| Literature DB >> 25072200 |
Giovanni Di Fabio1, Valeria Romanucci2, Anna De Marco3, Armando Zarrelli4.
Abstract
Because plants are estimated to produce over 200,000 metabolites, research into new natural substances that can be used in the pharmaceutical, agrochemical and agro-industrial production of drugs, biopesticides and food additives has grown in recent years. The global market for plant-derived drugs over the last decade has been estimated to be approximately 30.69 billion USD. A relevant specific example of a plant that is very interesting for its numerous pharmacological properties, which include antidiabetic, anticarcinogenic, and neuroprotective effects is Gymnema sylvestre, used as a medicinal plant in Asia for thousands of years. Its properties are attributed to triterpenoidic saponins. In light of the considerable interest generated in the chemistry and pharmacological properties of G. sylvestre triterpenes and their analogues, we have undertaken this review in an effort to summarise the available literature on these promising bioactive natural products. The review will detail studies on the isolation, chemistry and bioactivity of the triterpenoids, which are presented in the tables. In particular the triterpenoids oxidised at C-23; their isolation, distribution in different parts of the plant, and their NMR spectral data; their names and physico-chemical characterisation; and the biological properties associated with these compounds, with a focus on their potential chemotherapeutic applications.Entities:
Mesh:
Substances:
Year: 2014 PMID: 25072200 PMCID: PMC6270848 DOI: 10.3390/molecules190810956
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Common name and relative substituents of triterpenes with olean-12-ene skeleton.
| No. | Common Name | R1 | R2 | R3 | R4 | R5 | R6 |
|---|---|---|---|---|---|---|---|
| Gymnemic acid I/3- | GlcA | H | OH | OAc | OH | OTig | |
| Gymnemic acid II/3- | GlcA | H | OH | OAc | OH | OMba | |
| Gymnemic acid III/3- | GlcA | H | OH | OH | OH | OMba | |
| Gymnemic acid IV/3- | GlcA | H | OH | OH | OH | OTig | |
| Gymnemic acid V/3- | GlcA | H | OH | OH | OTig | OTig | |
| Gymnemic acid VI/3- | A | H | OH | OH | OH | OTig | |
| Gymnemic acid VII/3- | GlcA | H | OH | OH | H | OH | |
| Gymnemic acid VIII | B | H | OH | OH | OH | OMba | |
| Gymnemic acid IX | B | H | OH | OH | OH | OTig | |
| Gymnemic acid X/3- | GlcA | H | OH | OAc | OH | OH | |
| Gymnemic acid XI/3- | GlcA | H | OH | OTig | OH | OTig | |
| Gymnemic acid XII/3- | A | H | OH | OAc | OH | OTig | |
| Gymnemic acid XIII | GlcA | H | OH | OMba | OH | OH | |
| Gymnemic acid XIV | GlcA | H | OH | OTig | OH | OH | |
| Gymnemic acid XV/3- | GlcA | H | OH | OH | OTig | OMba | |
| Gymnemic acid XVI/3- | GlcA | H | Tig | OH | OTig | OH | |
