schaftoside has been researched along with glycosides in 15 studies
Studies (schaftoside) | Trials (schaftoside) | Recent Studies (post-2010) (schaftoside) | Studies (glycosides) | Trials (glycosides) | Recent Studies (post-2010) (glycosides) |
---|---|---|---|---|---|
18 | 0 | 15 | 20,179 | 169 | 6,844 |
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 0 (0.00) | 18.2507 |
2000's | 0 (0.00) | 29.6817 |
2010's | 8 (53.33) | 24.3611 |
2020's | 7 (46.67) | 2.80 |
Authors | Studies |
---|---|
Lehmann, RP; Pearson, T; Penman, KG; Wohlmuth, H | 1 |
Brazier-Hicks, M; Caulfield, JC; Edwards, R; Hamilton, ML; Hooper, AM; Kuate, SP; Pickett, JA; Rose, R; Torto, B | 1 |
Feng, NP; Shen, LN; Wang, Q; Xu, L; Zhang, YT | 1 |
Gu, N; Huo, M; Jiang, Z; Wang, H; Xiong, F; Yan, C; Zheng, C | 1 |
Chen, DN; Cheng, XX; Li, D; Pan, LM; Tang, XM; Yang, Q; Zhang, CR; Zhu, SD | 1 |
Chen, H; Huang, X; Liu, C; Liu, M; Mi, S; Zeng, X; Zhou, J | 1 |
Cho, DH; Choi, DH; Choi, Y; Jeon, HB; Jo, DS; Joo, CG; Kim, JK; Kim, PS; Kim, WJ; Lee, JS; Park, K; Seo, JH; Shin, DW; Shin, JH; Shin, JJ; Shin, YW | 1 |
Chen, J; Chen, X; Jiang, S; Lou, X; Tu, W; Wu, J; Wu, Q; Xu, Y; Yang, G; Zhou, K; Zhou, Y | 1 |
Chen, L; Cheng, X; Tang, X; Yang, Q | 1 |
Chen, Z; Gao, Y; Huang, X; Lin, C; Liu, C; Liu, M; Mi, S; Shen, C; Song, M; Wang, J; Zhang, G; Zhu, C | 1 |
Liu, R; Liu, Y; Lv, T; Ma, H; Meng, C; Wang, C; Xie, S; Zhang, Z | 1 |
Cai, W; Liu, C; Liu, M; Mi, S; Song, M; Wang, J; Wu, S; Zhang, G | 1 |
Chen, K; Gao, HM; Han, BY; Qiao, X; Song, TQ; Wang, HD; Wang, S; Wang, ZL; Xu, LL; Ye, M; Yun, CH; Zhang, M; Zhang, YQ | 1 |
Dang, J; Ji, X; Jin, M; Liu, K; Paudel, YN; Ren, Q; Yang, X; Zhang, S | 1 |
Chen, Z; Wu, M; Zhang, L | 1 |
15 other study(ies) available for schaftoside and glycosides
Article | Year |
---|---|
Pharmacognosy and chemotypes of passionflower (Passiflora incarnata L.).
Topics: Anti-Anxiety Agents; Apigenin; Australia; Chromatography, High Pressure Liquid; Flavones; Glycosides; Hypnotics and Sedatives; Passiflora; Pharmacognosy; Phytotherapy; Plant Extracts | 2010 |
Elucidation of the biosynthesis of the di-C-glycosylflavone isoschaftoside, an allelopathic component from Desmodium spp. that inhibits Striga spp. development.
Topics: Fabaceae; Flavonoids; Glycosides; Glycosylation; Hydrogen-Ion Concentration; Molecular Structure; Seeds; Striga; Temperature | 2012 |
Preparation and evaluation of microemulsion-based transdermal delivery of total flavone of rhizoma arisaematis.
Topics: Animals; Cell Line; Drug Carriers; Drugs, Chinese Herbal; Emulsions; Glycosides; Humans; Mice, Nude; Nanoparticles; Rats; Rats, Sprague-Dawley; Skin; Skin Absorption; Solubility | 2014 |
Integrated pharmacokinetics and biodistribution of multiple flavonoid C-glycosides components in rat after oral administration of Abrus mollis extract and correlations with bio-effects.
Topics: Abrus; Administration, Oral; Animals; Apigenin; Carrageenan; Chromatography, High Pressure Liquid; Edema; Glucosides; Glycosides; Kidney; Liver; Lung; Male; Mass Spectrometry; Myocardium; Plant Components, Aerial; Plant Extracts; Rats, Sprague-Dawley; Spleen; Tissue Distribution | 2015 |
[Research on distribution and quality suitability division of Desmodium styracifolium].
