| Literature DB >> 31703419 |
Daniil N Olennikov1, Aydan I Gadimli2, Javanshir I Isaev2, Nina I Kashchenko1, Alexey S Prokopyev3, Tatyana N Kataeva3, Nadezhda K Chirikova4, Cecile Vennos5.
Abstract
The members of Gentiana genus are widely distributed in the Caucasus region where they are used as phytoremedies, but they still have not been studied for their chemical composition and bioactivity. High-performance liquid chromatography with diode array and electrospray triple quadrupole mass detection (HPLC-DAD-ESI-QQQ-MS) was used to investigate metabolites of herb and roots of six gentians (Gentiana asclepiadea, G. cruciata, G. gelida, G. paradoxa, G. pneumonanthe, G. septemfida) grown in the Caucasus. In total, 137 compounds were found including three carbohydrates, 71 iridoid glycosides (mostly loganic acid), loganin, swertiamarin, gentiopicroside and sweroside derivatives, 40 flavones C-, O-, C,O-glycosides (such as luteolin, apigenin, chrysoeriol, and acacetin derivatives), two phenolic O-glycosides, five hydroxycinnamates, eight xanthones, and seven triterpene glycosides. Most of these compounds were identified in gentian samples for the first time. Quantitative differences were found in levels of seven iridoid glycosides, nine glycosylflavones, and two xanthones obtained by HPLC-DAD assay. The gentian extracts were evaluated for their radical-scavenging properties against DPPH and superoxide anion radicals, lipid peroxidation inhibition, and α-amylase/α-glycosidase inhibition. The herb extracts showed higher activity than root extracts. Positive correlations were found between the content of quantified phenolics and antioxidant and digestive enzymes inhibiting activity. The findings presented in our work suggest that the Caucasian gentians are a good source of bioactive phytocompounds with antioxidant and antidiabetic potential.Entities:
Keywords: Gentiana; LC-MS profile; amylase/glycosidase inhibition; antioxidant activity; flavone glycosides; iridoid glycosides; xanthones
Year: 2019 PMID: 31703419 PMCID: PMC6918269 DOI: 10.3390/metabo9110271
Source DB: PubMed Journal: Metabolites ISSN: 2218-1989
Figure 1Caucasian gentians studied in present work: Gentiana asclepiadea (a), G. cruciata (b), G. gelida (c), G. paradoxa (d), G. pneumonanthe (e), G. septemfida (f).
Compounds 1–137 found in the herb and roots of six Caucasian Gentiana species.
| No | Compound | Found in Gentians 1 | ||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Herb | Roots | |||||||||||||
| GAS | GCR | GGE | GPA | GPN | GSE | GAS | GCR | GGE | GPA | GPN | GSE | |||
| Carbohydrates | ||||||||||||||
|
| 2.78 | + | + | + | + | + | + | + | + | + | + | + | + | |
|
| 2.83 | + | + | + | + | + | + | + | + | + | + | + | + | |
|
| 3.17 | Hexose L | + | + | + | + | + | + | ||||||
| Iridoid glucosides | ||||||||||||||
| Loganic acid derivatives | ||||||||||||||
|
| 8.65 | Loganic acid S | + | [ | + | + | + | [ | + | [ | + | + | + | + |
