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Development and validation of an analytical method for the determination of select 4-position ring-substituted tryptamines in plasma by liquid chromatography–tandem mass spectrometry

Malik Schoffner, Vamshikrishna Reddy Sammeta, Marilyn Naeem, Marta Concheiro, Ana Miguel Fonseca Pego, David R. Manke, A.r. Chadeayne, Grant C. Glatfelter, Michael H. Baumann

Journal of Analytical Toxicology May 26, 2025 DOI: 10.1093/jat/bkaf045 via OpenAlex

Summary

AI-generated from the abstract

A liquid chromatography–tandem mass spectrometry method was developed and validated to detect and quantify six 4-position ring-substituted tryptamines in plasma, including psilocybin, psilacetin, 4-Pro-DMT, and their metabolites psilocin and 4-HO-DPT. The method showed linearity from 0.5 to 100 ng/mL for most analytes (psilocybin from 5 to 100 ng/mL), with acceptable bias and imprecision. Matrix effects were minimal except for ion enhancement of psilocin and psilocybin. Extraction efficiency was about 50%. Applied to plasma from male rats given psilacetin, psilacetin was not detected, and psilocin concentrations ranged up to 32.7 ng/mL. The method provides a robust tool for future research and clinical applications.

Study at a glance

Characteristics Method development and validation Peer reviewed
Population Male rats
Intervention psilacetin
Dose 1.0 mg/kg s.c.
Duration 240 minutes after injection
Topics Psilocybin
Keywords Tryptamines Chemistry Selected reaction monitoring Tandem mass spectrometry
Citations 2
Key finding A sensitive and specific LC–MS/MS method was successfully developed to detect and quantify six tryptamines in plasma, with no psilacetin detected and psilocin concentrations up to 32.7 ng/mL in treated rats.

Abstract

Abstract 4-Phosporyloxy-N, N-dimethyltryptamine (psilocybin) is a psychedelic tryptamine found in certain mushroom species that has shown efficacy in the treatment of various psychiatric disorders. In conjunction with the renewed interest in therapeutic effects of psychedelics, there has been an increase in psilocybin-like designer tryptamines appearing in non-medical drug markets. The present study aimed to develop and validate a liquid chromatography–tandem mass spectrometry (LC–MS/MS) method for detecting and quantifying 4-position ring-substituted tryptamines and their 4-hydroxy metabolites in plasma. Specifically, we investigated 4-phosphoryloxy-N, N-dimethyltryptamine (psilocybin), 4-acetoxy-N, N-dimethyltryptamine (psilacetin), 4-propionoxy-N, N-dimethyltryptamine (4-Pro-DMT) and their shared metabolite 4-hydroxy-N, N-dimethyltryptamine (psilocin), along with 4-methyl carbonato-N, N-di-n-propyltryptamine (4-MeCO3-DPT) and its metabolite 4-hydroxy-N, N-di-n-propyltryptamine (4-HO-DPT). Mass spectrometry analysis employed electrospray ionization (ESI) in positive mode, with two multiple reaction monitoring (MRM) transitions per analyte. Plasma samples were acidified with ascorbic acid, followed by protein precipitation with acetonitrile. Linearity was achieved across a concentration range of 0.5–100 ng/mL for all analytes, except psilocybin, which displayed linearity from 5 to 100 ng/mL. Validation results demonstrated acceptable bias (±20%) and imprecision (<20%) for all analytes. Matrix effects, evaluated in 10 samples (CV <18.3%), indicated minimal interference, although ion enhancement was observed for psilocin (31.9%) and psilocybin (45.7%). Extraction efficiency across all tryptamines was approximately 50%. The assay method was used to quantitate plasma samples from male rats treated with 1.0 mg/kg s.c. of the prodrug psilacetin, and collected before and 5, 30, 60, 120 and 240 min after injection. No psilacetin was detected, and psilocin concentrations ranged from non-detected up to 32.7 ng/mL. Overall, we successfully developed a sensitive and specific method for the detection and quantification of six tryptamines in plasma, providing a robust tool for future research and clinical applications.

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