| Gymnemic acid XVII/3- | GlcA | H | OH | OH | OH | OBz | |
| Gymnemic acid XVIII/3- | GlcA | H | OH | OBz | OH | OH | |
| Gymnemagenin/3 | H | H | OH | OH | OH | OH | |
| Prosapogenin/3- | GlcA | H | OH | OH | OH | OH | |
| 12-Oleanene-3 | H | H | OH | OH | H | H | |
| 3,16,23,28- | OAc | OAc | OAc | OAc | H | H | |
| 21- | H | H | OH | OH | OH | OMba | |
| 28- | H | H | OH | OAc | OH | OMba | |
| 3,16,22,23,28- | OAc | OAc | OAc | OAc | OAc | OMba | |
| 21- | H | H | OH | OH | OH | OTig | |
| Gymnemanol/3 | H | H | OH | OH | OH | H | |
| Gymnemasin A/3- | A | H | OH | OH | OTig | H | |
| Gymnemasin B/3- | A | H | OH | OH | OH | H | |
| Gymnemasin C/3- | GlcA | H | OH | OH | OTig | H | |
| Gymnemasin D/3- | GlcA | H | OH | OH | OH | H | |
| Gymnemoside-a/21- | GlcA | H | OH | OH | OAc | OTig | |
| Gymnemoside-b/16- | GlcA | H | OAc | OH | OH | OTig | |
| Gymnemoside-c/21- | GlcA | H | OH | OAc | OH | OBz | |
| Gymnemoside-d/23- | H | D | OH | OH | H | OH | |
| Gymnemoside-e/23- | H | D | OH | C | H | H | |
| Gymnemoside-f/23- | See | ||||||
| 23- | H | C | OH | OH | H | H | |
| Gymnemasaponin I | H | H | OH | Glc | H | H | |
| Gymnemasaponin II | H | Glc | OH | Glc | H | H | |
| Gymnemasaponin III | H | Glc | OH | C | H | H | |
| Gymnemasaponin IV | H | C | OH | Glc | H | H | |
| Gymnemasaponin V | H | C | OH | C | H | H | |
| Gymnestrogenin/3 | H | H | OH | OH | H | OH | |
| 3 | See | ||||||
| 3 | H | H | H | OH | H | H | |
| 3 | See | ||||||
| 3 | H | H | OH | OH | H | OH | |
| 3 | See | ||||||
| 3 | See | ||||||
| 16 | See | ||||||
| 16 | See | ||||||
| 16 |
For partial structures Glc, GlcA, A, B, C, and D see Figure 1.
Figure 1Chemical structures of triterpenes isolated from G. sylvestre.
Isolation and distribution of triterpenes in the different parts of the plants and their NMR spectral data.
| No. | Part of the Plant | Extract | Ref. | Aspect | Solvents of NMR Spectra | ||
|---|---|---|---|---|---|---|---|
| 1H-NMR | 13C-NMR | Ref. | |||||
| Leaves | H2O | [ | / | C5D5N | C5D5N | [ | |
| Leaves | H2O | [ | / | C5D5N | C5D5N | [ | |
| Leaves | H2O | [ | Colourless powder | C5D5N | C5D5N | [ | |
| Leaves | H2O | [ | Colourless powder | C5D5N | C5D5N | [ | |
| Leaves | H2O | [ | Colourless powder | C5D5N | C5D5N | [ | |
| Leaves | H2O | [ | / | C5D5N | C5D5N | [ | |
| Leaves | H2O | [ | / | C5D5N | C5D5N | [ | |
| Leaves | H2O | [ | Colourless powder | C5D5N+D2O | C5D5N+D2O | [ | |
| Leaves | H2O | [ | Colourless powder | C5D5N+D2O | C5D5N+D2O | [ | |
| Leaves | H2O:EtOH (2:3) | [ | Amorphous white powder | C5D5N | C5D5N | [ | |
| Leaves | H2O:EtOH (2:3) | [ | Amorphous white powder | C5D5N | C5D5N | [ | |
| Leaves | H2O:EtOH (2:3) | [ | Amorphous white powder | C5D5N | C5D5N | [ | |
| Leaves | H2O:EtOH (2:3) | [ | Amorphous powder | C5D5N | C5D5N | [ | |
