Validation of a QuEChERS–UHPLC–MS/MS method for the determination of aflatoxins and ochratoxin A in cannabis flowers: Application to regulated and non-regulated products

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ID: 327529
2026
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Abstract
Abstract Background Cannabis sativa flowers are a complex plant matrix that poses significant analytical challenges due to their chemical composition and the low regulatory limits established for consumer safety. Objective To optimize and validate a QuEChERS–UHPLC–MS/MS method for the simultaneous determination of aflatoxins B1, B2, G1, G2, and ochratoxin A in Cannabis sativa flowers. Methods Critical parameters influencing extraction efficiency were systematically evaluated through a 3³ factorial design, including solvent acidification, extraction time, and evaporation temperature. Optimal conditions were achieved using acetonitrile acidified with 0.1% v/v formic acid, 15 min vortex extraction, and evaporation below 50 °C. Results Under these conditions, recoveries ranged between 90–109%, with precision (RSD 2.5–8.3%) and trueness demonstrating satisfactory method performance. Linearity was confirmed with R² > 0.99, and LOQs of 1.0 µg/kg for aflatoxins and 5.0 µg/kg for ochratoxin A, consistent with European Pharmacopoeia requirements. Application to 30 cannabis flower samples revealed that all commercial products complied with international maximum residue limits (MRLs), whereas some non-regulated samples exceeded the total aflatoxin limit (4 µg/kg), mainly due to elevated aflatoxin B2. Conclusion These findings provide the first data on mycotoxin occurrence in cannabis flowers from Uruguay and highlight the importance of monitoring non-regulated products, emphasizing the need for appropriate quality-control strategies. Highlights The proposed method provides a simple, robust, and high-throughput approach for routine quality control of cannabis flowers.
Reference Key
openalex_W7207859440 Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors Mónica Pereira, Florencia Tissot, Ignacio Machado
Journal journal of aoac international
Year 2026
DOI
10.1093/jaoacint/qsag086
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