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Application of electrophysiological method to study interactions between ibogaine and cocaine.

Z Binienda, M A Beaudoin, B T Thorn, N Sadovova, R D Skinner, W Slikker, S F Ali

Annals of the New York Academy of Sciences September 1, 2000 DOI: 10.1111/j.1749-6632.2000.tb05212.x via PubMed

Summary

AI-generated from the abstract

Pretreatment with ibogaine dampens the brain's reaction to cocaine in rats. In awake adult male rats, cocaine alone caused a brief increase in alpha1 brain wave power and desynchronization in alpha2 and beta bands, along with a surge in dopamine levels in the caudate nucleus. After ibogaine pretreatment, cocaine instead produced a prolonged increase in delta, theta, and alpha1 power lasting up to an hour, and dopamine levels decreased further rather than rising. Dopamine turnover increased with ibogaine alone but not when cocaine followed. These changes in electrical brain activity and neurotransmitter levels indicate a reduced response to cocaine after ibogaine pretreatment.

Study at a glance

Characteristics In vivo electrophysiological study Peer reviewed
Population Awake adult male rats
Interventions Ibogaine Cocaine
Dose 50 mg/kg ibogaine, 20 mg/kg cocaine
Duration 1 hour between ibogaine and cocaine injection; recording lasted up to an hour after cocaine
Topics Ibogaine
Keywords Ibogaine pretreatment Alter brain's reaction Dampens response Cocaine-induced Surge with cocaine
Citations 4
Key finding Ibogaine pretreatment dampens the brain's electrocorticographic and dopaminergic response to cocaine in rats.

Abstract

The psychoactive indole alkaloid, ibogaine (IBO), has been investigated for over a decade concerning its reported anti-addictive properties for opioids as well as psychomotor stimulants. The mechanism for the anti-addictive action of IBO is still unclear. IBO interactions with opioid, NMDA, nicotinic, adrenergic, and serotonergic receptor sites have been suggested. The involvement of the dopaminergic system in IBO action is well documented. Increased or decreased levels of dopamine (DA) in specific brain regions following IBO pretreatment have been seen concomitantly with increased or decreased motor activity after subsequent amphetamine or cocaine administration. In this report, in vivo electrophysiological measures were monitored in awake adult male rats in order to investigate alterations of the electrocorticogram (ECoG) resulting from interactions between IBO and cocaine (COC). Rats were implanted bilaterally with bipolar ECoG electrodes. They were either injected with saline, COC alone (20 mg/kg, i.p.) or IBO (50 mg/kg, i.p.) and COC 1 hr later. The concentrations of DA, 5-HT, and their metabolites DOPAC, HVA, and 5-HIAA were assessed in the caudate nucleus in separate groups of saline-, COC-, and IBO/COC-treated rats. An alpha1 power increase was observed within 10 min after COC injection, which lasted for less than 20 min. A desynchronization over alpha2 and both beta power bands was observed throughout the recording. In IBO/COC-treated rats, a significant increase in delta, theta, and alpha1 power occurred within 20 min after COC injection (p <0.05). This effect lasted for up to an hour. DA levels significantly increased after COC only and decreased after IBO administration. A further decrease in levels of DA was observed in IBO/COC-treated rats. DA turnover increased significantly after IBO alone but was not observed after IBO/COC treatment. The alterations in ECoG and neurotransmitter levels suggest a decreased response to COC following IBO pretreatment.

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