| Leaves | H2O:EtOH (2:3) | [ | Amorphous powder | C5D5N | C5D5N | [ | |
| Leaves | H2O:EtOH (2:3) | [ | Amorphous white powder | C5D5N | C5D5N | [ | |
| Leaves | H2O:EtOH (2:3) | [ | Amorphous white powder | C5D5N | C5D5N | [ | |
| Leaves | H2O:EtOH (2:3) | [ | Amorphous white powder | C5D5N | C5D5N | [ | |
| Leaves | H2O:EtOH (2:3) | [ | Amorphous white powder | C5D5N | C5D5N | [ | |
| Leaves | Microwave | [ | / | C5D5N | C5D5N | [ | |
| By synthesis | |||||||
| By synthesis | [ | / | C5D5N | C5D5N | [ | ||
| Aerial parts | CH2Cl2 | [ | Amorphous powder | CD3OD | CD3OD | [ | |
| Aerial parts | CH2Cl2 | [ | Amorphous powder | CD3OD | CD3OD | [ | |
| Aerial parts | CH2Cl2 | [ | Amorphous powder | CD3OD | CD3OD | [ | |
| Aerial parts | CH2Cl2 | [ | Amorphous powder | CD3OD | CD3OD | [ | |
| Aerial parts | CH2Cl2 | [ | Amorphous powder | CD3OD | CD3OD | [ | |
| Aerial parts | CH2Cl2 | [ | Amorphous powder | CD3OD | CD3OD | [ | |
| By synthesis | [ | Micro-needles | C5D5N | C5D5N | [ | ||
| Leaves | H2O:EtOH (1:1) | [ | Amorphous powder | C5D5N | C5D5N | [ | |
| Leaves | H2O:EtOH (1:1) | [ | Amorphous powder | C5D5N | C5D5N | [ | |
| Leaves | H2O:EtOH (1:1) | [ | Amorphous powder | C5D5N | C5D5N | [ | |
| Leaves | H2O:EtOH (1:1) | [ | Amorphous powder | C5D5N | C5D5N | [ | |
| Leaves | CH3OH | [ | Colourless fine crystals | C5D5N | C5D5N | [ | |
| Leaves | CH3OH | [ | Colourless fine crystals | C5D5N | C5D5N | [ | |
| Leaves | CH3OH | [ | Colourless fine crystals | C5D5N | C5D5N | [ | |
| Leaves | CH3OH | [ | Colourless fine crystals | C5D5N | C5D5N | [ | |
| Leaves | CH3OH | [ | Colourless fine crystals | C5D5N | C5D5N | [ | |
| Leaves | CH3OH | [ | Colourless fine crystals | C5D5N | C5D5N | [ | |
| By synthesis | [ | / | C5D5N | C5D5N | [ | ||
| Leaves | H2O:EtOH (1:1) | [ | / | C5D5N | C5D5N | [ | |
| Leaves | CH3OH | [ | / | C5D5N | C5D5N | [ | |
| Leaves | H2O:EtOH (1:1) | [ | / | C5D5N | C5D5N | [ | |
| Leaves | CH3OH | [ | / | C5D5N | C5D5N | [ | |
| Leaves | CH3OH | [ | / | C5D5N | C5D5N | [ | |
| Aerial parts | H2O | [ | / | C5D5N | C5D5N | [ | |
| By synthesis | |||||||
| Aerial parts | H2O | [ | Amorphous powder | CD3OD | CD3OD | [ | |
| Aerial parts | CH2Cl2 | [ | / | CDCl3 | CDCl3 | [ | |
| Aerial parts | CH2Cl2 | [ | Amorphous powder | CD3OD | CD3OD | [ | |
| Aerial parts | CH2Cl2 | [ | / | C5D5N | C5D5N | [ | |
| Aerial parts | CH2Cl2 | [ | Amorphous powder | CD3OD | CD3OD | [ | |
| Aerial parts | CH2Cl2 | [ | Amorphous powder | CD3OD | CD3OD | [ | |
| Aerial parts | CH2Cl2 | [ | Amorphous powder | CD3OD | CD3OD | [ | |
| Aerial parts | CH2Cl2 | [ | Amorphous powder | CD3OD | CD3OD | [ | |
| Aerial parts | CH2Cl2 | [ | Amorphous powder | CD3OD | CD3OD | [ | |
Systematic names and physico-chemical characterization of triterpenes-1.
