AbstractProlonged exposure to an opioid induces hyperalgesia and tolerance, which negatively affect pain management in turn and significantly hamper the application of opioids. A growing body of evidence has demonstrated that glial activation contributes to the development of these two side effects. Recent studies have demonstrated that morphine, binding to an accessory protein of Toll-like receptor 4 (TLR4), activates microglia and produces neuroinflammation in a manner parallel to lipopolysaccharide. Meanwhile, lipopolysaccharide activates microglia through TLR4/caspase signalling. Therefore, we hypothesise that morphine may activate microglia through TLR4/caspase signalling and that caspase inhibitors may attenuate opioid-induced hyperal...
Opioids have been widely applied in clinics as one of the most potent pain relievers for centuries, ...
Background and Aim: Glial cells are activated at multiple sites along the pain pathway following per...
Background and Aim: Glial cells are activated at multiple sites along the pain pathway following per...
Opioid-induced proinflammatory glial activation modulates wide-ranging aspects of opioid pharmacolog...
Opioid-induced proinflammatory glial activation modulates wide-ranging aspects of opioid pharmacolog...
Morphine-3-glucoronide (M3G) is a major morphine metabolite detected in cerebrospinal fluid of human...
Increased production of proinflammatory cytokines has a prominent role in tolerance to opioids. The ...
Anti-nociceptive tolerance to opioids severely limits their clinical efficacy for the treatment of c...
Opioid-induced glial activation and its proinflammatory consequences have been associated with both ...
Long term opioid treatment results in hyperalgesia and tolerance, which is a troublesome phenomenon ...
Abstract Background Multiple adverse events are associated with the use of morphine for the treatmen...
Copyright © 2009 Elsevier Ltd All rights reserved.Glial activation participates in the mediation of ...
A major unresolved issue in treating pain is the paradoxical hyperalgesia produced by the gold-stand...
Abstract Background Long-term use of morphine induces analgesic tolerance, which limits its clinical...
Opioids have been widely applied in clinics as one of the most potent pain relievers for centuries, ...
Opioids have been widely applied in clinics as one of the most potent pain relievers for centuries, ...
Background and Aim: Glial cells are activated at multiple sites along the pain pathway following per...
Background and Aim: Glial cells are activated at multiple sites along the pain pathway following per...
Opioid-induced proinflammatory glial activation modulates wide-ranging aspects of opioid pharmacolog...
Opioid-induced proinflammatory glial activation modulates wide-ranging aspects of opioid pharmacolog...
Morphine-3-glucoronide (M3G) is a major morphine metabolite detected in cerebrospinal fluid of human...
Increased production of proinflammatory cytokines has a prominent role in tolerance to opioids. The ...
Anti-nociceptive tolerance to opioids severely limits their clinical efficacy for the treatment of c...
Opioid-induced glial activation and its proinflammatory consequences have been associated with both ...
Long term opioid treatment results in hyperalgesia and tolerance, which is a troublesome phenomenon ...
Abstract Background Multiple adverse events are associated with the use of morphine for the treatmen...
Copyright © 2009 Elsevier Ltd All rights reserved.Glial activation participates in the mediation of ...
A major unresolved issue in treating pain is the paradoxical hyperalgesia produced by the gold-stand...
Abstract Background Long-term use of morphine induces analgesic tolerance, which limits its clinical...
Opioids have been widely applied in clinics as one of the most potent pain relievers for centuries, ...
Opioids have been widely applied in clinics as one of the most potent pain relievers for centuries, ...
Background and Aim: Glial cells are activated at multiple sites along the pain pathway following per...
Background and Aim: Glial cells are activated at multiple sites along the pain pathway following per...