| Literature DB >> 32326129 |
Cinzia Ingallina1, Anatoly P Sobolev2, Simone Circi1, Mattia Spano1, Caterina Fraschetti1, Antonello Filippi1, Antonella Di Sotto3, Silvia Di Giacomo3, Giulia Mazzoccanti1, Francesco Gasparrini1, Deborah Quaglio1, Enio Campiglia4, Simone Carradori5, Marcello Locatelli5, Giuliana Vinci6, Mattia Rapa6, Salvatore Ciano6, Anna Maria Giusti7, Bruno Botta1, Francesca Ghirga8, Donatella Capitani2, Luisa Mannina1,2.
Abstract
The chemical composition of the inflorescences from four Cannabis sativa L. monoecious cultivars (Ferimon, Uso-31, Felina 32 and Fedora 17), recently introduced in the Lazio Region, was monitored over the season from June to September giving indications on their sensorial, pharmaceutical/nutraceutical proprieties. Both untargeted (NMR) and targeted (GC/MS, UHPLC, HPLC-PDA/FD and spectrophotometry) analyses were carried out to identify and quantify compounds of different classes (sugars, organic acids, amino acids, cannabinoids, terpenoids, phenols, tannins, flavonoids and biogenic amines). All cultivars in each harvesting period showed a THC content below the Italian legal limit, although in general THC content increased over the season. Citric acid, malic acid and glucose showed the highest content in the late flowering period, whereas the content of proline drastically decreased after June in all cultivars. Neophytadiene, nerolidol and chlorogenic acid were quantified only in Felina 32 cultivar, characterized also by a very high content of flavonoids, whereas alloaromadendrene and trans-cinnamic acid were detected only in Uso-31 cultivar. Naringenin and naringin were present only in Fedora 17 and Ferimon cultivars, respectively. Moreover, Ferimon had the highest concentration of biogenic amines, especially in July and August. Cadaverine was present in all cultivars but only in September. These results suggest that the chemical composition of Cannabis sativa L. inflorescences depends on the cultivar and on the harvesting period. Producers can use this information as a guide to obtain inflorescences with peculiar chemical characteristics according to the specific use.Entities:
Keywords: Cannabis sativa L.; cannabinoids; inflorescences; metabolic profile; monoecious cultivars; multimethodological analysis
Year: 2020 PMID: 32326129 PMCID: PMC7221798 DOI: 10.3390/molecules25081908
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Metabolites identified in the 600.13 MHz 1 H-NMR spectra of the Bligh-Dyer hydroalcoholic extracts of Cannabis sativa L. inflorescences dissolved in 400 mM phosphate buffer/D2O containing TSP 1 mM.
| Compound | Assignment | 1H (ppm) | Multiplicity [J(Hz)] | 13C (ppm) |
|---|---|---|---|---|
|
| ||||
| α- | CH-3 | 4.14 | 83.1 | |
| CH-5 | 4.07 * | 82.6 | ||
| β- | CH-3 | 4.12 | 76.9 | |
| CH-4 | 4.12 | 75.9 | ||
| CH-5 | 3.85 | 81.7 | ||
| β- | CH-3 | 3.81 | 67.1 | |
| CH-5 | 4.05 * | 66.8 | ||
| CH2-6,6′ | 3.71; 4.03 | 64.4 | ||
| α-Galactose | CH-1 | 5.28 | d [3.8] | 90.2 |
| CH-2 | 3.78 | |||
| CH-3 | 3.83 | |||
| CH-4 | 3.87 | |||
| CH-5 | 4.08 | |||
| β-Galactose | CH-1 | 4.60 | d [8.0] | 97.4 |