| No. | Systematic Name | CAS | Molecular Formula | Molecular Weight | Melting Point °C | Ref. | |||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 122,168-40-5 | C43H66O14 | 806.97 | 211–212 | [ | |||||||||
| 122,144-48-3 | C43H68O14 | 808.99 | 212–213 | [ | |||||||||
| 122,074-65-1 | C41H66O13 | 766.95 | 219–221 | [ | |||||||||
| 121,903-96-6 | C41H64O13 | 764.94 | 229–231 | [ | |||||||||
| 121,903-99-9 | C46H70O14 | 847.04 | 214–216 | [ | |||||||||
| 121,903-98-8 | C47H74O18 | 927.08 | 225–226 | [ | |||||||||
| 121,903-97-7 | C36H58O11 | 666.84 | 222–223 | [ | |||||||||
| 131,653-19-5 | C47H74O18 | 927.08 | 218–220 | [ | |||||||||
| 131,653-20-8 | C47H72O18 | 925.06 | 222–224 | [ | |||||||||
| 147,934-05-2 | C38H60O13 | 724.86 | 210–212 | [ | |||||||||
| 147,899-35-2 | C46H70O14 | 847.04 | 190–192 | [ | |||||||||
| 147,899-36-3 | C49H76O19 | 968.50 | 209–211 | [ | |||||||||
| 155,023-61-3 | C41H66O13 | 766.95 | 185–187 | [ | |||||||||
| 155,023-62-4 | C41H64O13 | 764.94 | 194–196 | [ | |||||||||
| 154,977-74-9 | C46H72O14 | 849.06 | / | / | |||||||||
| 154,977-75-0 | C46H70O14 | 847.04 | 203–205 | [ | |||||||||
| Gymnemic acid XVII/ | 154,977-76-1 | C43H62O13 | 786.94 | 211–213 | [ | ||||||||
| 154,977-77-2 | C43H62O13 | 786.94 | 201–203 | [ | |||||||||
| Olean-12-ene-3,16,21,22,23,28-hexol, (3 | 22,467-07-8 | C30H50O6 | 506.71 | 313–314 | [ | ||||||||
| 50,647-08-0 | C36H58O11 | 666.84 | 230–231 | [ | |||||||||
| 3 | 42,483-24-9 | C30H50O4 | 474.72 | / | [ | ||||||||
| 3,16,23,28-O-Tetraacetyl 3β,16β,23,28-tetrahydroxyolean-12-ene | / | C38H59O7 | 627.87 | / | [ | ||||||||
| 21- | / | C35H59O7 | 591.84 | / | [ | ||||||||
| 28- | / | C37H61O7 | 617.88 | / | [ | ||||||||
| 3,16,22,23,28- | / | C45H68O11 | 785.01 | / | [ | ||||||||
| 21- | / | C35H57O6 | 573.82 | / | [ | ||||||||
| Olean-12-ene-3,16,22,23,28-pentol, (3 | 174,324-52-8 | C30H50O5 | 490.72 | 284–285 | [ | ||||||||
| 174,324-49-3 | C47H74O17 | 910.49 | 215–217 | [ | |||||||||
| 174,324-48-2 | C42H68O16 | 828.45 | 221–222 | [ | |||||||||
| 174,324-50-6 | C41H64O12 | 748.44 | 212–214 | [ | |||||||||
| 174,324-51-7 | C36H58O11 | 666.40 | 220–221 | [ | |||||||||
| 175,033-15-5 | C43H66O14 | 806.98 | 207.0–208.5 | [ | |||||||||
| 174,232-51-0 | C43H66O14 | 806.98 | 211.5–213.0 | [ | |||||||||
| 199,618-65-0 | C45H64O14 | 828.98 | 211.5–213.0 | [ | |||||||||