|
| 7.10 | Loganic acid-6′- | + | |||||||||||
|
| 13.79 | Loganic acid-2′- | + | + | ||||||||||
|
| 15.22 | Loganic acid-6′- | + | + | + | + | ||||||||
|
| 15.57 | Loganic acid- | + | |||||||||||
|
| 13.84 | Loganic acid- | + | |||||||||||
|
| 14.55 | Loganic acid- | + | |||||||||||
|
| 15.70 | Loganic acid- | + | + | ||||||||||
|
| 16.06 | Loganic acid- | + | + | ||||||||||
|
| 19.16 | Loganic acid- | + | + | + | |||||||||
|
| 15.54 | Loganic acid- | + | |||||||||||
| Loganin derivatives | ||||||||||||||
|
| 9.51 | Loganin S | + | + | + | + | + | + | + | + | + | + | + | + |
|
| 16.19 | Loganin- | + | |||||||||||
|
| 17.00 | Loganin- | + | + | ||||||||||
| Swertiamarin derivatives | ||||||||||||||
|
| 10.11 | Swertiamarin S | + | [ | [ | + | [ | [ | [ | [ | + | + | [ | + |
|
| 11.28 | Swertiamarin isomer L | + | + | + | |||||||||
|
| 9.58 | Swertiamarin-6′- | + | |||||||||||
|
| 5.91 | Swertiamarin- | + | |||||||||||
|
| 6.16 | Swertiamarin- | + | |||||||||||
|
| 21.94 | Swertiamarin- | + | |||||||||||
|
| 16.26 | Swertiamarin- | + | + | ||||||||||
|
| 16.84 | Swertiamarin- | + | + | ||||||||||
|
| 17.56 | Swertiamarin- | + | |||||||||||
|
| 17.64 | Swertiamarin- | + | + | + | + | ||||||||
|
| 18.08 | Swertiamarin- | + | + | + | + | ||||||||
|
| 19.18 | Gelidoside (rindoside) S | + | + | [ | + | + | + | + | + | ||||
|
| 18.10 | Swertiamarin- | + | + | + | |||||||||
|
| 18.68 | Swertiamarin- | + | + | + | + | ||||||||
| Gentiopicroside derivatives | ||||||||||||||
|
| 11.21 | Gentiopicroside S | + | [ | [ | + | [ | [ | [ | [ | + | + | [ | + |
|
| 13.71 | Gentiopicroside isomer L | + | |||||||||||
|
| 9.65 | Gentiopicroside-6′- | [ | + | + | + | + | |||||||
|
| 8.69 | Gentiopicroside-di- | + | + | + | |||||||||
|
| 15.51 | Gentiopicroside- | + | |||||||||||
|
| 15.69 | Gentiopicroside- | + | |||||||||||
|
| 17.10 | Amarogentin S | + | |||||||||||
| Sweroside derivatives | ||||||||||||||
|
| 11.26 | Sweroside S | + | [ | + | + | [ | [ | [ | [ | + | + | [ | + |
|
| 11.55 | Sweroside isomer L | + | + | + | + | + | + | + | + | + | + | ||
|
| 9.67 | Sweroside-6′- | + | + | + | + | + | |||||||
|
| 15.71 | Sweroside-6′- | + | + | + | |||||||||
|
| 15.43 | Sweroside- | + | |||||||||||
|
| 16.79 | Sweroside- | + | + | + | + | + | + | + | |||||
|
| 17.60 | Sweroside- | + | + | + | + | + | + | ||||||
|
| 17.61 | Sweroside- | + | |||||||||||
|
| 22.42 | Sweroside- | + | + | + | + | + | |||||||
|
| 18.11 | Sweroside- | + | + | + | + | + | |||||||
|
| 18.63 | Sweroside- | + | + | + | + | + | + | ||||||
|
| 19.67 | Trifloroside S | [ | + | + | + | + | + | + | + | ||||
|
| 18.52 | Sweroside- | + | + | + | + | ||||||||
|
| 19.14 | Sweroside- | + | + | + | + | + | |||||||
|
| 17.67 | Sweroside- | + | |||||||||||
| Iridoid glucosides with various structures | ||||||||||||||
| 88 | 16.05 | Eustomorusside- | + | |||||||||||
|
| 6.83 | Eustoside L,T | + | [ | ||||||||||
|
| 17.85 | Eustomoside- | + | + | ||||||||||
