Vol. 26 (12), 2269-2278
- https://doi.org/10.1089/neu.2009.1029
Abstract
Cortical contusion injury can result in the partial loss of ipsilateral CA3 neurons within 48 h, leading to a proportional reduction in the number of afferent fibers to CA1 stratum radiatum. While the loss of afferent input to CA1 exhibits a remarkable, albeit incomplete, recovery over the next few weeks, little is known about the functional status of presynaptic afferents during the depletion and recovery phases following injury. Here, we prepared hippocampal slices from adult Sprague Dawley rats at 2, 7, and 14 days after lateral cortical contusion injury and measured fiber volley (FV) amplitudes extracellularly in CA1 stratum radiatum. Field excitatory post-synaptic potentials (EPSPs) were also measured and plotted as a function of FV amplitude to assess relative synaptic strength of residual and/or regenerated synaptic contacts. At 2 days post-injury, FV amplitude and synaptic strength were markedly reduced in the ipsilateral, relative to the contralateral, hippocampus. FV amplitude in ipsilateral CA1 showed a complete recovery by 7 days, indicative of a post-injury sprouting response. Synaptic strength in ipsilateral CA1 also showed a dramatic recovery over this time; however, EPSP-to-FV curves remained slightly suppressed at both the 7 and 14 day time points. Despite these deficits, ipsilateral slices retained the capacity to express long-term potentiation, indicating that at least some mechanisms for synaptic plasticity remain intact, or are compensated for. These results are in agreement with anatomical evidence showing a profound deafferentation, followed by a remarkable re-enervation, of ipsilateral CA1 in the first few weeks after traumatic brain injury. Although plasticity mechanisms appear to remain intact, synaptic strength deficits in CA1 could limit information throughput in the hippocampus, leading to persistent memory dysfunction.Keywords
This publication has 34 references indexed in Scilit:
- Requirement for Hippocampal CA3 NMDA Receptors in Associative Memory RecallScience, 2002
- Entorhinal axons exhibit sprouting in CA1 subfield of the adult hippocampus in a rat model of temporal lobe epilepsyHippocampus, 2002
- Cytochrome c release and caspase activation after traumatic brain injuryBrain Research, 2002
- Cyclosporin Ameliorates Traumatic Brain-Injury-Induced Alterations of Hippocampal Synaptic PlasticityExperimental Neurology, 2000
- Aging Changes in Voltage-Gated Calcium Currents in Hippocampal CA1 NeuronsJournal of Neuroscience, 1996
- Increased Susceptibility to Induction of Long-Term Depression and Long-Term Potentiation Reversal during AgingJournal of Neuroscience, 1996
- Increase in Single L-Type Calcium Channels in Hippocampal Neurons During AgingScience, 1996
- Long-term potentiation deficits and excitability changes following traumatic brain injuryExperimental Brain Research, 1995
- Enduring suppression of hippocampal long-term potentiation following traumatic brain injury in ratBrain Research, 1992
- Increase in perforant path quantal size in aged F-344 ratsNeurobiology of Aging, 1991