Topics: Agriculture; China; Ecosystem; Fabaceae; Glycosides; Polysaccharides; Soil; Temperature | 2017 |
Prevention of cholesterol gallstone disease by schaftoside in lithogenic diet-induced C57BL/6 mouse model.
Topics: Animals; Biomarkers; Body Weight; Cholesterol; Diet; Disease Models, Animal; Gallbladder; Gallstones; Gene Expression Regulation; Glycosides; Ileum; Liver; Male; Mice; Mice, Inbred C57BL; Organ Size | 2017 |
Anti-melanogenic activity of schaftoside in Rhizoma Arisaematis by increasing autophagy in B16F1 cells.
Topics: alpha-MSH; Animals; Antineoplastic Agents, Phytogenic; Arisaema; Autophagy; Cell Line, Tumor; Female; Glycosides; Humans; Melanins; Melanoma; Mice; Middle Aged | 2018 |
Schaftoside ameliorates oxygen glucose deprivation-induced inflammation associated with the TLR4/Myd88/Drp1-related mitochondrial fission in BV2 microglia cells.
Topics: Animals; Anti-Inflammatory Agents; Cell Line; Dynamins; Glucose; Glycosides; Hypoxia; Mice; Microglia; Mitochondrial Dynamics; Myeloid Differentiation Factor 88; Toll-Like Receptor 4 | 2019 |
Quantitative and Chemical Fingerprint Analysis of Desmodium styracifolium by High-Performance Liquid Chromatography Combined with Chemometrics.
Topics: Apigenin; Cheminformatics; China; Chromatography, High Pressure Liquid; Cluster Analysis; Fabaceae; Glycosides; Limit of Detection; Plants, Medicinal; Principal Component Analysis; Sensitivity and Specificity | 2020 |
Activation of Farnesoid X Receptor by Schaftoside Ameliorates Acetaminophen-Induced Hepatotoxicity by Modulating Oxidative Stress and Inflammation.
Topics: Acetaminophen; Animals; Antioxidants; Chemical and Drug Induced Liver Injury; Glycosides; Inflammation; Metabolic Networks and Pathways; Mice; Oxidative Stress; Protective Agents; Receptors, Cytoplasmic and Nuclear; Secondary Metabolism; Signal Transduction | 2020 |
Comparative metabolism of schaftoside in healthy and calcium oxalate kidney stone rats by UHPLC-Q-TOF-MS/MS method.
Topics: Animals; Calcium Oxalate; Disease Models, Animal; Glycosides; Kidney Calculi; Male; Rats; Rats, Sprague-Dawley | 2020 |
Schaftoside alleviates HFD-induced hepatic lipid accumulation in mice via upregulating farnesoid X receptor.
Topics: Animals; Cell Line, Tumor; Cholesterol; Diet, High-Fat; Disease Models, Animal; Glycosides; Hepatocytes; Humans; Hypolipidemic Agents; Lipid Metabolism; Liver; Male; Mice, Inbred C57BL; Mice, Knockout; Non-alcoholic Fatty Liver Disease; Receptors, Cytoplasmic and Nuclear; Signal Transduction; Sterol Regulatory Element Binding Protein 1; Triglycerides; Up-Regulation | 2020 |
Dissection of the general two-step di-
Topics: Biosynthetic Pathways; Catalysis; Cloning, Molecular; Enzyme Activation; Flavonoids; Glycosides; Glycosylation; Glycosyltransferases; Models, Molecular; Plant Physiological Phenomena; Plant Proteins; Structure-Activity Relationship | 2020 |
Schaftoside Suppresses Pentylenetetrazol-Induced Seizures in Zebrafish via Suppressing Apoptosis, Modulating Inflammation, and Oxidative Stress.
Topics: Animals; Apoptosis; Glycosides; Inflammation; Oxidative Stress; Pentylenetetrazole; Seizures; Zebrafish | 2021 |
Schaftoside improves cerebral ischemia-reperfusion injury by enhancing autophagy and reducing apoptosis and inflammation through the AMPK/mTOR pathway.
Topics: AMP-Activated Protein Kinases; Animals; Apoptosis; Autophagy; Glycosides; Inflammation; Mammals; Neuroprotective Agents; Oxygen; Rats; Reperfusion Injury; TOR Serine-Threonine Kinases | 2022 |