Abstract Hedonic reward, dependence and addiction are unwanted effects of opioid analgesics, linked to the phasic cycle of μ opioid receptor activation, tolerance and withdrawal. In vitro studies of recombinant G protein coupled receptors (GPCRs) over expressed in cell lines reveal an alternative tonic signaling mechanism that is independent of agonist. Such studies demonstrate that constitutive GPCR signaling can be inhibited by inverse agonists but not by neutral antagonists. However, ligand-independent activity has been difficult to examine in vivo, at the systems level, due to relatively low levels of constitutive activity of most GPCRs including μ receptors, often necessitating mutagenesis or pharmacological manipulation to enhance bas...
Background and purposeThe opioid receptor family comprises four structurally homologous but function...
The μ-opioid receptor (MOP) is a G protein-coupled receptor (GPCR) responsible for mediating the ana...
Some analgesics, including opioids, mediate their action through inhibitory G-protein-coupled recept...
Hedonic reward, dependence and addiction are unwanted effects of opioid analgesics, linked to the ph...
Beta-arrestins bind to agonist-activated G-protein-coupled receptors regulating signaling events and...
Previous pharmacological studies have indicated the possible existence of functional interactions be...
G protein-coupled receptor regulation by G protein-coupled receptor kinases and -arrestins can lead ...
Opioid analgesics are a critical class of medications, with severe side effects such as lethal respi...
Numerous G-protein-coupled receptors (GPCRs) display ligand-free basal signaling with potential phys...
Morphine induces antinociception by activating mu opioid receptors (muORs) in spinal and supraspinal...
Background and Purpose: Tolerance to the behavioural effects of morphine is blunted in β-arrestin-2 ...
Ligand-specific recruitment of arrestins facilitates functional selectivity of G-protein-coupled rec...
Opioid drugs are widely used analgesics that activate the G protein-coupled µ-opioid receptor, whose...
Opiates are powerful drugs to treat severe pain, and act via mu opioid receptors distributed through...
Opioid analgesics are powerful pain relievers; however, over time, pain control diminishes as analge...
Background and purposeThe opioid receptor family comprises four structurally homologous but function...
The μ-opioid receptor (MOP) is a G protein-coupled receptor (GPCR) responsible for mediating the ana...
Some analgesics, including opioids, mediate their action through inhibitory G-protein-coupled recept...
Hedonic reward, dependence and addiction are unwanted effects of opioid analgesics, linked to the ph...
Beta-arrestins bind to agonist-activated G-protein-coupled receptors regulating signaling events and...
Previous pharmacological studies have indicated the possible existence of functional interactions be...
G protein-coupled receptor regulation by G protein-coupled receptor kinases and -arrestins can lead ...
Opioid analgesics are a critical class of medications, with severe side effects such as lethal respi...
Numerous G-protein-coupled receptors (GPCRs) display ligand-free basal signaling with potential phys...
Morphine induces antinociception by activating mu opioid receptors (muORs) in spinal and supraspinal...
Background and Purpose: Tolerance to the behavioural effects of morphine is blunted in β-arrestin-2 ...
Ligand-specific recruitment of arrestins facilitates functional selectivity of G-protein-coupled rec...
Opioid drugs are widely used analgesics that activate the G protein-coupled µ-opioid receptor, whose...
Opiates are powerful drugs to treat severe pain, and act via mu opioid receptors distributed through...
Opioid analgesics are powerful pain relievers; however, over time, pain control diminishes as analge...
Background and purposeThe opioid receptor family comprises four structurally homologous but function...
The μ-opioid receptor (MOP) is a G protein-coupled receptor (GPCR) responsible for mediating the ana...
Some analgesics, including opioids, mediate their action through inhibitory G-protein-coupled recept...