Steric and Electronic Relationships among Some Hallucinogenic Compounds
Sungzong Kang, Jack Peter Green
Proceedings of the National Academy of Sciences September 1, 1970 DOI: 10.1073/pnas.67.1.62 via OpenAlex
Summary
AI-generated from the abstractA common mechanism may underlie how structurally different hallucinogens—LSD, indolealkylamines, and methoxylated amphetamines—interact with their receptor. In LSD, the aromatic benzene ring A and the N-6 nitrogen are essential for activity; these sites may react with the receptor. The conformations of amphetamines and indolealkylamines position their aromatic ring and alkylamino nitrogen to align with LSD's ring A and N-6. Ring A may form a π-molecular complex with the receptor, supported by a correlation between hallucinogenic activity and the energy of the highest occupied molecular orbital. The N-6 nitrogen and its sterically congruent counterparts may form an n-π* or n-σ* donor-acceptor complex. Additional groups (methoxy, hydroxyl, pyrrole ring) contribute favorable orbital energy.
Study at a glance
| Characteristics | Theoretical or philosophical paper Peer reviewed |
|---|---|
| Topics | LSD Mescaline |
| Keywords | Hallucinogen Steric effects Stereochemistry |
| Citations | 64 |
| Key finding | Stereochemical and electronic calculations suggest that LSD, indolealkylamines, and methoxylated amphetamines share a common receptor interaction mechanism involving the aromatic ring and a nitrogen atom. |
Abstract
Stereochemical considerations and total valence electron calculations suggest congruities among the ostensibly dissimilar hallucinogenic compounds, D-lysergic acid diethylamide (LSD), indolcalkylamines, and methoxylated amphetamines. In LSD the aromatic benzene ring A and the N-6 nitrogen are essential for hallucinogenic activity; these sites may react with the receptor. The conformations of amphetamines and indolealkylamines at the receptor are such that the aromatic benzene ring lies like ring A of LSD and the alkylamino nitrogen lies like the N-6 of LSD. Ring A may interact with the receptor by forming a π-molecular complex, as suggested by the correlation between hallucinogenic activity and energy of the highest occupied molecular orbital ( E H ) of congeneric series. The N-6 nitrogen of LSD and the sterically congruent nitrogen of the other hallucinogenic compounds may react with the receptor by forming a donor acceptor complex of the n -π * or n -σ * type. Other portions of the hallucinogenic molecules confer a favorable E H : these include the methoxy and hydroxyl groups of the amphetamines (and mescaline), and the indolealkylamines; and the pyrrole ring of LSD and the indolealkylamines.