4.6 Article

Direct In Vivo Analysis of CBD- and THC-Acid Cannabinoids and Classification of Cannabis Cultivars Using SpiderMass

Journal

METABOLITES
Volume 12, Issue 6, Pages -

Publisher

MDPI
DOI: 10.3390/metabo12060480

Keywords

water-assisted laser desorption/ionization; SpiderMass; cannabinoids; mass spectrometry; plants; in vivo

Funding

  1. University of Lille
  2. Inserm

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Cannabis and hemp-based products are increasingly popular and require rapid detection of phytocannabinoids. SpiderMass technology allows for in vivo detection, differentiation of cultivars, and analysis of distribution gradients within plants, making it a valuable analytical alternative for hemp analysis.
In recent years, cannabis and hemp-based products have become increasingly popular for recreational use, edibles, beverages, health care products, and medicines. The rapid detection and differentiation of phytocannabinoids is, therefore, essential to assess the potency and the therapeutic and nutritional values of cannabis cultivars. Here, we implemented SpiderMass technology for in vivo detection of cannabidiolic acid (CBDA) and Delta(9) -tetrahydrocannabinolicacid (Delta(9) -THCA), and other endogenous organic plant compounds, to access distribution gradients within the plants and differentiate between cultivars. The SpiderMass system is composed of an IR-laser handheld microsampling probe connected to a mass spectrometer through a transfer tube. The analysis was performed on different plant organs from freshly cultivated cannabis plants in only a few seconds. SpiderMass analysis easily discriminated the two acid phytocannabinoid isomers via MS/MS, and the built statistical models differentiated between four cannabis cultivars. Different abundancies of the two acid phytocannabinoids were found along the plant as well as between different cultivars. Overall, these results introduce direct analysis by SpiderMass as a compelling analytical alternative for rapid hemp analysis.

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