AbstractBrain functions are based on the dynamic interaction of excitatory and inhibitory inputs. Spillover of glutamate from excitatory synapses may diffuse to and modulate nearby inhibitory synapses. By recording unitary inhibitory postsynaptic currents (uIPSCs) from cell pairs in CA1 of the hippocampus, we demonstrated that low concentrations of Kainate receptor (KAR) agonists increased the success rate (Ps) of uIPSCs, whereas high concentrations of KAR agonists depressed GABAergic synapses. Ambient glutamate released by basal activities or stimulation of the stratum radiatum increases the efficacy of GABAergic synapses by activating presynaptic KARs, which facilitate Ca2+-dependent GABA release. The results suggest that glutamate releas...
Kainate (KA) receptor activation depresses stimulus-evoked gamma-aminobutyric acid (GABA-mediated) s...
AbstractKainate receptor agonists depress transmitter release at several synapses in the hippocampus...
Progress in understanding the roles of kainate receptors (KARs) in synaptic integration, synaptic ne...
AbstractBrain functions are based on the dynamic interaction of excitatory and inhibitory inputs. Sp...
AbstractWe report that kainate receptors are present on presynaptic GABAergic terminals contacting i...
International audienceWe report that kainate receptors are present on presynaptic GABAergic terminal...
International audienceWe report that kainate receptors are present on presynaptic GABAergic terminal...
International audienceWe report that kainate receptors are present on presynaptic GABAergic terminal...
International audienceWe studied the modulation of GABAergic inhibition by glutamate and kainate act...
International audienceWe studied the modulation of GABAergic inhibition by glutamate and kainate act...
International audienceWe studied the modulation of GABAergic inhibition by glutamate and kainate act...
International audienceWe studied the modulation of GABAergic inhibition by glutamate and kainate act...
AbstractThe potent excitatory amino acid glutamate mediates its excitatory effects through a great v...
AbstractKainate receptor agonists depress transmitter release at several synapses in the hippocampus...
AbstractWe report that kainate receptors are present on presynaptic GABAergic terminals contacting i...
Kainate (KA) receptor activation depresses stimulus-evoked gamma-aminobutyric acid (GABA-mediated) s...
AbstractKainate receptor agonists depress transmitter release at several synapses in the hippocampus...
Progress in understanding the roles of kainate receptors (KARs) in synaptic integration, synaptic ne...
AbstractBrain functions are based on the dynamic interaction of excitatory and inhibitory inputs. Sp...
AbstractWe report that kainate receptors are present on presynaptic GABAergic terminals contacting i...
International audienceWe report that kainate receptors are present on presynaptic GABAergic terminal...
International audienceWe report that kainate receptors are present on presynaptic GABAergic terminal...
International audienceWe report that kainate receptors are present on presynaptic GABAergic terminal...
International audienceWe studied the modulation of GABAergic inhibition by glutamate and kainate act...
International audienceWe studied the modulation of GABAergic inhibition by glutamate and kainate act...
International audienceWe studied the modulation of GABAergic inhibition by glutamate and kainate act...
International audienceWe studied the modulation of GABAergic inhibition by glutamate and kainate act...
AbstractThe potent excitatory amino acid glutamate mediates its excitatory effects through a great v...
AbstractKainate receptor agonists depress transmitter release at several synapses in the hippocampus...
AbstractWe report that kainate receptors are present on presynaptic GABAergic terminals contacting i...
Kainate (KA) receptor activation depresses stimulus-evoked gamma-aminobutyric acid (GABA-mediated) s...
AbstractKainate receptor agonists depress transmitter release at several synapses in the hippocampus...
Progress in understanding the roles of kainate receptors (KARs) in synaptic integration, synaptic ne...