Thanks to Lex Pelger and his wonderful Linked In Newsletter ( substack) for spotting this.
Abstract
Semisynthetic cannabinoids (SSCs) are a novel group of psychoactive substances obtained by chemical modification of phytocannabinoids such as Δ9-THC and CBD. Since 2022, their prevalence has rapidly increased on the European illicit drug market, including Poland, where they are mainly detected in cannabis-derived products (plant material, resinous products, e-liquids, and edibles). In this study, 1186 cannabis-type samples seized in Poland (2022-2024) were analyzed at the IFR using GC-MS, UHPLC-PDA, and LC-QTOF/MS. SSCs were found in 113 samples (9.5%), mostly in plant material and resinous products. The predominant compound was hexahydrocannabinol (HHC), consistently detected as a mixture of two epimers, with (9R)-HHC prevailing (typical (9R):(9S) ratio 2.0-2.8:1). In most cases, SSCs were applied to plant material with low Δ9-THC content, mainly Chemotypes II and III (approximately 60% of all cases), indicating intentional enrichment of material with limited psychoactive potential. Following legislative changes introduced in Poland in 2023, identifications of controlled SSCs decreased; however, the diversity of noncontrolled compounds increased. Co-occurrence of multiple SSCs, their structural similarity, stereoisomerism, and limited availability or delays in obtaining certified reference standards may complicate routine analysis. Each analytical technique presents specific limitations: GC-MS can cause degradation of acetate forms of SSCs; UHPLC-PDA faces challenges in differentiating compounds with similar UV spectra, whereas LC-QTOF/MS cannot fully distinguish structural or stereoisomeric forms. This study highlights the dynamic nature of the SSC market and the importance of advanced, multimethod analytical approaches for reliable identification.
Keywords: cannabis‐derived products; forensic analysis; legal classification; semisynthetic cannabinoids; stereoisomers.
© 2025 John Wiley & Sons Ltd.
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Full paper at
https://pubmed.ncbi.nlm.nih.gov/41386669/