|
| 19.74 | Eustomoside- | + | |||||||||||
|
| 6.87 | Eustomoside L,T | + | + | [ | |||||||||
|
| 9.15 | Morroniside S | + | |||||||||||
|
| 9.99 | Septemfidoside L,T | [ | |||||||||||
| Iridoid glucosides with unknows structures | ||||||||||||||
|
| 3.05 | Iridoid glycoside (MW 408) | + | + | + | |||||||||
|
| 3.62 | Iridoid glycoside (MW 408) | + | |||||||||||
|
| 5.56 | Iridoid glycoside (MW 408) | + | + | + | + | + | |||||||
|
| 6.39 | Iridoid glycoside (MW 408) | + | + | + | + | ||||||||
|
| 6.85 | Iridoid glycoside (MW 408) | + | + | ||||||||||
|
| 7.76 | Iridoid glycoside (MW 408) | + | + | ||||||||||
|
| 8.67 | Iridoid glycoside (MW 408) | + | + | + | |||||||||
|
| 16.62 | Iridoid glycoside (MW 436) | + | |||||||||||
|
| 9.06 | Iridoid glycoside (MW 446) | + | + | ||||||||||
|
| 9.25 | Iridoid glycoside (MW 446) | + | |||||||||||
|
| 5.75 | Iridoid glycoside (MW 478) | + | |||||||||||
|
| 15.78 | Iridoid glycoside (MW 562) | + | |||||||||||
|
| 16.75 | Iridoid glycoside (MW 562) | + | + | ||||||||||
|
| 15.04 | Iridoid glycoside (MW 684) | + | + | + | |||||||||
| Phenolic acid O-glucosides | ||||||||||||||
|
| 6.81 | 2,3-Dihydroxybenzoic acid- | + | + | + | + | + | + | + | + | + | |||
|
| 7.45 | 2,3-Dihydroxybenzoic acid- | + | + | + | + | + | + | + | + | + | |||
| Hydroxycinnamates | ||||||||||||||
|
| 8.71 | 1- | + | |||||||||||
|
| 11.63 | 6- | + | |||||||||||
|
| 12.36 | 2- | + | |||||||||||
|
| 15.68 | 1,3-Di- | + | |||||||||||
|
| 16.17 | 1,2-Di- | + | |||||||||||
| Xanthones | ||||||||||||||
|
| 12.22 | Mangiferin S | [ | [ | + | [ | ||||||||
|
| 12.32 | Isomangiferin S | + | + | + | |||||||||
|
| 9.92 | Mangiferin isomer L | + | |||||||||||
|
| 11.25 | Mangiferin isomer L | + | |||||||||||
|
| 10.14 | Mangiferin-6- | [ | + | + | + | ||||||||
|
| 9.76 | Mangiferin-7- | [ | + | + | + | ||||||||
|
| 22.85 | Gentisin S | [ | |||||||||||
|
| 17.58 | Gentisin-1- | + | |||||||||||
| Flavonoids | ||||||||||||||
| Luteolin derivatives | ||||||||||||||
|
| 16.70 | Luteolin-7- | + | + | ||||||||||
|
| 14.08 | Luteolin-6- | [ | [ | + | + | [ | [ | [ | |||||
|
| 15.69 | Luteolin-8- | + | + | ||||||||||
|
| 11.07 | Isoorientin-7- | + | |||||||||||
|
| 11.51 | Isoorientin-2″- | [ | + | + | + | + | + | + | |||||
|
| 12.47 | Isoorientin-4″- | + | + | + | + | + | |||||||
|
| 13.34 | Isoorientin-6″- | + | + | + | + | + | |||||||
|
| 14.59 | Luteolin- | + | |||||||||||
|
| 16.63 | Isoorientin | + | + | + | + | + | + | ||||||
|
| 10.04 | Luteolin- | + | |||||||||||
|
| 11.11 | Luteolin- | + | + | + | |||||||||
|
| 11.65 | Luteolin- | + | + | ||||||||||
|
| 15.00 | Luteolin- | + | + | + | + | + | + | ||||||
|
| 15.48 | Luteolin- | + | + | + | + | + | |||||||
|
| 15.02 | Luteolin- | [ | + | + | |||||||||
| Apigenin derivatives | ||||||||||||||
|
| 18.51 | Apigenin-7- | + | + | + | + | + | + | ||||||
|
| 15.41 | Isovitexin S | [ | [ | + | + | [ | [ | [ | + | + | |||
|
| 11.46 | Isovitexin-7- | [ | + | + | + | [ | + | + | + | + | |||
