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Rapid High-throughput Species Identification of Botanical Material Using Direct Analysis in Real Time High Resolution Mass Spectrometry
Published on: October 2, 2016
Investigating the Protonated Cannabinoid Dimer Detected in the Forensic Analysis of Cannabis by DART-MS: A Combined
Parandaman Arathala1, Benedetta Garosi1, Megan I Chambers2
1Department of Chemistry, Louisiana State University, Baton Rouge, Louisiana 70803, United States.
Abstract:
Direct analysis in real time-high-resolution mass spectrometry (DART-HRMS) enables the rapid chemical profiling of Cannabis samples. This approach reveals a prominent signal at nominal m/z 315, characteristic of protonated isomeric cannabinoids such as Δ9-tetrahydrocannabinol (Δ9-THC), cannabidiol (CBD), cannabichromene (CBC), Δ8-THC, and cannabicitran (CBT). Interestingly, the spectra of standards of these cannabinoids also display a peak at nominal m/z 629, corresponding to the protonated dimer species [2M + H]+. To elucidate the likely structures of these ions, density functional theory calculations were performed for protonated homo- and heterodimer combinations of the five cannabinoids. The calculations indicated that CBDH+••CBD, Δ9-THCH+••Δ9-THC, and Δ8-THCH+••CBC are the most stable. Population analysis calculations further revealed a temperature dependence, with Δ8-THCH+••CBC being the dominant species below 240 K, while CBDH+••CBD becomes the most abundant in the 240-800 K range. These findings imply that at a DART gas temperature of 623 K, the peak at m/z 629 detected in hemp, where CBD levels are high, is primarily attributable to CBDH+••CBD. Conversely, the population analysis studies showed that marijuana, which contains negligible CBD, would not be expected to exhibit a mass at m/z 629. Experimental DART-HRMS and field desorption (FD)-MS measurements of hemp and marijuana validated this prediction. The results support the conclusion that the peak at m/z 629 specifically observed in hemp samples is representative of the CBDH+••CBD adduct, as opposed to a natural product molecular marker of hemp, and it provides a rapid and reliable mass by which to distinguish hemp from marijuana by DART-HRMS.
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