| CH-2 | 3.51 | |||
| CH-3 | 3.67 | |||
| CH-4 | 3.95 | |||
| CH-5 | 4.05 | |||
| CH-6 | 3.78 | |||
| α-Glucose | CH-1 | 5.25 * | d [3.8] | 93.1 |
| CH-2 | 3.56 | 72.2 | ||
| CH-3 | 3.74 | 73.8 | ||
| CH-4 | 3.45 | 70.7 | ||
| CH-5 | 3.84 | 72.5 | ||
| CH2-6,6′ | 3.86; 3.79 | 60.1 | ||
| β-Glucose | CH-1 | 4.66 * | d [8.0] | 97.0 |
| CH-2 | 3.27 | 75.2 | ||
| CH-3 | 3.51 | 76.8 | ||
| CH-4 | 3.43 | 70.7 | ||
| CH-5 | 3.48 | 75.1 | ||
| CH2-6,6′ | 3.90; 3.74 | 61.9 | ||
| Myo-Inositol | CH-2,5 | 3.56 | ||
| CH-3,6 | 3.65 | |||
| CH-4 | 3.30 * | 74.2 | ||
| Sucrose | CH-1 (Glucose) | 5.41 * | d [3.8] | 93.3 |
| CH-2 | 3.57 | 71.8 | ||
| CH-3 | 3.78 | 73.6 | ||
| CH-4 | 3.49 | 70.2 | ||
| CH-5 | 3.85 | 73.5 | ||
| CH2-6 | 3.83 | 63.5 | ||
| CH2-1′ (Fructose) | 3.69 | d [3.3] | 60.6 | |
| CH-3′ | 4.23 | d [8.7] | 77.5 | |
| CH-4′ | 4.06 | t [8.7] | 75.1 | |
| CH-5′ | 3.9 | 82.4 | ||
| CH2-6′ | 3.82 | 61.2 | ||
| Raffinose | CH-1 (Galactose) | 5.01 | d [3.8] | 99.4 |
| CH-2 | 3.85 | |||
| CH-3 | 3.91 | |||
| CH-4 | 4.03 | |||
| CH-1 (Glucose) | 5.44 | d [3.9] | ||
| CH-2 | 3.59 | |||
| CH-3 | 3.78 | |||
| CH-5 | 4.08 | |||
| CH-3 (Fructose) | 4.24 | d [8.7] | ||
|
| ||||
| Acetic acid | CH3 | 1.93 | s | 24.7 |
| COOH | 180.3 | |||
| Citric acid | α,γ-CH | 2.56 * | d [15.9] | 46.2 |
| α,γ′-CH | 2.69 | 46.2 | ||
| β-C | 74.2 | |||
| 1,5-COOH | 177.7 | |||
| 6-COOH | 180.2 | |||
| Formic acid | HCOOH | 8.47 * | s | |
| Fumaric Acid | α,β-CH=CH | 6.53 | s | |
| Malic acid | α-CH | 4.31 * | dd [9.8; 3.2] | 71.4 |
| β-CH | 2.70 | dd [15.6; 3.2] | 43.9 | |
| β′-CH | 2.39 | dd [15.6; 9.8] | 43.9 | |
| Succinic acid | α,β-CH2 | 2.42 * | s | 35.2 |
|
| ||||
| Alanine | α-CH | 3.81 | 51.6 | |
| β-CH3 | 1.49 * | d [7.3] | 17.2 | |
| COOH | 174.5 | |||
| Asparagine | α-CH | 4.02 | 52.3 | |
| β,β′-CH2 | 2.89; 2.97 * | 35.8 | ||
| Aspartate | α-CH | 3.91 | 52.3 | |
| β,β′-CH2 | 2.72; 2.82 * | dd [3.9; 17.4] | 37.5 | |
| γ-Aminobutyrate | α-CH2 | 2.31 * | t [7.4] | 37.2 |
| β-CH2 | 1.92 | 24.6 | ||
| γ-CH2 | 3.04 | t [7.6] | 40.2 | |
| Glutamine | α-CH | 3.78 | 55.9 | |
| β,β′-CH2 | 2.18 | m | 27.3 | |
| γ-CH | 2.46 * | m | 31.8 | |
| Isoleucine | α-CH | 3.69 | ||
| β-CH | 1.98 | |||
| γ-CH3 | 1.02 * | d [7.0] | 15.8 | |
| δ-CH3 | 0.94 | |||
| Leucine | α-CH | 3.77 | ||
| β-CH2 | 1.74 | |||
| γ-CH | 1.71 | |||
| δ-CH3 | 0.97 | 23.1 | ||
| δ′-CH3 | 0.96 | 22.0 | ||
| Phenylalanine | CH-2,6 | 7.34 | 130.5 | |
| CH-4 | 7.38 | 128.7 | ||
| CH-3,5 | 7.43 * | m | 130.2 | |
| Proline | α-CH | 4.14 | 62.4 | |
| γ-CH2 | 2.01 * | m | 24.9 | |
| Threonine | α-CH | 3.62 | 61.4 | |
| β-CH | 4.28 | 68.1 | ||
| γ-CH3 | 1.34 * | d [6.6] | 18.9 | |
| Tryptophan | CH-4 | 7.71 | d [7.8] | 119.6 |
| CH-7 | 7.52 * | d [7.8] | 113.0 | |
| Tyrosine | CH-3,5 | 7.19 | 131.7 | |
| CH-2,6 | 6.90 | 116.9 | ||
| Valine | α-CH | 3.63 | ||
| β-CH | 2.28 | 30.1 | ||
| γ-CH3 | 1.00 | d [7.03] | 17.8 | |
| γ′-CH3 | 1.05 * | d [7.03] | 19.1 | |
|
| ||||
| Choline | +N(CH3)3 | 3.21 * | s | 54.8 |
| Trigonelline | CH-1 | 9.11 * | s | |
| CH-3,5 | 8.84 | |||
| CH-4 | 8.11 |
Asterisks (*) indicate signals selected for integration.