|
| 13.48 | Isovitexin-2″- | [ | + | + | + | + | |||||||
|
| 14.97 | Isovitexin-4′- | [ | [ | ||||||||||
|
| 11.12 | Isovitexin-7,2″-di- | + | |||||||||||
|
| 11.78 | Isovitexin-2″,4″-di- | [ | + | ||||||||||
|
| 13.77 | Apigenin- | + | + | ||||||||||
|
| 17.54 | Apigenin- | + | + | + | + | + | |||||||
|
| 15.09 | Apigenin- | + | + | + | + | ||||||||
|
| 15.61 | Apigenin- | + | + | + | + | + | |||||||
|
| 16.24 | Apigenin- | + | + | + | |||||||||
|
| 17.65 | Apigenin- | + | |||||||||||
|
| 18.09 | Apigenin- | + | |||||||||||
| Chrysoeriol derivatives | ||||||||||||||
|
| 22.67 | Chrysoeriol S | + | + | ||||||||||
|
| 15.77 | Isoscoparin S | + | + | [ | + | ||||||||
|
| 12.13 | Isoscoparin-7- | + | [ | + | |||||||||
|
| 13.86 | Isoscoparin-2″- | + | + | ||||||||||
|
| 13.16 | Chrysoeriol | + | |||||||||||
|
| 15.30 | Chrysoeriol | + | |||||||||||
|
| 17.01 | Chrysoeriol | + | |||||||||||
|
| 17.34 | Chrysoeriol | + | + | + | + | ||||||||
| Acacetin derivatives | ||||||||||||||
|
| 15.89 | Acacetin- | + | + | ||||||||||
|
| 18.15 | Acacetin- | + | |||||||||||
|
| 18.20 | Acacetin- | + | |||||||||||
| Triterpene glycosides | ||||||||||||||
|
| 16.56 | Oleanolic acid- | + | + | + | |||||||||
|
| 15.76 | Oleanolic acid- | + | + | ||||||||||
|
| 16.29 | Dehydrooleanolic acid- | + | + | + | |||||||||
|
| 15.53 | Dehydrooleanolic acid- | + | + | ||||||||||
|
| 18.17 | Desoxyoleanolic acid- | + | + | ||||||||||
|
| 16.72 | Desoxyoleanolic acid- | + | + | ||||||||||
|
| 17.62 | Desoxyoleanolic acid- | + | |||||||||||
| Total number of compounds found | 49 | 45 | 51 | 58 | 44 | 51 | 25 | 24 | 31 | 27 | 21 | 32 | ||
| Number of previously found compounds | 11 | 8 | 3 | 0 | 9 | 10 | 7 | 4 | 0 | 0 | 3 | 0 | ||
| Number of compounds found in present study | 38 | 37 | 48 | 58 | 35 | 41 | 18 | 20 | 31 | 27 | 18 | 32 | ||
1 Gentian species: GAS—Gentiana asclepiadea, GCR—Gentiana cruciata, GGE—Gentiana gelida, GPA—Gentiana paradoxa, GPN—Gentiana pneumonanthe, GSE—Gentiana septemfida. “+”—presence of compound. Number of the reference describing known data have been retained in square brackets. Abbreviations used: Ac—acetate, Caf—caffeoyl, dHex—desoxyhexose, DOBA—2,3-dihydroxybenzoyl, Glc—glucose, Hex—hexose, HexA—hexuronic acid, MW—molecular weight, pHBA—p-hydroxybenzoyl, Prim—primverose (6-O-xylosyl-glucose). S Compound identification was based on comparison with reference standards. L Compound identification was based on interpretation of UV and MS spectral data and comparison with literature data. T Tentative identification.
Figure 2(a) HPLC-ESI-MS chromatogram of G. septemfida root extract in SIM-mode {m/z 375 for loganic acid (18), m/z 389 for loganin (25), m/z 419 for swertiamarin (33), m/z 401 for gentiopicroside (38), m/z 403 for sweroside (40; isomeric 44)}. (b,c) Mass spectra of compound 38 in negative and positive ionization mode. (d) UV spectra of compounds 18, 38 and 40.