| 199,618-66-1 | C47H78O19 | 947.11 | 219.1–221.0 | [ | |||||||||
| 199,618-67-2 | C59H98O28 | 1255.39 | 202.8–204.1 | [ | |||||||||
| 199,618-68-3 | C59H98O28 | 1255.39 | 201.3–203.2 | [ | |||||||||
| 133,629-85-3 | C42H70O14 | 799.00 | 173–175 | [ | |||||||||
| 133,629-80-8 | C36H60O9 | 636.86 | 184–185 | [ | |||||||||
| 133,629-81-9 | C42H70O14 | 799.00 | 190–192 | [ | |||||||||
| 133,629-82-0 | C48H80O19 | 961.14 | 203–205 | [ | |||||||||
| 133,629-83-1 | C48H80O19 | 961.14 | 201–203 | [ | |||||||||
| 133,629-84-2 | C54H90O24 | 1123.28 | 186–188 | [ | |||||||||
| Olean-12-ene-3,16,21,23,28-pentol, (3 | 19,942-02-0 | C30H50O5 | 490.72 | 290–291 | [ | ||||||||
| Olean-12-ene-3,16,23,28-tetrol, (3 | 23,887-98-1 | C30H50O4 | 474.72 | [ | |||||||||
| (3 | 35,043-82-4 | C30H50O3 | 458.72 | / | [ | ||||||||
| (3 | 1,447,214-81-4 | C30H50O4 | 474.72 | / | [ | ||||||||
| (3 | 42,483-24-9 | C30H50O4 | 474.72 | / | [ | ||||||||
| (3 | 1,447,214-84-7 | C30H50O5 | 490.72 | / | [ | ||||||||
| (3 | 26,540-63-6 | C30H50O4 | 474.72 | / | [ | ||||||||
| 16 | 1,447,214-87-0 | C30H48O4 | 472.70 | / | [ | ||||||||
| 16 | 1,447,214-89-2 | C30H48O5 | 488.70 | / | [ | ||||||||
| 16 | 1,447,214-91-6 | C30H48O5 | 488.70 | / | [ |
Physico-chemical characterization of triterpenes-2.
| No. | MS Analysis | IR υmax, cm−l | [α]D (c, MeOH) | Ref. |
|---|---|---|---|---|
| / | / | +36.7° (2.4) | [ | |
| / | / | +36.3° (1.5) | [ | |
| / | 3400 (OH), 1715 (C=O) | +9.6° (0.39) | [ | |
| / | 3400 (OH), 1700 (C=O) | +7.4° (0.21) | [ | |
| / | 3400 (OH), 1700 (C=O) | +3.3° (0.30) | [ | |
| FAB(+): 972 [M + 2Na]+ | / | +11.7° (1.1) | [ | |
| FAB(+): 712 [M + 2Na]+ | / | +9.6° (5.7) | [ | |
| HR-FAB(+): 949.4818 [M + Na]+ | 3450 (OH), 1730 (C=O) | +17.3° (0.74) | [ | |
| HR-FAB(+): 947.4681 [M + Na]+ | 3400 (OH), 1730 (C=O), | +11.4° (0.70) | [ | |
| FAB(−): 723[M − H]− | 3400 (OH), 1740 (C=O), | +14.9° (2.3) | [ | |
| FAB(−): 845 [M − H]− | 3400 (OH), 1740 (C=O), | +1.7° (5.3) | [ | |
| FAB(−): 967 [M − H]− | 3400 (OH), 1740 (C=O), | +11.7° (3.6) | [ | |
| FAB(−): 765 [M − H]− | 3400 (OH), 1720 (C=O), | +21.5° (3.5) | [ | |
| FAB(−): 763 [M − H]− | 3380 (OH), 1705 (C=O), | +7.6° (1.8) | [ | |
| FAB(−): 847 [M − H]−, 747 [M − H − C5H8O2]−, | 3400 (OH), 1740 (C=O), | +7.2° (1.52) | [ | |
| FAB(−): 845 [M − H]−, 745 [M − H − C5H8O2]−, | 3380 (OH), 1740 (C=O), | −6.8° (2.96) | [ | |
