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Increase in morphine antinociceptive activity by a P-glycoprotein inhibitor in cisplatin-induced neuropathy
David Balayssac1, Anne Cayre, Bing Ling
1INSERM U766, Faculté de Médecine et de Pharmacie, F-63000 Clermont-Ferrand, France. dbalayssac@chu-clermontferrand.fr
Abstract:
Pain from anticancer drugs-induced neuropathies is difficult to treat and can significantly alter the patient's quality of life. These neuropathies are considered relatively resistant to conventional analgesic drugs (opioids). Opioids are also P-glycoprotein substrates and it has been demonstrated that the P-glycoprotein is linked to the integrity of blood-brain barrier protecting the nervous system. Previous works presented an increase of P-glycoprotein in vincristine- and cisplatin-induced neuropathy which could potentially decrease opioid efficiency. To test this hypothesis, the efflux inhibition of P-glycoprotein and the antinociceptive effect of morphine were assessed in normal and cisplatin-induced neuropathic rats after the administration of the P-glycoprotein inhibitor (R101933). R101933 (20 mg/kg) inhibited significantly the efflux transporter under the condition of the study and had no analgesic effect. Nociceptive thresholds were measured by the paw pressure test. R101933 (20 mg/kg) enhanced antinociceptive activity of morphine (0.5 mg/kg) to a maximum of +58% and +35%, respectively compared with control animals and animals treated by morphine alone (0.5 mg/kg). R101933 increased morphine (2 mg/kg) antinociceptive activity to a maximum of +105% compared with control animals and to a maximum of +41% compared with morphine alone (2 mg/kg). This study demonstrated that cisplatin-induced neuropathy may present a particular pathophysiology with a multidrug resistance, of the central nervous system, to analgesics. This resistance can be blocked by a P-glycoprotein inhibitor which may enhance analgesia of low doses of morphine.
Insights
Chemotherapy-induced neuropathic pain is resistant to opioids due to increased P-glycoprotein. A P-glycoprotein inhibitor blocked this resistance, enhancing morphine
Area of Science:
- Neuroscience
- Pharmacology
- Oncology
Background:
- Anticancer drug-induced neuropathic pain is difficult to manage and impacts patient quality of life.
- Opioid analgesics are often ineffective for neuropathic pain, partly due to P-glycoprotein efflux at the blood-brain barrier.
- Increased P-glycoprotein expression in chemotherapy-induced neuropathy may reduce opioid efficacy.
Purpose of the Study:
- To investigate the role of P-glycoprotein in cisplatin-induced neuropathic pain.
- To assess the effect of a P-glycoprotein inhibitor on morphine's antinociceptive activity in neuropathic rats.
Main Methods:
- Cisplatin-induced neuropathic rats were treated with a P-glycoprotein inhibitor (R101933) and morphine.
- Nociceptive thresholds were measured using the paw pressure test.
- Efflux inhibition of P-glycoprotein and antinociceptive effects were evaluated.
Main Results:
- The P-glycoprotein inhibitor R101933 significantly inhibited efflux transporter activity without causing analgesia.
- R101933 enhanced the antinociceptive effects of morphine in cisplatin-induced neuropathic rats.
- Morphine's efficacy was significantly increased when co-administered with the P-glycoprotein inhibitor.
Conclusions:
- Cisplatin-induced neuropathy exhibits central nervous system multidrug resistance to analgesics.
- P-glycoprotein inhibition can overcome this resistance, enhancing morphine's pain-relieving effects.
- This suggests P-glycoprotein inhibitors may improve pain management in chemotherapy patients.
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