Figure 3(a,b) HPLC-ESI-MS chromatogram of G. gelida root extract in SIM-mode: {m/z 797 for gelidoside (rindoside, 131, a); m/z 781 for trifloroside (132, b)}. (c) UV spectrum of compounds 132. (d,e) Mass spectrometric fragmentation of compounds 131 (d) and 132 (e). (f) MSn spectra of compound 132.
Figure 4(a) HPLC-ESI-MS chromatogram of G. gelida herb extract in SIM-mode (m/z 315). (b, c) Mass spectra (negative ionization) of compounds 11 (2,3-dihydroxybenzoic acid 2-O-glucoside) and 16 (2,3-dihydroxybenzoic acid 3-O-glucoside), respectively. (d) UV spectra of compounds 11 and 16.
Figure 5(a) HPLC-ESI-MS chromatogram of G. asclepiadea herb extract in SIM-mode (m/z 421, 583). (b, c) Mass spectra (negative ionization) of compounds 49 (mangiferin) and 29 (mangiferin-7-O-glucoside), respectively. (d) UV spectra of compounds 29, 49, and 50.
Figure 6(a) HPLC-ESI-MS chromatogram of G. gelida herb extract in SIM-mode (m/z 771). (b, c) UV spectra of compounds 36 and 73. (d) MSn spectra (negative ionization) of compound 36. Lut-C-Hex-O-Hex-O-Hex—zone of isomeric luteolin-C-hexoside-O-hexoside-O-hexosides, Lut-C-Hex-O-Hex-O-Caf—zone of isomeric luteolin-C-hexoside-O-hexoside-O-caffeates.
Figure 7(a) HPLC-ESI-MS chromatogram of G. gelida herb extract in SIM-mode (m/z 755). (b) UV spectra of compounds 47 and 68. (c) MS and MS2 spectra (negative ionization) of compound 68. Api-C-Hex-O-Hex-O-Hex—apigenin-C-hexoside-O-hexoside-O-hexoside (isovitexin-2″,4″-di-O- glucoside), Api-C-Hex-O-Hex-O-Caf—zone of isomeric apigenin-C-hexoside-O-hexoside-O-caffeates.
Figure 8(a,b,c) HPLC-ESI-MS chromatograms of G. asclepiades herb extract in SIM-mode (positive ionization; m/z 941, 779 (oleanolic acid glycosides; a), 939, 777 (dehydrooleanolic acid glycosides; b), 763, 617 (desoxyoleanolic acid glycosides; c)). (d) MSn spectra (positive ionization) of compound 84.
Content of selected compounds in gentian herbs and roots a, mg/g of dry plant weight (±S.D.).
| Compound | GAS | GCR | GGE | GPA | GPN | GSE |
|---|---|---|---|---|---|---|
| Gentian herbs | ||||||
| Iridoids | ||||||
| Loganic Acid | 11.83 ± 0.21 | 3.40 ± 0.06 | 1.97 ± 0.04 | 3.91 ± 0.08 | 2.15 ± 0.04 | 4.07 ± 0.08 |
| Swertiamarin | 1.53 ± 0.03 | tr. | 9.04 ± 0.16 | 83.06 ± 1.66 | tr. | 9.47 ± 0.18 |
| Gelidoside | 0.00 | 0.00 | 7.30 ± 0.14 | 0.00 | 0.00 | 4.66 ± 0.09 |
| Gentiopicroside | 91.74 ± 1.85 | 14.77 ± 0.29 | 4.41 ± 0.08 | 79.65 ± 1.59 | 40.74 ± 0.81 | 5.08 ± 0.10 |
| Sweroside | tr. | tr. | tr. | tr. | tr. | tr. |
| Trifloroside | 0.00 | 0.00 | 2.68 ± 0.05 | 5.72 ± 0.11 | 0.00 | 1.87 ± 0.04 |
| Subtotal Iridoids | 105.10 | 18.17 | 25.40 | 172.34 | 42.89 | 25.15 |
| Flavonoids | ||||||
| Isovitexin | 0.89 ± 0.02 | 2.27 ± 0.04 | 1.05 ± 0.02 | 0.71 ± 0.02 | 0.70 ± 0.02 | 3.59 ± 0.07 |