| FAB(−): 785 [M − H]−, 663 [M − H − C7H6O2]− | 3450 (OH), 1700 (C=O), | +7.1° (2.96) | [ | |
| FAB(−): 785 [M − H]−, 663 [M − H − C7H6O2]− | 3400 (OH), 1700 (C=O), | +6.4° (1.71) | [ | |
| FAB(+): 529 [M + Na]+
| / | +53.5° (1.8) | [ | |
| FAB(+): 705 [M + Na]+
| / | +8.4° (1.8) | [ | |
| ESI-MS: 475.2 [M + H]+. HR-ESI-MS: 475.3780 [M + H]+
| 3345, 1132, 1077, 1038 | −0.67° (0.22) | [ | |
| HR-ESI-MS: 643.4204 [M + H]+ | 3333, 1758, 1754, 1117, 1091, 1033 | +50.0° (0.23) | [ | |
| HR-ESI-MS: 591.4254 [M + H]+ | 3370, 1747, 1118, 1096, 1046 | +3.5° (0.21) | [ | |
| HR-ESI-MS: 633.4360 [M + H]+ | 3352, 1746, 1113, 1091, 1041 | +16.5° (0.2 ) | [ | |
| HR-ESI-MS: 801.4782 [M + H]+ | 3355, 1764, 1750, 1113, 1090, | +2.5° (0.21) | [ | |
| HR-ESI-MS: 589.4099 [M + H]+ | 3352, 17,252, 1113, 1093, | +3.5° (0.22) | [ | |
| EI: 490 [M]+, 472 [M − H2O]+, 454 [M − 2H2O]+
| 3350 (OH) | +51.5° (1.0) | [ | |
| FAB(+): 933 [M + Na]+. FAB(−): 909 [M − H]− | 3400 (OH), 1715 (C=O), 1600 | +15° (1.5) | [ | |
| FAB(−): 827 [M − H]− | 3420 (OH), 1710 (C=O) | +18.5° (1.0) | [ | |
| FAB(−): 747 [M − H]− | 3410 (OH), 1715 (C=O) | +12.5° (1.0) | [ | |
| FAB(−): 665 [M − H]− | 3425 (OH),1715 (C=O) | +8° (0.9) | [ | |
| HR-FAB(−): 805.4385 [M − H]−
| 3453, 1721, 1649, 1040 | +4.7° (0.1) | [ | |
| HR-FAB(−): 805.4404 [M − H]−
| 3445, 1718, 1649, 1044 | +6.6° (0.1) | [ | |
| HR-FAB(+): 829.4360 [M + Na]+
| 3445, 1718, 1649, 1044 | +6.6° (0.1) | [ | |
| HR-FAB(+): 969.5050 [M + Na]+
| 3410, 1044 | +13.4° (0.1) | [ | |
| HR-FAB(−): 1253.6154 [M − H]−, | 3410, 1044 | +14.8° (0.1) | [ | |
| HR-FAB(−): 1253.6167 [M − H]−
| 3431, 1044 | −8.9° (0.1) | [ | |
| FAB(+): 821 [M + Na]+ | / | +12.1° (1.1) | [ | |
| FAB(+): 659 [M + Na]+ | / | +9.3° (3.5) | [ | |
| FAB(+): 821 [M + Na]+ | / | +1.9° (2.6) | [ | |
| FAB(+): 983 [M + Na]+ | / | −11.6° (1.1) | [ | |
| FAB(+): 98 3[M + Na]+ | / | −1.1° (1.9) | [ | |
| FAB(+): 1145 [M + Na]+ | / | −6.2°(1.9) | [ | |
| FAB(+): 712 [M+2Na]+ | / | +53.1° (2.4) | [ | |
| ESI-MS: 475.2 [M + H]+. HR-ESI-MS: 475.3780 [M + H]+ | 3333, 1758, 1754, 1117, 1091, | −0.67° (0.22) | [ | |
| HR-FAB(+): 481.3720 [M + Na]+ | 3344, 2930, 2857, 1725, 1459, | / | [ | |
| ESI-MS: 475.2 [M + H]+. HR-ESI-MS: 475.3769 [M + H]+ | 3347, 1130, 1080, 1035 | +20.5° (0.27) | [ | |
| / | / | +53.1° (2.4) | [ | |
| ESI-MS: 491.4 [M + H]+. HR-ESI-MS: 491.3728 [M + H]+ | 3330, 1115, 1095, 1035 | +32.3° (0.23) | [ | |