Figure 1UHPLC chromatograms of inflorescences ethanol extracts from: (a) Uso-31 cultivar; (b) Felina 32 cultivar; (c) Ferimon cultivar; (d) Fedora 17 cultivar. For peaks identification, the chromatogram of a six-component cannabinoids standard (1–6) mixture has been carried out (bottom).
UHPLC cannabinoids concentration in Ferimon, Uso-31, Felina 32 and Fedora 17 cultivars over the season. Results were reported as % (w/w of dried sample) ± SD (standard deviation), n = 5.
| Cultivar | Harvesting Period | CBDV | CBG | CBD | CBN | THC | CBC |
|---|---|---|---|---|---|---|---|
| Ferimon | June | 0.0100 ± 0.0004 | 0.0210 ± 0.0008 | 0.3800 ± 0.0097 | 0.0030 ± 0.0001 | 0.0220 ± 0.0006 | 0.0400 ± 0.0014 |
| July | - | 0.0310 ± 0.0008 | 0.4420 ± 0.0103 | - | 0.0300 ± 0.0012 | - | |
| August | 0.0200 ± 0.0008 | 0.0410 ± 0.0013 | 0.5010 ± 0.0131 | - | 0.0320 ± 0.0011 | - | |
| September | 0.0300 ± 0.0007 | 0.0410 ± 0.0015 | 0.7010 ± 0.0185 | 0.0030 ± 0.0001 | 0.0410 ± 0.0014 | 0.0500 ± 0.0020 | |
| Uso-31 | June | 0.0030 ± 0.0001 | 0.0410 ± 0.0009 | 0.2700 ± 0.0057 | 0.0040 ± 0.0001 | 0.0200 ± 0.0004 | 0.0400 ± 0.0013 |
| July | 0.0080 ± 0.0002 | 0.0200 ± 0.0007 | 0.4610 ± 0.0093 | - | 0.0800 ± 0.0021 | 0.1200 ± 0.0024 | |
| August | 0.0210 ± 0.0005 | 0.0400 ± 0.0009 | 0.6500 ± 0.0130 | - | 0.0800 ± 0.0020 | - | |
| September | 0.0320 ± 0.0008 | 0.0430 ± 0.0010 | 0.8400 ± 0.0169 | - | 0.0910 ± 0.0021 | - | |
| Felina 32 | June | 0.0500 ± 0.0010 | 0.0300 ± 0.0009 | 0.8120 ± 0.0171 | - | 0.0600 ± 0.0019 | 0.0700 ± 0.0023 |
| July | 0.2800 ± 0.0084 | 0.0610 ± 0.0018 | 1.1300 ± 0.0285 | - | 0.0830 ± 0.0028 | - | |
| August | 0.5000 ± 0.0101 | 0.3100 ± 0.0093 | 1.4100 ± 0.0284 | 0.0310 ± 0.0010 | 0.0800 ± 0.0019 | 0.0500 ± 0.0018 | |
| September | 0.0810 ± 0.0026 | 0.2200 ± 0.0065 | 1.1400 ± 0.0295 | 0.0400 ± 0.0093 | 0.0730 ± 0.0024 | - | |
| Fedora 17 | September | 0.1200 ± 0.0032 | 0.0410 ± 0.0013 | 2.0200 ± 0.0405 | - | 0.0700 ± 0.0019 | - |
GC-MS terpenoids content in Bligh-Dyer organic extracts from inflorescences of Ferimon, Uso-31, Felina 32 and Fedora 17 cultivars harvested in June and September. Results were expressed as [area percentage] mean ± SD (standard deviation), n = 3.
