Responses of the extrapyramidal and limbic substance P systems to ibogaine and cocaine treatments.
M E Alburges, B P Ramos, L Bush, G R Hanson
European journal of pharmacology February 25, 2000 DOI: 10.1016/s0014-2999(99)00919-x via PubMed
Summary
AI-generated from the abstractIbogaine, a compound from the West African shrub Tabernanthe iboga, and cocaine both increased substance P—a key signaling molecule—in brain regions associated with movement and reward, specifically the striatum and substantia nigra, 12 hours after the last drug treatment. Substance P levels were not significantly raised in the nucleus accumbens by either drug. These increases were blocked by antagonists of dopamine D1 or D2 receptors, indicating involvement of dopamine pathways. Unlike cocaine, multiple doses of ibogaine did not raise substance P in the frontal cortex. The findings suggest substance P systems may contribute to the effects of ibogaine and cocaine.
Study at a glance
| Characteristics | Experimental study Peer reviewed |
|---|---|
| Population | Rats (implied by experimental context) |
| Interventions | Ibogaine Cocaine SCH 23390 Eticlopride |
| Duration | 12 h after the last drug treatment |
| Topics | Ibogaine |
| Keywords | Natural compound Cocaine Substance p Key signaling molecule |
| Citations | 21 |
| Key finding | Ibogaine and cocaine both increased substance P-like immunoreactivity in the striatum and substantia nigra via dopamine D1 and D2 receptor mechanisms, but only cocaine increased it in the frontal cortex. |
Abstract
Ibogaine is an indolamine found in the West Africa shrub, Tabernanthe iboga, and has been proposed for the treatment of addiction to central nervous system (CNS) stimulants such as cocaine and amphetamine. The mechanism of ibogaine action and its suitability as a treatment for drug addiction still remains unclear. Since previous studies demonstrated differential effects of stimulants of abuse (amphetamines) on neuropeptide systems such as substance P, we examined the impact of ibogaine and cocaine on extrapyramidal (striatum and substantia nigra) and limbic (nucleus accumbens and frontal cortex) substance P-like immunoreactivity. Ibogaine and cocaine treatments altered substance P systems by increasing striatal and nigral substance P-like immunoreactivity concentration 12 h after the last drug treatment. However, substance P-like immunoreactivity content was not significantly increased in nucleus accumbens after treatment with either drug. The ibogaine- and cocaine-induced increases in substance P-like immunoreactivity in striatum and substantia nigra were blocked by coadministration of selective dopamine D(1) receptor antagonist (SCH 23390; R(+)-7-Chloro-8-hydroxy-3-methyl-1-phenyl-2,3,4, 5-tetrahydro-1H-3-benzazepine hydrochloride) or dopamine D(2) receptor antagonist (eticlopride; S(-)-3-Chloro-5-ethyl-N-[(1-ethyl-2-pyrrolidinyl)methyl]-6-hydroxy-2- methoxy-benzamide hydrochloride). Most of the responses by substance P systems to ibogaine administration resembled those caused by cocaine, except in cortical tissue where multiple administration of cocaine, but not ibogaine increased substance P-like immunoreactivity. These data suggest that substance P systems may contribute to the effects of ibogaine and cocaine treatment.