| ESI-MS: 475.5 [M + H]+. HR-ESI-MS: 475.3745 [M + H]+ | 3334, 1112, 1087, 1034 | −1.2° (0.19) | [ | |
| ESI-MS: 473.2 [M + H]+. HR-ESI-MS: 473.3620 [M + H]+ | 3376, 1722, 1118, 1090, 1045 | +25.5° (0.21) | [ | |
| ESI-MS: 489.2 [M + H]+. HR-ESI-MS: 489.3563 [M + H]+ | 3350, 1724, 1118, 1090, 1045 | +26.5° (0.22) | [ | |
| ESI-MS: 505.3 [M + H]+. HR-ESI-MS: 505.3500 [M + H]+ | 30, 1723, 1128, 1080, 1050 | +23.1° (0.27) | [ |
Biological properties associated with the triterpenes with a focus on their potential chemotherapeutic applications.
| No. | Activity | Ref. |
|---|---|---|
| Antisweet activity | [ | |
| Antisweet activity | [ | |
| Antisweet activity | [ | |
| Antisweet activity | [ | |
| Antisweet activity | [ | |
| Antisweet activity | [ | |
| Antisweet activity | [ | |
| Antisweet activity | [ | |
| Antisweet activity | [ | |
| Antisweet activity | [ | |
| Antisweet activity | [ | |
| Antisweet activity | [ | |
| Antisweet activity | [ | |
| Antisweet activity | [ | |
| Antisweet activity | [ | |
| Antisweet activity | [ | |
| Antisweet activity | [ | |
| Pharmacokinetic study: determination of gymnemagenin in rat plasma using HPLC-MS/MS | [ | |
| Antisweet activity | [ | |
| Inhibition of the 11β-hydroxysteroid dehydrogenase type 1 | [ | |
| Hypoglycemic and antihyperglycemic effect in rats | [ | |
| Hypoglycemic and antihyperglycemic effect in rats | [ | |
| Hypoglycemic and antihyperglycemic effect in rats | [ | |
| Hypoglycemic and antihyperglycemic effect in rats | [ | |
| Increase of serum glucose level in oral glucose-loaded rats | [ | |
| Increase of serum glucose level in oral glucose-loaded rats | [ | |
| Glucose uptake in rat small intestinal fragment | [ | |
| Glucose uptake in rat small intestinal fragment | [ | |
| Glucose uptake in rat small intestinal fragment | [ | |
| Glucose uptake in rat small intestinal fragment | [ | |
| Antisweet activity | [ | |
| Antisweet activity | [ | |
| Antisweet activity | [ | |
| Antisweet activity | [ | |
| Antisweet activity | [ | |
| Inhibitory effects on human tumor cell lines (A549, SK-OV-3, SK-MEL-2, and HCT15) | [ | |
| [ | ||
| Inhibition of the tumor-promoting action of 12- | [ | |
| Inhibition of phospholipid synthesis by 12- | [ | |
| Anti-inflammatory activity and also to inhibit liver carcinogenesis and tumor growth | [ |