Anti-addictive actions of an iboga alkaloid congener: a novel mechanism for a novel treatment.
Isabelle M Maisonneuve, Stanley D Glick
Pharmacology, biochemistry, and behavior June 1, 2003 DOI: 10.1016/s0091-3057(03)00119-9 (opens in new tab)
Study at a glance
AI-extracted from the abstract| Characteristics | Review Peer reviewed |
|---|---|
| Population | Animal models (rats) |
| Intervention | 18-Methoxycoronaridine (18-MC) |
| Topics | Ibogaine |
| Citations | 109 |
| Key findings | 18-MC, an alpha3beta4 nicotinic receptor antagonist, reduces self-administration of multiple drugs of abuse in animal models and may represent a novel class of broad-spectrum addiction treatments. |
Abstract
18-Methoxycoronaridine (18-MC), a novel iboga alkaloid congener that decreases drug self-administration in several animal models, may be a potential treatment for multiple forms of drug abuse. In animal models, 18-MC reduced intravenous morphine, cocaine, methamphetamine and nicotine self-administration, oral alcohol and nicotine intake, and attenuated signs of opioid withdrawal, but had no effect on responding for a nondrug reinforcer (water) and produced no apparent toxicity [Brain Res. 719 (1996) 29; NeuroReport 11 (2000) 2013; Pharmacol. Biochem. Behav. 58 (1997) 615; Psychopharmacology (Berl.) 139 (1998) 274; NeuroReport 9 (1998) 1283; Ann. N. Y. Acad. Sci. 914 (2000) 369]. Consistent with a relationship among drug sensitization, mesolimbic dopamine, and drug-seeking behavior, 18-MC also blocked the sensitized dopamine responses to morphine and cocaine in the nucleus accumbens. An extensive series of receptor studies showed that 18-MC was most potent and somewhat selective as an antagonist at alpha3beta4 nicotinic receptors. Low-dose combinations of 18-MC with other drugs known to have this same action (e.g., mecamylamine, dextromethorphan, bupropion) decreased morphine, methamphetamine, and nicotine self-administration in rats at doses that were ineffective if administered alone. Together, the data support the hypothesis that diencephalic pathways having high densities of alpha3beta4 nicotinic receptors modulate mesocorticolimbic pathways more directly involved in drug reinforcement. Antagonists of alpha3beta4 nicotinic receptors may represent a totally novel approach to treating multiple addictive disorders, and 18-MC might be the first of a new class of synthetic agents acting via this novel mechanism and having a broad spectrum of activity.
Comparable studies
Other preclinical and animal studies on ibogaine, most cited first.
| Study | Year | Design | Participants |
|---|---|---|---|
| Noncompetitive Functional Inhibition at Diverse, Human Nicotinic Acetylcholine Receptor Subtypes by Bupropion, Phencyclidine, and Ibogaine TE671/RD cells (human muscle-type nAChR) and SH-SY5Y neuroblastoma cells (human... | 1999 | In vitro study | |
| Degeneration of Purkinje cells in parasagittal zones of the cerebellar vermis after treatment with ibogaine or harmaline. Ibogaine- or harmaline-treated rats | 1993 | Experimental animal study | |
| Effects and aftereffects of ibogaine on morphine self-administration in rats. Rats | 1991 | Preclinical experimental study | |
| Effects of iboga alkaloids on morphine and cocaine self-administration in rats: relationship to tremorigenic effects and to effects on dopamine release in nucleus accumbens and striatum. Rats | 1994 | Experimental study | |
| Glial Cell Line-Derived Neurotrophic Factor Mediates the Desirable Actions of the Anti-Addiction Drug Ibogaine against Alcohol Consumption Rats | 2005 | Experimental study |