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Bufotenine: toward an understanding of possible psychoactive mechanisms.

M C Mcbride

Journal of Psychoactive Drugs 2000 DOI: 10.1080/02791072.2000.10400456 (opens in new tab)

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AI-extracted from the abstract
Characteristics Review Peer reviewed
Keywords Bufotenine Compound Chemical Neuropharmacology Brain chemistry Psychopharmacology Receptor science Serotonin receptors 5-ht2a 5-ht2c Brain receptors Neural receptors Psychoactivity Hallucinogens Psychotropics Mind-altering substances Hallucinogenic effects Psychoactive potential Blood-brain barrier Bbb Drug permeability Brain access
Citations 71
Key findings Bufotenine binds and activates hallucinogenic serotonin receptors 5-HT2A and 5-HT2C, and its lack of classic hallucinogenic effects in humans is likely due to poor blood-brain barrier penetration.

Abstract

A review of the neuropharmacology of the alleged hallucinogen bufotenine is presented, including recent experimental results showing activity similar to LSD and other known hallucinogens (psilocin and 5-MeO-DMT) at the purported hallucinogenic serotonin (5-HT) receptors, 5-HT2A and 5-HT2C. In addition, current reports of computer modeling of the receptors and ligand binding sites give evidence of bufotenine's ability to bind and activate these receptors. While binding and activation of the purported hallucinogenic receptors are not the full extent of the hallucinogenic signature, this evidence shows support for the rationale that the reported lack of the drug's classic hallucinogenic response in human experiments is due to poor ability to cross the blood brain barrier (BBB), not lack of activation of the appropriate brain receptors. Further evidence is reviewed that in some physiological states, some drugs with characteristics similar to bufotenine which do not normally cross the BBB, cross it and enter the brain. While direct human experimental evidence of bufotenine's hallucinogenic activity seems lacking, the above combined factors are considered, and possible explanations of bufotenine's reported psychoactivity are suggested. Additionally, updated experimental models testing the possible nature of bufotenine's hallucinogenic potential are proposed.