| Isovitexin-2″- | 1.81 ± 0.04 | 2.40 ± 0.05 | 1.39 ± 0.03 | 3.05 ± 0.06 | 1.24 ± 0.02 | 7.03 ± 0.14 |
| Saponarin | 1.25 ± 0.03 | 1.42 ± 0.03 | tr. | 2.02 ± 0.04 | 1.09 ± 0.02 | 0.83 ± 0.02 |
| Apigenin-7- | 2.52 ± 0.07 | 0.47 ± 0.01 | 0.67 ± 0.01 | 0.91 ± 0.02 | tr. | tr. |
| Isoorientin | 18.85 ± 0.37 | 4.78 ± 0.09 | 33.59 ± 0.67 | 8.85 ± 0.17 | 21.26 ± 0.42 | 17.22 ± 0.34 |
| Isoorientin-2″- | 40.62 ± 0.73 | 16.05 ± 0.32 | 15.16 ± 0.30 | 18.76 ± 0.37 | 4.53 ± 0.09 | 19.63 ± 0.39 |
| Isoorientin-6″- | 0.00 | 0.00 | 3.22 ± 0.06 | 0.00 | 0.00 | 8.59 ± 0.17 |
| Luteolin-7- | 1.33 ± 0.02 | tr. | 0.78 ± 0.02 | 1.79 ± 0.03 | 1.79 ± 0.03 | 2.52 ± 0.05 |
| Isoscoparin | 0.00 | 0.00 | 1.14 ± 0.02 | 0.00 | 1.94 ± 0.04 | 0.40 ± 0.01 |
| Subtotal Flavonoids | 67.27 | 27.39 | 57.00 | 36.09 | 32.55 | 59.81 |
| Xanthones | ||||||
| Mangiferin | 17.48 ± 0.33 | 5.75 ± 0.11 | 0.00 | 6.45 ± 0.12 | 3.03 ± 0.06 | 0.00 |
| Subtotal Xanthones | 17.48 | 5.75 | 0.00 | 6.45 | 3.03 | 0.00 |
| Total Phenolic Compounds | 84.75 | 33.14 | 57.00 | 42.54 | 35.58 | 59.81 |
| Total Compounds | 189.85 | 51.31 | 82.40 | 214.88 | 78.47 | 84.96 |
| Gentian roots | ||||||
| Iridoids | ||||||
| Loganic Acid | 11.75 ± 0.23 | 17.31 ± 0.34 | 6.14 ± 0.12 | 8.25 ± 0.16 | 11.28 ± 0.22 | 8.43 ± 0.16 |
| Swertiamarin | 5.87 ± 0.11 | 2.63 ± 0.05 | 3.47 ± 0.07 | 3.53 ± 0.07 | 3.91 ± 0.08 | 3.83 ± 0.07 |
| Gelidoside | 0.00 | 0.75 ± 0.02 | 1.53 ± 0.03 | 0.42 ± 0.01 | 0.81 ± 0.02 | 1.92 ± 0.04 |
| Gentiopicroside | 64.71 ± 1.29 | 57.51 ± 1.15 | 61.37 ± 1.22 | 62.76 ± 1.25 | 56.16 ± 1.14 | 75.90 ± 1.51 |
| Gentiopicroside-6″- | 1.24 ± 0.02 | 0.61 ± 0.01 | 1.21 ± 0.02 | 0.00 | 0.84 ± 0.02 | 5.85 ± 0.11 |
| Sweroside | tr. | 3.84 ± 0.07 | tr. | 3.81 ± 0.07 | 2.40 ± 0.04 | 2.15 ± 0.04 |
| Trifloroside | 0.00 | 0.54 ± 0.01 | 7.07 ± 0.14 | 3.42 ± 0.06 | 2.05 ± 0.04 | 5.60 ± 0.11 |
| Subtotal Iridoids | 83.57 | 83.19 | 80.79 | 82.19 | 77.45 | 103.68 |
| Flavonoids | ||||||
| Isoorientin-2″- | 4.43 ± 0.08 | 0.00 | 0.00 | 0.00 | 0.00 | 0.00 |
| Subtotal Flavonoids | 4.43 | 0.00 | 0.00 | 0.00 | 0.00 | 0.00 |
| Xanthones | ||||||
| Gentioside | 0.75 ± 0.02 | 0.00 | 0.00 | 0.00 | 0.00 | 0.00 |
| Subtotal Xanthones | 0.75 | 0.00 | 0.00 | 0.00 | 0.00 | 0.00 |
| Total Phenolic Compounds | 5.18 | 0.00 | 0.00 | 0.00 | 0.00 | 0.00 |
| Total Compounds | 88.75 | 83.19 | 80.79 | 82.19 | 77.45 | 103.68 |
a Gentian species: GAS—Gentiana asclepiadea, GCR—Gentiana cruciata, GGE—Gentiana gelida, GPA—Gentiana paradoxa, GPN—Gentiana pneumonanthe, GSE—Gentiana septemfida. “tr.”—trace content (
Parameters of antioxidant activity and α-amylase/α-glycosidase inhibitory potential of gentian extracts and pure compounds a,b.
