| Literature DB >> 34668704 |
Paolo Seccamani1, Chiara Franco1, Stefano Protti1, Alessio Porta1, Antonella Profumo1, Diego Caprioglio2, Stefano Salamone2, Barbara Mannucci3, Daniele Merli1,4.
Abstract
Cannabis is a plant with an astonishing ability to biosynthesize cannabinoids, and more than 100 molecules belonging to this class have been isolated. Among them in recent years cannabidiol (CBD) has received the interest of pharmacology as the major nonpsychotropic cannabinoid with many potential clinical applications. Although the reactivity of CBD has been widely investigated, only little attention has been given to the possible photodegradation of this cannabinoid, and the data available in the literature are outdated and, in some cases, conflicting. The aim of the present work is providing a characterization of the photochemical behavior of CBD in organic solvents, through a detailed GC-MS analyses, isolation, and NMR characterization of the photoproducts obtained.Entities:
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Year: 2021 PMID: 34668704 PMCID: PMC8765678 DOI: 10.1021/acs.jnatprod.1c00567
Source DB: PubMed Journal: J Nat Prod ISSN: 0163-3864 Impact factor: 4.050
Photophysics of CBD (2): Absorption Maxima (λabs) and Fluorescence Quantum Yield (λem)
| solvent | λabs (nm), ε (M–1 cm–1) | λem (nm), ΦF |
|---|---|---|
| MeCN | 208, 42 000 | 297, 0.008 |
| 275, 814 | ||
| MeOH | 210, 38 170 | 299, 0.012 |
| 275, 1014 | ||
| 207, 21 040 | 296, 0.006 | |
| 276, 746 |
4-Chloroanisole (ΦF = 0.019 in MeOH, λem = 273 nm) has been used as a reference.[16] The quantum yield values have been corrected for the refractive index of the solvent.
Figure 1(A) GC-MS chromatogram of 1.27 × 10–3 M CBD (2) in MeCN irradiated for 50 min (λ = 254 nm). The main photoproducts detected are Δ8-iso-THC (9, 39.7% yield, tR 25.77 min), DHD (5, 2.7% yield, tR 25.98 min), HHC (8, 4.3% yield, tR 26.15 min), Δ7-CBD (6, 7.2% yield, tR 26.5 min), Δ9-THC (1, 2.4% yield, tR 27.1 min). (B) GC-MS chromatogram of 1.27 × 10–3 M CBD (2) in MeOH irradiated for 50 min (λ = 254 nm). The main photoproducts detected are Δ8-iso-THC (9, 35.9% yield, tR 25.77 min), HHC (8, 2.0% yield, tR 26.15 min), Δ7-CBD (6, 18.3% yield, tR 26.5 min), Δ9-THC (1, 1.3%, yield, tR 27.1 min), MeO-CBE (14, 7.0% yield, tR 28.0 min), α-MeO (15, 0.6% yield, tR 25.35 min), β-MeO (16, 25.0% yield, tR 29.16 min). (C) GC-MS chromatogram of 1.27 × 10–3 M CBD (2) in hexane irradiated for 50 min (λ = 254 nm). The main photoproducts detected are Δ8-iso-THC (9, 24.4% yield, tR 25.77 min), DHD (5, 5.9% yield, tR 25.98 min), HHC (8, 1.6% yield, tR 26.15 min), Δ7-CBD (6, 6.2% yield, tR 26.5 min), Δ9-THC (1, 11.3% yield, tR 27.1 min). It should be noticed that the peaks at tR 26.88 min (in chromatogram A) and 27.22 (in chromatogram C) were not identified either with the available libraries or by comparison of the synthesized standards.
Figure 2Photodegradation of CBD (2) in (A) MeCN, (B) MeOH, and (C) n-hexane.
Scheme 1Photoreactivity of CBD (2) Observed in the Present Investigation
Thermal Degradation (20°C) of CBD, at 10 g/L in the Described Solvents: The Residual Amount of CBD (2) (%) and (in Parentheses) Its Concentration Decreases
| solvent | 4 months | 8 months | 16 months |
|---|---|---|---|
| MeCN | 94.3% (−5.7%) | 80.2% (−19.8%) | 22.2% (−77.8%) |
| MeOH | 93.1% (−6.9%) | 82.1% (−17.9%) | 38.8% (−61.1%) |
| 96.5% (−3.5%) | 94.2% (−5.8%) | 46.5% (−53.5%) | |
| EtOH | 92.6% (−7.4%) | 86.2% (−13.8%) | 37.7% (−62.3%) |