Opioid receptors belong to the G protein coupled receptor family. They modulate brain function at all levels of neural integration and therefore impact on autonomous, sensory, emotional and cognitive processing. In vivo functional interaction between mu and delta opioid receptors are known to take place though it is still debated whether interactions occur at circuitry, cellular or molecular level. Also, the notion of receptor crosstalk via mu-delta heteromers is well documented in vitro but in vivo evidence remains scarce. To identify neurons in which receptor interactions could take place, we designed a unique double mutant knock-in mouse line that expresses functional red-fluorescent mu receptors and green-fluorescent delta receptors. We...
BACKGROUND & AIMS: Functional interactions between the mu opioid receptor (MOR) and delta opioid rec...
International audienceThe heteromerization of mu (MOP) and delta (DOP) opioid receptors has been ext...
The interplay between the dopamine (DA) and opioid systems in the brain is known to modulate the add...
Opioid receptors are G protein coupled receptors that modulate brain function at all levels of neura...
Opioid receptors belong to the G protein coupled receptor family. They modulate brain function at al...
Opioid receptors are G protein-coupled receptors (GPCRs) that modulate brain function at all levels ...
IIncreasing evidence indicates that native mu and delta opioid receptors can associate to form heter...
Opioid Receptors (ORs) are involved in the pathophysiology of several neuropsychiatric conditions ye...
Mu opioid receptors modulate a large number of physiological functions. They are in particular invo...
The opioid system influences learning and memory processes. However, neural mechanisms underlying th...
The heteromerization of Mu (MOP) and delta (DOP) opioid receptors has been extensively studied in he...
Contrary to current models, Scherrer et al. (2009) provide evidence that mu and delta opioid recepto...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/72251/1/sj.bjp.0704430.pd
Recombinant mu and delta opioid receptors expressed in cell lines can form heterodimers with distinc...
The opioid system influences learning and memory processes. However, neural mechanisms underlying th...
BACKGROUND & AIMS: Functional interactions between the mu opioid receptor (MOR) and delta opioid rec...
International audienceThe heteromerization of mu (MOP) and delta (DOP) opioid receptors has been ext...
The interplay between the dopamine (DA) and opioid systems in the brain is known to modulate the add...
Opioid receptors are G protein coupled receptors that modulate brain function at all levels of neura...
Opioid receptors belong to the G protein coupled receptor family. They modulate brain function at al...
Opioid receptors are G protein-coupled receptors (GPCRs) that modulate brain function at all levels ...
IIncreasing evidence indicates that native mu and delta opioid receptors can associate to form heter...
Opioid Receptors (ORs) are involved in the pathophysiology of several neuropsychiatric conditions ye...
Mu opioid receptors modulate a large number of physiological functions. They are in particular invo...
The opioid system influences learning and memory processes. However, neural mechanisms underlying th...
The heteromerization of Mu (MOP) and delta (DOP) opioid receptors has been extensively studied in he...
Contrary to current models, Scherrer et al. (2009) provide evidence that mu and delta opioid recepto...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/72251/1/sj.bjp.0704430.pd
Recombinant mu and delta opioid receptors expressed in cell lines can form heterodimers with distinc...
The opioid system influences learning and memory processes. However, neural mechanisms underlying th...
BACKGROUND & AIMS: Functional interactions between the mu opioid receptor (MOR) and delta opioid rec...
International audienceThe heteromerization of mu (MOP) and delta (DOP) opioid receptors has been ext...
The interplay between the dopamine (DA) and opioid systems in the brain is known to modulate the add...