glucose, (beta-d)-isomer has been researched along with vitisin a in 5 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 0 (0.00) | 18.2507 |
2000's | 1 (20.00) | 29.6817 |
2010's | 1 (20.00) | 24.3611 |
2020's | 3 (60.00) | 2.80 |
Authors | Studies |
---|---|
Bakker, J; Romero, C | 1 |
de Freitas, V; Fernandes, I; He, J; Mateus, N; Oliveira, H; Oliveira, J; Wang, J; Wu, N; Zhang, Q | 1 |
Alalaiwe, A; Cheng, CY; Fang, JY; Lin, CF; Lin, CJ; Lin, YK; Yang, SC | 1 |
Alcalde-Eon, C; Escribano-Bailón, MT; García-Estévez, I | 1 |
Dong, Q; Hu, N; Tie, F; Wang, H | 1 |
5 other study(ies) available for glucose, (beta-d)-isomer and vitisin a
Article | Year |
---|---|
Effect of storage temperature and pyruvate on kinetics of anthocyanin degradation, vitisin A derivative formation, and color characteristics of model solutions.
Topics: Acetylation; Anthocyanins; Benzofurans; Coumaric Acids; Food Handling; Glucosides; Kinetics; Phenols; Pyruvic Acid; Temperature; Wine | 2000 |
Bioavailability studies and anticancer properties of malvidin based anthocyanins, pyranoanthocyanins and non-oxonium derivatives.
Topics: Anthocyanins; Antineoplastic Agents; Antioxidants; Benzofurans; Biological Availability; Cell Line, Tumor; Cell Proliferation; Gastric Mucosa; Glucosides; Humans; MCF-7 Cells; Mitochondria; Phenols; Pyrones; Rhodamines; Vitis | 2016 |
Percutaneous absorption of resveratrol and its oligomers to relieve psoriasiform lesions: In silico, in vitro and in vivo evaluations.
Topics: Administration, Topical; Animals; Anti-Inflammatory Agents; Benzofurans; Chemistry, Pharmaceutical; Chemokines; Cytokines; Flavonoids; Glucosides; Inflammation Mediators; Keratinocytes; Mice; Phenols; Plant Extracts; Psoriasis; Resveratrol; Skin Absorption; Stilbenes; Swine | 2020 |
Role of Oak Ellagitannins in the Synthesis of Vitisin A and in the Degradation of Malvidin 3-
Topics: Anthocyanins; Glucosides; Hydrolyzable Tannins; Pyruvic Acid; Quercus; Wine | 2022 |
Vitisin A-13-O-β-D-glucoside and Vitisin A from Iris lactea inhibit lipogenesis and promote lipolysis via the PKA/HSL pathway during adipogenic transdifferentiation of C2C12 cells.
Topics: 3T3-L1 Cells; Adipogenesis; Animals; Cell Transdifferentiation; Glucosides; Iris Plant; Lipids; Lipogenesis; Lipolysis; Mice; PPAR gamma; Sterol Esterase | 2023 |