| Terpenoids | Ferimon | Uso-31 | Felina 32 | Fedora 17 | |||
|---|---|---|---|---|---|---|---|
| June | September | June | September | June | September | September | |
| Caryophyllene E | 15.2 ± 0.49 | 28.0 ± 2.00 | 6.3 ± 0.48 | 11.0 ± 0.49 | 16.4 ± 0.45 | 25.0 ± 0.49 | 20.0 ± 0.49 |
| - | - | - | - | 1.9 ± 0.05 | 4.2 ± 0.25 | - | |
| Humulene | 7.5 ± 0.32 | 9.0 ± 0.47 | 1.3 ± 0.04 | 4.7 ± 0.23 | 10.9 ± 0.45 | 16.7 ± 0.50 | 5.0 ± 0.25 |
| Alloaromadendrene | - | - | 3.2 ± 0.14 | - | - | - | |
| γ-Muurolene | - | - | 1.6 ± 0.46 | - | - | - | |
| β-Selinene | - | - | - | 3.9 ± 0.14 | 3.6 ± 0.15 | 8.3 ± 0.50 | 5.0 ± 0.23 |
| α-Selinene | - | - | - | 3.2 ± 0.15 | 1.9 ± 0.06 | 4.2 ± 0.20 | 5.0 ± 0.23 |
| Nerolidol | - | - | - | - | 3.6 ± 0.14 | - | - |
| Caryophyllene oxide | 50.0 ± 2.48 | 49.0 ± 2.52 | 72.2 ± 3.48 | 46.4 ± 2.30 | 10.9 ± 0.47 | 25.0 ± 1.20 | 45.0 ± 1.60 |
| Humulene epoxide | 10.6 ± 0.49 | 14.0 ± 0.39 | - | 11.0 ± 0.45 | 5.4 ± 0.40 | 8.3 ± 0.45 | 10.0 ± 0.35 |
| α-Caryophylladienol | 6.1 ± 0.25 | - | - | 6.3 ± 0.42 | - | 8.3 ± 0.44 | 10.0 ± 0.38 |
| Clovanediol | 4.5 ± 0.28 | - | - | 5.5 ± 0.26 | - | - | - |
| Neophytadiene | - | - | - | - | 5.4 ± 0.38 | - | - |
| Phytol | 6.1 ± 0.26 | - | 20.2 ± 1.00 | 3.2 ± 0.13 | 40 ± 1.90 | - | - |
Total polyphenols, tannins and flavonoids content in the hydroalcoholic (HA) and organic (O) Bligh-Dyer extracts obtained from the June and September harvested inflorescences of Ferimon, Uso-31, Felina 32 and Fedora 17 cultivars. Values were expressed as [mg/g of fresh sample] mean ± SD (standard deviation), n = 6.
| Total Polyphenols | Total Tannins | Total Flavonoids | ||||
|---|---|---|---|---|---|---|
| [mg TAE/g] | [mg TAE/g] | [mg QE/g] | ||||
| HA | O | HA | O | HA | O | |
|
| ||||||
| June | 1.75 ± 0.01 §,c | 0.95 ± 0.03 §,b | 0.90 ± 0.02 §,c | 0.32 ± 0.02 §,b | 3.02 ± 0.03 §,c | 0.47 ± 0.01 §,b |
| September | 0.78 ± 0.06 *,§,b,c,d | 0.71 ± 0.02 | 0.39 ± 0.02 * | 0.18 ± 0.01 * | 1.03 ± 0.03 * | 0.67 ± 0.01 * |
|
| ||||||
| June | 2.11 ± 0.03 §,a,c,d | 0.52 ± 0.05 | 0.89 ± 0.03 §,c | 0.25 ± 0.01 | 4.07 ± 0.03 §,a,c | 0.30 ± 0.03 |
| September | 1.78 ± 0.02 * | 1.11 ± 0.02 *,§,a | 1.00 ± 0.01 §,a | 0.68 ± 0.04 *,§,a | 2.44 ± 0.01 *,§,a,c | 0.99 ± 0.01 *,§,a,d |
|
| ||||||
| June | 1.51 ± 0.03 | 1.69 ± 0.05 §,a,b | 0.71 ± 0.01 | 0.97 ± 0.03 §,a,b | 1.63 ± 0.03 | 6.27 ± 0.05 §,a,b |
| September | 4.00 ± 0.01 * | 4.67 ± 0.03 *,§,a,b,d | 4.00 ± 0.03 *,§,a,b,d | 2.87 ± 0.03 *,§,a,b,d | 1.16 ± 0.01 * | 8.72 ± 0.05 *,§,a,b,d |
|
| ||||||
| September | 1.86 ± 0.04 §,c | 1.54 ± 0.02 §,a,b | 0.94 ± 0.01 §,a | 0.58 ± 0.02 §,a,b | 3.82 ± 0.02 §,a,b,c | 0.57 ± 0.03 |
TAE, tannic acid equivalents; QE, quercetin equivalents. * p < 0.01, significantly different from the level in the same cultivar in June (t-Student Test). § p < 0.05, significantly different than the other cultivars in the same harvesting period (one-way ANOVA, followed by Bonferroni’s Multiple Comparison Post Test). a vs. Ferimon. b vs. Uso31. c vs. Felina 32. d vs. Fedora 17.
