Opioid tolerance is well-described physiologically but its mechanistic basis remains incompletely understood. An important site of opioid action in vivo is the presynaptic terminal, where opioids inhibit transmitter release. This response characteristically resists desensitization over minutes yet becomes gradually tolerant over hours, and how this is possible remains unknown. Here, we delineate a cellular mechanism underlying this longer-term form of opioid tolerance in cultured rat medium spiny neurons. Our results support a model in which presynaptic tolerance is mediated by a gradual depletion of cognate receptors from the axon surface through iterative rounds of receptor endocytosis and recycling. For the μ-opioid receptor (MOR), we sh...
We examined the effect of acute and chronic opioid treatment on synaptic transmission and µ-opioid r...
We examined the effect of acute and chronic opioid treatment on synaptic transmission and µ-opioid r...
AbstractThe utility of morphine for the treatment of chronic pain is hindered by the development of ...
A major function of GPCRs is to inhibit presynaptic neurotransmitter release, requiring ligand-activ...
Opiates, including morphine, are widely used drugs for antinociception in clinics. Prolonged treatme...
Morphine and related µ-opioid receptor (MOR) agonists remain among the most effective drugs known fo...
Differences in the ability of opioid drugs to promote regulated endocytosis of μ-opioid receptors ar...
SummaryOpioid drugs, such as morphine, are among the most effective analgesics available. However, t...
AbstractControl of trafficking of g protein-linked receptors is thought to be an important regulator...
The biological actions of morphine and other opioid narcotics are mediated primarily by the mu opioi...
The biological actions of morphine and other opioid narcotics are mediated primarily by the mu opioi...
AbstractMorphine is unusual in its failure to promote robust desensitization and endocytosis of the ...
Abstract Opioid drugs, such as morphine, are among the most effective analgesics available. However,...
Abstract Opioid drugs, such as morphine, are among the most effective analgesics available. However,...
We examined the effect of acute and chronic opioid treatment on synaptic transmission and µ-opioid r...
We examined the effect of acute and chronic opioid treatment on synaptic transmission and µ-opioid r...
We examined the effect of acute and chronic opioid treatment on synaptic transmission and µ-opioid r...
AbstractThe utility of morphine for the treatment of chronic pain is hindered by the development of ...
A major function of GPCRs is to inhibit presynaptic neurotransmitter release, requiring ligand-activ...
Opiates, including morphine, are widely used drugs for antinociception in clinics. Prolonged treatme...
Morphine and related µ-opioid receptor (MOR) agonists remain among the most effective drugs known fo...
Differences in the ability of opioid drugs to promote regulated endocytosis of μ-opioid receptors ar...
SummaryOpioid drugs, such as morphine, are among the most effective analgesics available. However, t...
AbstractControl of trafficking of g protein-linked receptors is thought to be an important regulator...
The biological actions of morphine and other opioid narcotics are mediated primarily by the mu opioi...
The biological actions of morphine and other opioid narcotics are mediated primarily by the mu opioi...
AbstractMorphine is unusual in its failure to promote robust desensitization and endocytosis of the ...
Abstract Opioid drugs, such as morphine, are among the most effective analgesics available. However,...
Abstract Opioid drugs, such as morphine, are among the most effective analgesics available. However,...
We examined the effect of acute and chronic opioid treatment on synaptic transmission and µ-opioid r...
We examined the effect of acute and chronic opioid treatment on synaptic transmission and µ-opioid r...
We examined the effect of acute and chronic opioid treatment on synaptic transmission and µ-opioid r...
AbstractThe utility of morphine for the treatment of chronic pain is hindered by the development of ...