The opioid system influences learning and memory processes. However, neural mechanisms underlying the modulation of hippocampal activity by opioid receptors remain largely unknown. Here, we compared how mu and delta receptors operate within the mouse CA1 network, and used knock-in mice expressing functional delta opioid receptors fused to the green fluorescent protein (DOR-eGFP) to determine how delta opioid receptor-expressing interneurons integrate within the hippocampal circuitry. Through whole cell patch-clamp recording of CA1 pyramidal neurons from wild-type and DOR-eGFP mice, we found that mu and delta receptors both modulate spontaneous GABAergic inhibition received by these cells. Interestingly, mu but not delta receptor activation ...
The heteromerization of Mu (MOP) and delta (DOP) opioid receptors has been extensively studied in he...
International audienceG-protein-coupled receptors (GPCRs) mediate numerous physiological functions a...
The mu and delta opioid receptors (MOR and DOR) are highly homologous members of the opioid family o...
The opioid system influences learning and memory processes. However, neural mechanisms underlying th...
Opioid receptors belong to the G protein coupled receptor family. They modulate brain function at al...
Recombinant mu and delta opioid receptors expressed in cell lines can form heterodimers with distinc...
Functional interactions between G protein-coupled receptors are poised to enhance neuronal sensitivi...
International audiencePharmacological data suggest that delta opioid receptors modulate learning and...
It is not clear whether primary afferent neurons express functional cell-surface opioid receptors. W...
IIncreasing evidence indicates that native mu and delta opioid receptors can associate to form heter...
Opioid receptors are G protein coupled receptors that modulate brain function at all levels of neura...
International audienceInhibition is critical for controlling information transfer in the brain. Howe...
International audienceThe heteromerization of mu (MOP) and delta (DOP) opioid receptors has been ext...
Le récepteur aux opioïdes δ fait partie du système opioïde, un système neuromodulateur compose de pe...
The heteromerization of Mu (MOP) and delta (DOP) opioid receptors has been extensively studied in he...
International audienceG-protein-coupled receptors (GPCRs) mediate numerous physiological functions a...
The mu and delta opioid receptors (MOR and DOR) are highly homologous members of the opioid family o...
The opioid system influences learning and memory processes. However, neural mechanisms underlying th...
Opioid receptors belong to the G protein coupled receptor family. They modulate brain function at al...
Recombinant mu and delta opioid receptors expressed in cell lines can form heterodimers with distinc...
Functional interactions between G protein-coupled receptors are poised to enhance neuronal sensitivi...
International audiencePharmacological data suggest that delta opioid receptors modulate learning and...
It is not clear whether primary afferent neurons express functional cell-surface opioid receptors. W...
IIncreasing evidence indicates that native mu and delta opioid receptors can associate to form heter...
Opioid receptors are G protein coupled receptors that modulate brain function at all levels of neura...
International audienceInhibition is critical for controlling information transfer in the brain. Howe...
International audienceThe heteromerization of mu (MOP) and delta (DOP) opioid receptors has been ext...
Le récepteur aux opioïdes δ fait partie du système opioïde, un système neuromodulateur compose de pe...
The heteromerization of Mu (MOP) and delta (DOP) opioid receptors has been extensively studied in he...
International audienceG-protein-coupled receptors (GPCRs) mediate numerous physiological functions a...
The mu and delta opioid receptors (MOR and DOR) are highly homologous members of the opioid family o...