HPLC-PDA phenolic composition of the organic (O) and hydroalcoholic (HA) Bligh-Dyer extracts from Ferimon, Uso-31, Felina 32 and Fedora 17 cultivar inflorescences harvested in June and September. Values were expressed as [μg/mg of fresh sample] mean ± SD (standard deviation), n = 3.
| Compound | Harvesting | Ferimon | Uso-31 | Felina 32 | Fedora 17 | ||||
|---|---|---|---|---|---|---|---|---|---|
| HA | O | HA | O | HA | O | HA | O | ||
| Carvacrol | June | 0.044 ± 0.004 | 0.025 ± 0.002 | 0.123 ± 0.010 | 0.036 ± 0.003 | - | 0.031 ± 0.003 | - | - |
| September | 0.018 ± 0.002 | 0.028 ± 0.002 | 0.059 ± 0.005 | 0.050 ± 0.005 | 0.138 ± 0.015 | 0.127 ± 0.012 | 0.062 ± 0.006 | 0.055 ± 0.004 | |
| Catechin | June | 0.450 ± 0.044 | 0.021 ± 0.002 | - | - | 0.047 ± 0.003 | - | - | - |
| September | 0.194 ± 0.015 | - | 0.782 ± 0.078 | - | 3.723 ± 0.357 | 0.107 ± 0.009 | 0.657 ± 0.064 | - | |
| Rutin | June | 0.872 ± 0.094 | 0.008 ± 0.001 | 0.666 ± 0.068 | - | 0.716 ± 0.074 | 0.026 ± 0.002 | - | - |
| September | 0.436 ± 0.038 | - | 0.598 ± 0.049 | - | 3.787 ± 0.280 | - | 0.660 ± 0.066 | 0.018 ± 0.002 | |
| Quercetin | June | 0.047 ± 0.005 | 0.007 ± 0.001 | 0.069 ± 0.007 | - | 0.046 ± 0.004 | - | - | - |
| September | 0.028 ± 0.002 | - | 0.048 ± 0.005 | - | 0.125 ± 0.013 | - | 0.033 ± 0.003 | - | |
| Naringenin | June | - | - | - | - | - | - | - | - |
| September | - | - | - | - | - | - | - | 0.011 ± 0.001 | |
| Naringin | June | - | 0.007 ± 0.001 | - | - | - | - | - | - |
| September | - | - | - | - | - | - | - | - | |
| June | - | - | 0.469 ± 0.043 | - | 0.081 ± 0.009 | - | - | - | |
| September | - | - | - | - | 0.425 ± 0.038 | 0.015 ± 0.001 | 0.055 ± 0.005 | - | |
| June | - | - | - | - | - | - | - | - | |
| September | - | - | - | - | - | - | 0.098 ± 0.008 | - | |
| Syringic acid | June | - | - | - | - | - | - | - | - |
| September | - | - | - | - | 0.110 ± 0.010 | - | 0.020 ± 0.001 | - | |
| June | - | - | 0.038 ± 0.003 | - | - | - | - | - | |
| September | - | - | - | - | - | - | - | - | |
| Chlorogenic acid | June | - | - | - | - | 0.320 ± 0.032 | - | - | - |
| September | - | - | - | - | - | - | - | - | |
| June | - | - | - | - | 0.023 ± 0.001 | - | - | - | |
| September | 0.004 ± 0.001 | - | - | - | 0.092 ± 0.008 | 0.029 ± 0.003 | 0.015 ± 0.001 | - | |
| 3-OH-benzoic acid | June | - | - | - | - | - | - | - | - |
| September | - | - | - | - | 0.072 ± 0.007 | - | 0.044 ± 0.004 | - | |
| 3-OH-4-MeO-benzaldehyde | June | - | - | - | - | - | - | - | - |
| September | - | - | 0.026 ± 0.002 | - | 0.565 ± 0.043 | - | 0.060 ± 0.006 | - | |
Figure 2HPLC-FD chromatographic profile of biogenic amines: (a) mixture of standard solutions (bottom trace) used for peak identification, (b) biogenic amines identified in Ferimon aqueous extract from August (upper trace). Biogenic amines: 1. β-PEA, 2. PUT, 3. CAD, 4. HIS, 5. Internal standard (IS), 6. TYM, 7. SPD, 8. SPM.
