Origin of Δ9-Tetrahydrocannabinol Impurity in Synthetic Cannabidiol

合成大麻二酚中 Δ9-四氢大麻酚杂质的来源

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作者:Cinzia Citti, Fabiana Russo, Pasquale Linciano, Sarah Sylvana Strallhofer, Francesco Tolomeo, Flavio Forni, Maria Angela Vandelli, Giuseppe Gigli, Giuseppe Cannazza

Conclusions

The results suggested that the copresence of carbon dioxide and water from the air could be the key for creating the acidic environment responsible for the cyclization of CBD. These findings suggest that it might be appropriate to review the storage conditions indicated on the label of commercially available CBD.

Methods

In this study, synthetic and extracted CBD samples were analyzed by ultrahigh-performance liquid chromatography coupled to high-resolution mass spectrometry and the parameters that can be responsible of the conversion of CBD into THC were evaluated by an accelerated stability test.

Results

In synthetic and extracted CBD no trace of THC species was detected. In contrast, CBD samples stored in the dark at room temperature on the benchtop for 3 months showed the presence of such impurities. Experiments carried out under inert atmosphere in the absence of humidity or carbon dioxide led to no trace of THC over time even at high temperature. Conclusions: The results suggested that the copresence of carbon dioxide and water from the air could be the key for creating the acidic environment responsible for the cyclization of CBD. These findings suggest that it might be appropriate to review the storage conditions indicated on the label of commercially available CBD.

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