AI Article Synopsis

  • The cultivation of low-Δ-THC hemp has led to an oversupply of CBD-rich products, prompting the rise of 'hemp-compliant' and 'semisynthetic' cannabinoids as legal alternatives to Δ-THC.
  • A study investigated 30 THC isomers and analogs for their potential to activate CB cannabinoid receptors, finding some compounds showed greater efficacy and potency than Δ-THC.
  • Variations in the composition of stereoisomers, such as 9(S)-HHC and 9(R)-HHC, affected the potency and efficacy of the cannabinoids, suggesting the need for monitoring these semisynthetic products to assess their potential harm compared to Δ-THC.

Article Abstract

Cultivation of industrial low-Δ-tetrahydrocannabinol (Δ-THC) hemp has created an oversupply of cannabidiol (CBD)-rich products. The fact that phytocannabinoids, including CBD, can be used as precursors to synthetically produce a range of THC variants-potentially located in a legal loophole-has led to a diversification of cannabis recreational drug markets. 'Hemp-compliant', 'hemp-derived' and 'semisynthetic' cannabinoid products are emerging and being advertised as (legal) alternatives for Δ-THC. This study included a large panel (n = 30) of THC isomers, homologs, and analogs that might be derived via semisynthetic procedures. As a proxy for the abuse potential of these compounds, we assessed their potential to activate the CB cannabinoid receptor with a β-arrestin2 recruitment bioassay (picomolar-micromolar concentrations). Multiple THC homologs (tetrahydrocannabihexol, THCH; tetrahydrocannabiphorol, THCP; tetrahydrocannabinol-C8, THC-C8) and THC analogs (hexahydrocannabinol, HHC; hexahydrocannabiphorol, HHCP) were identified that showed higher potential for CB activation than Δ-THC, based on either higher efficacy (E) or higher potency (EC). Structure-activity relationships were assessed for Δ-THC and Δ-THC homologs encompassing elongated alkyl chains. Additionally, stereoisomer-specific differences in CB activity were established for various THC isomers (Δ-THC, Δ-THC) and analogs (HHC, HHCP). Evaluation of the relative abundance of 9(S)-HHC and 9(R)-HHC epimers in seized drug material revealed varying epimeric compositions between batches. Increased abundance of the less active 9(S)-HHC epimer empirically resulted in decreased potency, but sustained efficacy for the resulting diastereomeric mixture. In conclusion, monitoring of semisynthetic cannabinoids is encouraged as the dosing and the relative composition of stereoisomers can impact the harm potential of these drugs, relative to Δ-THC products.

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http://dx.doi.org/10.1007/s00204-024-03769-4DOI Listing

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