The FASEB Journal · 2007 · 93 citations · 46 references
Traumatic Brain InjurySynaptic TransmissionExperimental PharmacologySocial SciencesBrain InjuryNeurologyNeurorehabilitationNeurochemistryMouse ModelMolecular NeuroscienceNeuropharmacologyNeuroprotectionLong‐term PotentiationPharmacologySynaptic PlasticityNeurophysiologyFunctional RecoveryNmda Improved RecoveryNeuroscienceMedicineClosed Head Injury
Traumatic brain injury triggers a massive glutamate efflux, activation of NMDA receptor channels, and cell death. Recently, we reported that NMDA receptors in mice are down-regulated from hours to days following closed head injury (CHI), and treatment with NMDA improved recovery of motor and cognitive functions up to 14 d post-injury. Here we show that a single injection of a low dose of D-cycloserine (DCS), a partial NMDA receptor agonist, in CHI mice 24 h post-injury, resulted in a faster and greater recovery of motor and memory functions as assessed by neurological severity score and object recognition tests, respectively. Moreover, DCS treatment of CHI mice led to a significant improvement of hippocampal long-term potentiation (LTP) in the CA1 region that was completely blunted in CHI control mice. However, DCS did not improve CHI-induced impairment in synaptic glutamate release measured by paired pulse facilitation (PPF) ratio in hippocampal CA1 region. Finally, CHI-induced reduction of brain-derived neurotrophic factor (BDNF) was fully restored following DCS treatment. Since DCS is in clinical use for other indications, the present study offers a novel approach to treat human brain injury.
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Hippocampal long-term potentiation is impaired in mice lacking brain-derived neurotrophic factor.
Martin Körte, Patrick Carroll, Eckhard Wolf et al. · Proceedings of the National Academy of Sciences · 1995 · 1.4K citations
Brain-derived Neurotrophic Factor, Synaptic Plasticity, Molecular Neuroscience +15
Francisco Zafra, Eero Ċastrén, H. Thoenen et al. · Proceedings of the National Academy of Sciences · 1991 · 581 citations · Full text