The reinforcing and psychomotor effects of morphine involve opiate stimulation of the dopaminergic system via activation of mu-opioid receptors (muOR). Both mu-opioid and dopamine receptors are members of the G-protein-coupled receptor (GPCR) family of proteins. GPCRs are known to undergo desensitization involving phosphorylation of the receptor and the subsequent binding of beta(arrestins), which prevents further receptor-G-protein coupling. Mice lacking beta(arrestin)-2 (beta(arr2)) display enhanced sensitivity to morphine in tests of pain perception attributable to impaired desensitization of muOR. However, whether abrogating muOR desensitization affects the reinforcing and psychomotor properties of morphine has remained unexplored. In t...
Mice deficient for the stable tubule only peptide (STOP) display altered dopaminergic neurotransmiss...
Morphine is one of the most potent analgesic drugs used to relieve moderate to severe pain. After lo...
The role of -opioid receptor (MOR) down-regulation in opioid tolerance remains controversial. In thi...
The reinforcing and psychomotor effects of morphine involve opiate stimulation of the dopaminergic s...
The reinforcing and psychomotor effects of morphine involve opiate stimulation of the dopaminergic s...
The rewarding effects of opiates are thought to be mediated through dopaminergic mechanisms in the v...
The tyrosine kinase, c-Src, participates in mu opioid receptor (MOP) mediated inhibition in sensory ...
The definitive version is available at www.blackwell-synergy.comThe activation of dopamine (DA) neur...
Studies in experimental animals have shown that individuals exhibiting enhanced sensitivity to the l...
AbstractRecent studies of knockout mice conclusively show that the mu opioid receptor mediates the a...
μ-Opioid receptors (MORs) are densely expressed in different brain regions known to mediate reward. ...
SummaryOpioid drugs, such as morphine, are among the most effective analgesics available. However, t...
Morphine induces antinociception by activating mu opioid receptors (muORs) in spinal and supraspinal...
The role of μ-opioid receptor (MOR) down-regulation in opioid tolerance remains controversial. In th...
The OPRM1 A118G polymorphism is the most widely studied μ-opioid receptor (MOR) variant. Although it...
Mice deficient for the stable tubule only peptide (STOP) display altered dopaminergic neurotransmiss...
Morphine is one of the most potent analgesic drugs used to relieve moderate to severe pain. After lo...
The role of -opioid receptor (MOR) down-regulation in opioid tolerance remains controversial. In thi...
The reinforcing and psychomotor effects of morphine involve opiate stimulation of the dopaminergic s...
The reinforcing and psychomotor effects of morphine involve opiate stimulation of the dopaminergic s...
The rewarding effects of opiates are thought to be mediated through dopaminergic mechanisms in the v...
The tyrosine kinase, c-Src, participates in mu opioid receptor (MOP) mediated inhibition in sensory ...
The definitive version is available at www.blackwell-synergy.comThe activation of dopamine (DA) neur...
Studies in experimental animals have shown that individuals exhibiting enhanced sensitivity to the l...
AbstractRecent studies of knockout mice conclusively show that the mu opioid receptor mediates the a...
μ-Opioid receptors (MORs) are densely expressed in different brain regions known to mediate reward. ...
SummaryOpioid drugs, such as morphine, are among the most effective analgesics available. However, t...
Morphine induces antinociception by activating mu opioid receptors (muORs) in spinal and supraspinal...
The role of μ-opioid receptor (MOR) down-regulation in opioid tolerance remains controversial. In th...
The OPRM1 A118G polymorphism is the most widely studied μ-opioid receptor (MOR) variant. Although it...
Mice deficient for the stable tubule only peptide (STOP) display altered dopaminergic neurotransmiss...
Morphine is one of the most potent analgesic drugs used to relieve moderate to severe pain. After lo...
The role of -opioid receptor (MOR) down-regulation in opioid tolerance remains controversial. In thi...