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Enhancement of morphine antinociception by ibogaine and noribogaine in morphine-tolerant mice.

S Sunder Sharma, H N Bhargava

Pharmacology November 1, 1998 DOI: 10.1159/000028246 via PubMed

Summary

AI-generated from the abstract

In male Swiss-Webster mice, ibogaine and its metabolite noribogaine enhanced morphine's pain-relieving effect in animals that had developed tolerance to morphine, but not in those that had never received morphine. Tolerance was induced by implanting a 25 mg morphine pellet for three days. Both compounds dose-dependently increased morphine antinociception only in morphine-tolerant mice, suggesting they may help restore opioid effectiveness in tolerant states.

Study at a glance

Characteristics Preclinical experimental study Peer reviewed
Population Male Swiss-Webster mice
Interventions Ibogaine Noribogaine Morphine
Dose morphine 10 mg/kg, s.c.; morphine pellet 25 mg
Duration 3-day morphine pellet implantation
Topics Ibogaine
Keywords Opioid tolerance Pain management Pharmacology
Citations 17
Key finding Ibogaine and noribogaine dose-dependently enhanced morphine antinociception in morphine-tolerant but not in morphine-naive mice.

Abstract

The effects of ibogaine, an alkaloid isolated form the bark of the African shrub, Tabernathe iboga, and noribogaine, a metabolite of ibogaine, on morphine antinociception were determined in male Swiss-Webster mice. Mice were rendered tolerant to morphine by implanting them with a pellet containing 25 mg of morphine base for 3 days. Placebo pellet-implanted mice served as controls. The antinociception of morphine (10 mg/kg, s.c.) was determined alone or in combination with an appropriate dose of ibogaine or noribogaine. Tolerance to morphine developed as a result of morphine pellet implantation as evidenced by decreased antinociceptive response to morphine. Both ibogaine and noribogaine dose-dependently enhanced morphine antinociception in morphine-tolerant but not in morphine-naive mice. It is concluded that ibogaine and noribogaine enhance morphine antinociception in morphine-tolerant mice.

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