Novel qNMR Methodto Quantify Psilocybin and Psilocinin Psychedelic Mushrooms
OPAL (Open@LaTrobe) (La Trobe University) November 10, 2025 DOI: 10.1021/acsomega.5c07092.s001 via OpenAlex
Summary
AI-generated from the abstractAn optimized extraction and quantitative nuclear magnetic resonance (qNMR) method accurately measures psilocybin and psilocin in dried Psilocybe cubensis mushrooms. The technique detects both compounds simultaneously with high reproducibility and requires no calibration standards. Analysis of user-provided and laboratory-grown samples revealed large variability in tryptamine content and psilocybin-to-psilocin ratios, suggesting storage conditions affect alkaloid stability. qNMR offers a rapid, nondestructive alternative to conventional chromatography for routine analysis, potentially supporting quality control in clinical and regulatory settings for psychedelic mushrooms.
Study at a glance
| Characteristics | Method development and validation Peer reviewed |
|---|---|
| Population | Dried Psilocybe cubensis mushroom samples (user-provided and laboratory-grown) |
| Key finding | qNMR spectroscopy provides a rapid, calibration-free method for simultaneously quantifying psilocybin and psilocin in dried Psilocybe cubensis, revealing substantial variability in alkaloid content and ratios across samples. |
Abstract
Psychedelic mushrooms of the Psilocybe genus contain the psychoactive tryptamines psilocybin and psilocin, compounds currently under clinical investigation for the treatment of depression and other psychiatric conditions. However, the accurate quantification of these alkaloids in fungal matrices remains analytically challenging. Here, we report an optimized extraction protocol and a robust, nondestructive quantification method based on quantitative nuclear magnetic resonance (qNMR) spectroscopy. Using a combination of 1H- and 31P NMR, we achieved simultaneous detection and quantification of psilocin and psilocybin in dried Psilocybe cubensis samples with high accuracy and reproducibility. Our method revealed significant variability in tryptamine content and psilocybin-to-psilocin ratios among user-provided and laboratory-grown samples, underscoring the potential influence of storage conditions on alkaloid stability. Compared with conventional chromatographic approaches, qNMR offers a rapid and calibration-free alternative for the routine analysis of psychedelic fungi. This approach may facilitate quality control in emerging clinical and regulatory contexts of psychedelic mushrooms.