betulinic acid has been researched along with luteolin in 7 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 0 (0.00) | 18.2507 |
2000's | 2 (28.57) | 29.6817 |
2010's | 4 (57.14) | 24.3611 |
2020's | 1 (14.29) | 2.80 |
Authors | Studies |
---|---|
Broedel, SE; Cihlar, RL; ElSohly, HN; Ferreira, D; Jacob, MR; Joshi, AS; Khan, IA; Khan, SI; Li, XC; Raulli, RE; Walker, LA; Zhang, Z | 1 |
Batista-Gonzalez, A; Brunhofer, G; Fallarero, A; Gopi Mohan, C; Karlsson, D; Shinde, P; Vuorela, P | 1 |
Chou, GX; Hu, HJ; Liu, Q; Wang, ZT; Yang, L; Yang, QM; Yang, YB | 1 |
Ahn, HC; Cho, SC; Choi, BY; Fei, X; Keum, YS; Kim, HJ; Lee, K; Seo, SY | 1 |
Chowdhury, AR; Goswami, A; Majumder, HK; Mandal, S; Mukhopadhyay, S; Sharma, S | 1 |
Chunjie, Z; Lin, Q; Yang, D; Zhang, L | 1 |
Bhoj, P; Chavan, M; Girme, A; Hingorani, L; Mirgal, A; Pawar, S; Raut, D; Saste, G | 1 |
7 other study(ies) available for betulinic acid and luteolin
Article | Year |
---|---|
Fatty acid synthase inhibitors from plants: isolation, structure elucidation, and SAR studies.
Topics: Antifungal Agents; Candida albicans; Combretaceae; Cryptococcus neoformans; Enzyme Inhibitors; Fatty Acid Synthases; Inhibitory Concentration 50; Isoflavones; Melastomataceae; Molecular Structure; Moraceae; Paspalum; Plants, Medicinal; Saccharomyces cerevisiae; Structure-Activity Relationship; Tannins; Triterpenes | 2002 |
Exploration of natural compounds as sources of new bifunctional scaffolds targeting cholinesterases and beta amyloid aggregation: the case of chelerythrine.
Topics: Acetylcholinesterase; Amyloid beta-Peptides; Benzophenanthridines; Binding Sites; Butyrylcholinesterase; Catalytic Domain; Cholinesterase Inhibitors; Humans; Isoquinolines; Kinetics; Molecular Docking Simulation; Structure-Activity Relationship | 2012 |
Bioactive diterpenoids and flavonoids from the aerial parts of Scoparia dulcis.
Topics: Abietanes; Acarbose; Apigenin; Diterpenes; Flavonoids; Glucosides; Glycoside Hydrolase Inhibitors; Luteolin; Molecular Structure; Plant Components, Aerial; PPAR gamma; Scoparia | 2014 |
Discovery of α-mangostin as a novel competitive inhibitor against mutant isocitrate dehydrogenase-1.
Topics: Binding, Competitive; Drug Discovery; Humans; Isocitrate Dehydrogenase; MCF-7 Cells; Molecular Structure; Mutation; Recombinant Proteins; Structure-Activity Relationship; Xanthones | 2015 |
Luteolin, an emerging anti-cancer flavonoid, poisons eukaryotic DNA topoisomerase I.
Topics: Amsacrine; Animals; Antineoplastic Agents; Base Sequence; Betulinic Acid; Catalysis; Cell Nucleus; DNA, Superhelical; Enzyme Inhibitors; Etoposide; Flavonoids; Kinetics; Liver; Luteolin; Nucleic Acid Denaturation; Oligodeoxyribonucleotides; Pentacyclic Triterpenes; Plant Leaves; Quercetin; Rats; Spectrometry, Fluorescence; Topoisomerase I Inhibitors; Triterpenes | 2002 |
Contribution of phenolics and essential oils to the antioxidant and antimicrobial properties of Disporopsis pernyi (Hua) Diels.
Topics: Anti-Infective Agents; Antioxidants; Betulinic Acid; Luteolin; Magnoliopsida; Oils, Volatile; Pentacyclic Triterpenes; Plant Extracts; Polyphenols; Quercetin; Rutin; Triterpenes | 2014 |
Development and Validation of RP-HPLC Method for Vicenin-2, Orientin, Cynaroside, Betulinic Acid, Genistein, and Major Eight Bioactive Constituents with LC-ESI-MS/MS Profiling in Ocimum Genus.
Topics: Apigenin; Betulinic Acid; Chromatography, High Pressure Liquid; Flavonoids; Genistein; Glucosides; Luteolin; Ocimum; Ocimum basilicum; Pentacyclic Triterpenes; Plant Extracts; Tandem Mass Spectrometry | 2021 |