| Extract, Compound | DPPH c | O2- d | LPA e | αAIP f | αGIP f |
|---|---|---|---|---|---|
| 580.71 ± 14.52 vi | 220.45 ± 6.49 xii | 194.56 ± 8.36 xviii | 530.11 ± 16.31 xxvii | 418.80 ± 12.98 xxxv | |
| 246.34 ± 6.40 iv | 86.96 ± 3.14 x | 98.54 ± 3.46 xvii | 183.48 ± 6.62 xxiii | 194.90 ± 5.54 xxxii | |
| 481.49 ± 14.43 v | 189.14 ± 6.05 xi | 176.88 ± 6.37 xviii | 395.17 ± 14.02 xxv | 311.48 ± 11.78 xxxiv | |
| 147.57 ± 3.09 iii | 52.18 ± 2.03 x | 68.17 ± 2.12 xvi | 108.85 ± 3.71 xxii | 144.77 ± 3.05 xxxii | |
| 266.96 ± 8.72 iv | 106.53 ± 3.62 xi | 63.23 ± 4.03 xvi | 224.06 ± 8.29 xxiv | 240.20 ± 6.91 xxxiii | |
| 560.86 ± 12.18 vi | 235.54 ± 7.02 xii | 242.08 ± 7.59 xix | 480.20 ± 11.94 xxvi | 322.02 ± 11.69 xxxiv | |
| 45.32 ± 1.17 ii | 18.48 ± 0.66 ix | 17.68 ± 0.71 xv | 38.87 ± 1.51 xxi | 25.64 ± 0.97 xxx | |
| < 10.00 | < 10.00 | < 10.00 | < 10.00 | < 10.00 | |
| < 10.00 | < 10.00 | < 10.00 | < 10.00 | < 10.00 | |
| < 10.00 | < 10.00 | < 10.00 | < 10.00 | < 10.00 | |
| < 10.00 | < 10.00 | 11.27 ± 0.51 xv | < 10.00 | 14.23 ± 0.56 xxix | |
| < 10.00 | < 10.00 | < 10.00 | < 10.00 | < 10.00 | |
| Loganic Acid | < 10.00 | < 10.00 | < 10.00 | < 10.00 | < 10.00 |
| Gentiopicroside | < 10.00 | < 10.00 | < 10.00 | < 10.00 | < 10.00 |
| Gelidoside | 25.14 ± 0.42 i | < 10.00 | < 10.00 | < 10.00 | < 10.00 |
| Trifloroside | 20.82 ± 0.38 i | < 10.00 | < 10.00 | < 10.00 | < 10.00 |
| Isovitexin | 425.11 ± 8.50 v | 211.63 ± 4.20 xii | 96.54 ± 3.73 xvii | 108.35 ± 3.79 xxii | 52.63 ± 2.09 xxxi |
| Isoorientin | 2523.27 ± 50.46 vii | 863.15 ± 17.26 xiii | 486.56 ± 19.46 xx | 1242.03 ± 44.71 xxviii | 811.10 ± 32.44 xxxvi |
| Mangiferin | 3824.20 ± 76.48 viii | 927.07 ± 18.54 xiv | 522.14 ± 20.85 xx | 296.14 ± 10.36 xxiv | 1562.84 ± 62.48 xxxvii |
a Averages ± standard deviation (S.D.) were obtained from five different experiments. b Values with different letters (i–xxxvii) indicate statistically significant differences among groups at p < 0.05 by one-way ANOVA. c as mg of trolox per g of dry extract weight; d as mg of quercetin per g of dry extract weight; e as mg of caffeic acid per g of dry extract weight; f as mg of acarbose per g of dry extract weight. DPPH—2,2-diphenyl-1-picrylhydrazyl radical scavenging activity; O2-—superoxide anion-radical scavenging activity; LPA—lipid peroxidation inhibition activity; αAIP—α-amylase inhibitory potential; αGIP—α-glycosidase inhibitory potential.
