International audienceActivation of the N-methyl-D-aspartate subtype of glutamate receptor (NMDA-R) represents a key functional process for memory formation. A decreased synthesis of the NMDA-R co-agonist d-serine was recently proposed to contribute to alterations of hippocampus-dependent memory mechanisms with ageing. Nevertheless, other pathways could also be involved and thus considered to be targets of interest to prevent cognitive ageing. Herein, we demonstrate that the Asc-1 subtype of neutral amino acid (nAA) transporters that regulates d-serine and glycine release from neurons could be viewed as one of these targets. At CA3/CA1 hippocampal synapses, Asc-1 activation did not modify basal glutamate neurotransmission either in adult or...
The density and functional activity of the N-methyl-D-aspartate (NMDA)-sensitive glutamate receptor ...
Aging is characterized by a decrease in N-methyl-D-aspartate receptors (NMDARs) in the hippocampus, ...
The atypical amino acid d-aspartate (d-Asp) occurs at considerable amounts in the developing brain o...
International audienceOxidative stress (OS) resulting from an imbalance between antioxidant defenses...
Oxidative stress (OS) resulting from an imbalance between antioxidant defenses and the intracellular...
Age-related memory deficits have recently been associated with the impaired expression of D-serine-d...
An association between age-related memory impairments and changes in functional plasticity in the ag...
Impaired activation of the N-methyl-D-aspartate subtype of glutamate receptors (NMDAR) by D-serine i...
International audienceThis study aims to determine whether the regulation of extracellular glutamate...
International audienceThis study shows a decrease in soluble amyloid-β protein precursor-α (sAβPPα) ...
Until recently, free d-amino acids were thought to be involved only in bacterial physiology. Neverth...
Until recently, free d-amino acids were thought to be involved only in bacterial physiology. Neverth...
Until recently, free d-amino acids were thought to be involved only in bacterial physiology. Neverth...
Until recently, free d-amino acids were thought to be involved only in bacterial physiology. Neverth...
"Nowadays it is widely recognized that D-amino acids are present in bacteria as well as in eukaryote...
The density and functional activity of the N-methyl-D-aspartate (NMDA)-sensitive glutamate receptor ...
Aging is characterized by a decrease in N-methyl-D-aspartate receptors (NMDARs) in the hippocampus, ...
The atypical amino acid d-aspartate (d-Asp) occurs at considerable amounts in the developing brain o...
International audienceOxidative stress (OS) resulting from an imbalance between antioxidant defenses...
Oxidative stress (OS) resulting from an imbalance between antioxidant defenses and the intracellular...
Age-related memory deficits have recently been associated with the impaired expression of D-serine-d...
An association between age-related memory impairments and changes in functional plasticity in the ag...
Impaired activation of the N-methyl-D-aspartate subtype of glutamate receptors (NMDAR) by D-serine i...
International audienceThis study aims to determine whether the regulation of extracellular glutamate...
International audienceThis study shows a decrease in soluble amyloid-β protein precursor-α (sAβPPα) ...
Until recently, free d-amino acids were thought to be involved only in bacterial physiology. Neverth...
Until recently, free d-amino acids were thought to be involved only in bacterial physiology. Neverth...
Until recently, free d-amino acids were thought to be involved only in bacterial physiology. Neverth...
Until recently, free d-amino acids were thought to be involved only in bacterial physiology. Neverth...
"Nowadays it is widely recognized that D-amino acids are present in bacteria as well as in eukaryote...
The density and functional activity of the N-methyl-D-aspartate (NMDA)-sensitive glutamate receptor ...
Aging is characterized by a decrease in N-methyl-D-aspartate receptors (NMDARs) in the hippocampus, ...
The atypical amino acid d-aspartate (d-Asp) occurs at considerable amounts in the developing brain o...