HPLC-FD quantification of biogenic amines in the aqueous extracts of Ferimon, Uso-31, Felina 32 and Fedora 17 cultivars over the season. Results were expressed as [mg/Kg of fresh sample] mean ± SD (standard deviation), n = 3.
| Cultivar | PUT | CAD | TYM | SPD | SPM | Total BAs |
|---|---|---|---|---|---|---|
|
| ||||||
| June | 27.97 ± 4.34 | - | - | 35.53 ± 4.08 | 14.44 ± 2.01 | 77.94 ± 9.83 |
| July | 81.33 ± 7.95 | - | 13.20 ± 1.91 | 55.48 ± 1.00 | 59.68 ± 5.19 | 209.69 ± 15.84 |
| August | 102.72 ± 5.92 | - | 2.19 ± 1.41 | 65.71 ± 5.48 | 40.93 ± 2.36 | 211.56 ± 14.86 |
| September | 12.79 ± 1.27 | 5.54 ± 0.05 | 9.10 ± 0.87 | 38.65 ± 0.94 | 27.93 ± 1.29 | 94.00 ± 1.14 |
|
| ||||||
| June | 55.93 ± 4.27 | - | 6.35 ± 3.16 | 41.53 ± 0.41 | 15.13 ± 0.86 | 118.94 ± 8.06 |
| July | 61.64 ± 7.61 | - | 15.53 ± 1.79 | 43.80 ± 3.48 | 54.82 ± 5.84 | 175.78 ± 17.63 |
| August | 69.90 ± 6.35 | - | 19.22 ± 1.62 | 31.23 ± 0.08 | 27.86 ± 0.73 | 148.22 ± 5.06 |
| September | 10.51 ± 0.11 | 5.86 ± 0.05 | 0.44 ± 0.04 | 4.45 ± 0.02 | 4.41 ± 0.10 | 25.67 ± 0.23 |
|
| ||||||
| June | 53.79 ± 7.79 | - | 1.32 ± 1.28 | 51.33 ± 4.74 | 18.36 ± 0.99 | 124.79 ± 14.59 |
| July | 16.06 ± 1.75 | - | 8.08 ± 1.04 | 35.53 ± 1.66 | 30.55 ± 1.34 | 90.22 ± 4.32 |
| August | 49.72 ± 2.69 | - | 1.00 ± 1.31 | 26.91 ± 2.35 | 40.38 ± 2.67 | 118.01 ± 6.93 |
| September | 75.53 ± 4.85 | 6.64 ± 0.40 | 13.71 ± 0.33 | 31.77 ± 1.99 | 33.63 ± 1.96 | 161.28 ± 8.67 |
|
| ||||||
| September | 18.46 ± 0.77 | 5.98 ± 0.07 | 7.05 ± 1.52 | 42.09 ± 5.59 | 34.82 ± 4.83 | 108.40 ± 12.51 |
Figure 3Histograms resulting from the quantitative NMR spectroscopic analysis of some metabolites present in the Bligh-Dyer hydroalcoholic extracts of hemp inflorescences. (A). Sugars; (B). Organic acids; (C). Amino acids; (D). Other metabolites.