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Return of the lysergamides. Part VII: Analytical and behavioural characterization of 1‐valeroyl‐d‐lysergic acid diethylamide (1V‐LSD)

Simon D. Brandt, Pierce V. Kavanagh, Folker Westphal, Benedikt Pulver, Kathleen Morton, Alexander Stratford, Geraldine Dowling, Adam L. Halberstadt

Drug Testing and Analysis November 27, 2021 DOI: 10.1002/dta.3205 via OpenAlex

Summary

AI-generated from the abstract

A new LSD derivative called 1-valeroyl-LSD (1V-LSD, or "Valerie") has appeared on the online market. It is a higher homolog of earlier derivatives like ALD-52, 1P-LSD, and 1B-LSD. The study analytically characterized 1V-LSD using mass spectrometry, chromatography, NMR, and Raman spectroscopy. In mice, 1V-LSD induced a head-twitch response, a behavioral proxy for human hallucinogenic effects, in a dose-dependent manner. Its median effective dose was 373 nmol/kg, about a third the potency of LSD (ED50 = 132.8 nmol/kg). 1V-LSD likely acts as a prodrug that is hydrolyzed to LSD, but further studies on its biotransformation and receptor pharmacology are needed.

Study at a glance

Characteristics Experimental study Peer reviewed
Population Mice
Topics LSD Psilocybin
Keywords Hallucinogen Pharmacology Prodrug
Citations 19
Key finding 1V-LSD induces a dose-dependent head-twitch response in mice with about a third the potency of LSD.

Abstract

Abstract The psychopharmacological properties of the psychedelic drug lysergic acid diethylamide (LSD) have attracted the interest of several generations of scientists. While further explorations involving novel LSD‐type compounds are needed to assess their potential as medicinal drugs, the emergence of novel derivatives as recreational drugs has also been observed. 1‐Valeroyl‐LSD (also known as 1‐valeryl‐LSD, 1‐pentanoyl‐LSD, 1V‐LSD, or “Valerie”) is a new N 1 ‐acylated LSD derivative that recently appeared on the online market, and it could be viewed as a higher homolog of ALD‐52, 1P‐LSD, and 1B‐LSD. The present study included the analytical characterization and involved various methods of mass spectrometry (MS), gas and liquid chromatography (GC and LC), nuclear magnetic resonance (NMR) spectroscopy, GC–solid‐state infrared (GC‐sIR) analysis, and Raman spectroscopy. The in vivo activity of 1V‐LSD was assessed using the mouse head‐twitch response (HTR), a 5‐HT 2A ‐mediated head movement that serves as a behavioral proxy in rodents for human hallucinogenic effects. Similar to LSD and other psychedelic drugs, the HTR induced by 1V‐LSD was dose dependent, and the median effective dose for 1V‐LSD was 373 nmol/kg, which was about a third of the potency of LSD (ED 50 = 132.8 nmol/kg). Lysergamides containing the N 1 ‐substituent typically act as weak partial agonists at the 5‐HT 2A receptor and are believed to serve as prodrugs for LSD. 1V‐LSD is also likely to be hydrolyzed to LSD and serve as a prodrug, but studies to assess the biotransformation and receptor pharmacology of 1V‐LSD should be performed to fully elucidate its mechanism of action.

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