Journal of Alzheimer s Disease · 2015 · 29 citations · 24 references
AgingSynaptic TransmissionBiogerontologySynaptic SignalingSocial SciencesGlutamate ReleaseHealthy AgingSynaptic NeuroscienceBrain HealthDegenerative PathologyNeurologyAging-associated DiseaseMolecular NeuroscienceNeural AgingNeurodegenerationSynaptic PlasticityNeurodegenerative DiseasesFunctional Nmdar-related DeregulationLong-term PotentiationNeuroscienceMolecular NeurobiologyMedicine
This study shows a decrease in soluble amyloid-β protein precursor-α (sAβPPα) levels, but no change in sAβPPβ, in the rat hippocampus during healthy aging, associated with the weaker expression of N-methyl-D-aspartate receptor (NMDAR)-dependent long-term potentiation (LTP) in the CA1 area of hippocampal slices. Exogenous application of recombinant sAβPPα increases NMDAR activation in aged animals and could rescue the age-related LTP deficits described. In contrast, it does not affect basal synaptic transmission or glutamate release. These results indicate that improving synaptic sAβPPα availability at synapses helps in reducing the functional NMDAR-related deregulation of hippocampal networks linked to aging.
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Chanel J. Taylor, David Ireland, Irene H. Ballagh et al. · Neurobiology of Disease · 2008 · 191 citations · Full text
Synaptic Plasticity, Molecular Neuroscience, Brain Function +12
Sebastián Jiménez, M. Torres, Marisa Vizuete et al. · Journal of Biological Chemistry · 2011 · 186 citations · Full text