Figure 9HPLC-DAD chromatograms (210 nm) of G. asclepiadea herb extract before (a) and after (b) pre-chromatographic reaction with DPPH radicals and G. gelida roots extract before (c) and after (d) pre-chromatographic reaction with DPPH radicals. Zone of compounds numbered as follows: i—loganic acid; ii—swertiamarin; iii—isoorientin-2″-O-glucoside; iv—gentiopicroside; v—mangiferin; vi—isovitexin-2″-O-glucoside; vii—isoorientin; viii—saponarin; ix—isovitexin; x—luteolin-7-O-glucoside; xi—apigenin-7-O-glucoside; xii—gentiopicroside-6″-O-glucoside; xiii—gelidoside (rindoside); xiv—trifloroside. The numbers demonstrate the percentage of peak area reduction after pre-chromatographic reaction with DPPH radicals.
Figure 10Correlation graphs between phenolic compound content in gentian extracts (mg/g) and their bioactivity. (a) DPPH—2,2-diphenyl-1-picrylhydrazyl radical scavenging activity (as mg of trolox per gram of dry extract weight; correlation equation y = 2.07·x − 38.48, r = 0.9752); O2-—superoxide anion-radical scavenging activity (as mg of quercetin per gram of dry extract weight; correlation equation y = 0.84·x − 20.21, r = 0.9736); LPA—lipid peroxidation inhibition activity (as mg of caffeic acid per g of dry extract weight; correlation equation y = 0.76·x − 14.74, r = 0.9232). (b) αAIP—α-amylase inhibitory potential (as mg of acarbose per g of dry extract weight; correlation equation y = 1.86·x − 54.73, r = 0.9739); αGIP—α-glycosidase inhibitory potential (as mg of acarbose per gram of dry extract weight; correlation equation y = 1.29·x + 5.08, r = 0.9849).
Detailed information of gentiana samples.
| Collection Place | Collection Date | Coordinates | Voucher Specimens No | Dry Extract Yield (Herb / Root), % a |
|---|---|---|---|---|
| Baş Göynük, Shekinskii District, Azerbaijan | 23.VIII.2018 | 41°11′03.8″N 47°00′29.8″E | AZ/GEN-0818/15-003 | 28.2 / 25.6 |
| Cek, Gubinskii District, Azerbaijan | 18.VI.2018 | 41°12′25.8″N 48°14′40.6″E | AZ/GEN-0618/11-002 | 21.4 / 19.6 |
| Batabat, Shakhbuz District, Azerbaijan | 05.VIII.2018 | 39°32′15.8″N 45°44′10.1″E | AZ/GEN-0818/02-074 | 25.1 / 23.7 |
| Mamdzyshkha, Gagry District, Abkhazia | 20.VII.2018 | 43°18′16.0″N 40°19′37.8″E | AB/GEN-0718/17-109 | 36.5 / 22.1 |
| Kinghi, Ochamchyrskii District, Abkhazia | 15.VII.2018 | 42°48′46.8″N 41°15′56.2″E | AB/GEN-0718/14-114 | 23.6 / 20.7 |
| Laza, Gusarskii District, Azerbaijan | 25.VII.2018 | 41°03′30.1″N 47°55′36.9″E | AZ/GEN-0718/01-004 | 24.8 / 26.3 |
a % of dry plant weight.