egtazic acid has been researched along with ascorbic acid in 17 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 4 (23.53) | 18.7374 |
1990's | 5 (29.41) | 18.2507 |
2000's | 6 (35.29) | 29.6817 |
2010's | 1 (5.88) | 24.3611 |
2020's | 1 (5.88) | 2.80 |
Authors | Studies |
---|---|
O'Rear, CE; Smith, MJ; van't Riet, B | 1 |
Hata, F; Kuo, CH; Wada, H; Yamatodani, A; Yoshida, H | 1 |
Cicero, TJ; Miller, BT | 1 |
Goto, K; Tanaka, R | 1 |
Aten, RF; Behrman, HR; Endo, T; Wang, F | 1 |
Gilmour, R; Goodhew, CF; McGinnity, DF; Moura, I; Moura, JJ; Pettigrew, GW; Prazeres, S | 1 |
Bechara, EJ; Ferreira, AM; Meinicke, AR; Vercesi, AE; Zavan, SS | 1 |
Bowl, M; Meldrum, RA; Ong, SB; Richardson, S | 1 |
Galaris, D; Panayiotidis, M; Tsolas, O | 1 |
Barbouti, A; Doulias, PT; Galaris, D; Ischiropoulos, H | 1 |
Brailovskaya, IV; Mokhova, EN; Starkov, AA | 1 |
Chang, WC; Chen, HY; Gau, RJ; Hseu, YC; Liu, TZ; Lu, FJ; Wang, SY; Yang, HL | 1 |
Halliwell, B; Long, LH; Wee, LM; Whiteman, M | 1 |
Akatov, VS; Edelweiss, EF; Kruglov, AG; Leshchenko, VV; Mazurov, VV; Solovieva, ME; Yakubovskaya, RI | 1 |
Calaza, Kda C; Miya, VS; Paes-de-Carvalho, R; Portugal, CC; Santos, RA | 1 |
Beck, R; Calderon, PB; Dejeans, N; Gailly, P; Tajeddine, N; Taper, H; Verrax, J | 1 |
Katsuyama, Y; Masaki, H; Okano, Y; Sato, Y | 1 |
17 other study(ies) available for egtazic acid and ascorbic acid
Article | Year |
---|---|
Methylene blue and other agents as inhibitors of calcium oxalithiasis in vivo.
Topics: Acridines; Acriflavine; Animals; Ascorbic Acid; Azure Stains; Calcium Oxalate; Edetic Acid; Egtazic Acid; Ethylene Glycols; Male; Methylene Blue; Phenothiazines; Rats; Urinary Bladder Calculi | 1978 |
Effect of ascorbic acid on release of acetylcholine from synaptic vesicles prepared from different species of animals and release of noradrenaline from synaptic vesicles of rat brain.
Topics: Acetylcholine; Animals; Ascorbic Acid; Brain; Egtazic Acid; Guinea Pigs; In Vitro Techniques; Norepinephrine; Rabbits; Rats; Species Specificity; Synaptic Vesicles; Time Factors | 1979 |
Ascorbic acid enhances the release of luteinizing hormone-releasing hormone from the mediobasal hypothalamus in vitro.
Topics: Animals; Ascorbic Acid; Calcium; Egtazic Acid; Gonadotropin-Releasing Hormone; Hypothalamus, Middle; In Vitro Techniques; Naloxone; Rats; Secretory Rate; Sulfites; Time Factors | 1986 |
Ascorbic acid inhibition of Na,K-adenosine triphosphatase of rat forebrain without peroxidation of membrane lipids.
Topics: Adenosine Triphosphate; Animals; Ascorbic Acid; Brain; Cytosol; Dopamine; Egtazic Acid; Lipid Peroxides; Male; Membrane Lipids; Rats; Sodium-Potassium-Exchanging ATPase; Synaptosomes | 1981 |
Coordinate induction and activation of metalloproteinase and ascorbate depletion in structural luteolysis.
Topics: Animals; Ascorbic Acid; Caseins; Corpus Luteum; DNA; Edetic Acid; Egtazic Acid; Enzyme Activation; Enzyme Induction; Ergot Alkaloids; Female; Immunosuppressive Agents; Kinetics; Metalloendopeptidases; Molecular Weight; Phenanthrolines; Prolactin; Proteins; Rats; Rats, Sprague-Dawley | 1993 |
The affinity and specificity of Ca(2+)-binding sites of cytochrome-c peroxidase from Paracoccus denitrificans.
Topics: Ascorbic Acid; Binding Sites; Calcium; Cytochrome-c Peroxidase; Edetic Acid; Egtazic Acid; Magnesium; Magnetic Resonance Spectroscopy; Manganese; Models, Chemical; Oxidation-Reduction; Paracoccus denitrificans; Protein Binding; Protein Conformation; Spectrophotometry; Substrate Specificity; Titrimetry | 1995 |
The calcium sensor ruthenium red can act as a Fenton-type reagent.
Topics: Animals; Ascorbic Acid; Calcium; Cyclic N-Oxides; Egtazic Acid; Electron Spin Resonance Spectroscopy; Hydrogen Peroxide; Indicators and Reagents; Iron; Male; Mitochondria, Liver; Mitochondrial Swelling; Molecular Sequence Data; Peroxides; Rats; Rats, Wistar; Reactive Oxygen Species; Ruthenium Red; Sensitivity and Specificity; Spectrophotometry; Spin Labels; tert-Butylhydroperoxide | 1996 |
Optimisation of electroporation for biochemical experiments in live cells.
Topics: Annexin A5; Ascorbic Acid; Calcium; Cell Death; Cell Membrane Permeability; Cell Survival; Cells, Cultured; Egtazic Acid; Electroporation; Fluoresceins; Fluorescent Dyes; HL-60 Cells; Humans; Intercalating Agents; Lipid Peroxidation; Phosphatidylserines; Propidium; Reactive Oxygen Species; Time Factors | 1999 |
Glucose oxidase-produced H2O2 induces Ca2+-dependent DNA damage in human peripheral blood lymphocytes.
Topics: Antioxidants; Ascorbic Acid; Calcium; Catalase; Cells, Cultured; Cycloheximide; Cytochalasin B; Dehydroascorbic Acid; DNA; DNA Damage; Egtazic Acid; Electrophoresis; Glucose Oxidase; Humans; Hydrogen Peroxide; Kinetics; Lymphocytes; Oxidative Stress; Vitamin E | 1999 |
SIN-1-induced DNA damage in isolated human peripheral blood lymphocytes as assessed by single cell gel electrophoresis (comet assay).
Topics: Ascorbic Acid; Calcium; Catalase; Chelating Agents; Comet Assay; Data Interpretation, Statistical; DNA Damage; DNA, Single-Stranded; Dose-Response Relationship, Drug; Egtazic Acid; Flow Cytometry; Humans; Kinetics; Lymphocytes; Microscopy, Ultraviolet; Molsidomine; Nitrates; Nitric Oxide Donors; Superoxide Dismutase | 2001 |
Ascorbate and low concentrations of FeSO4 induce Ca2+-dependent pore in rat liver mitochondria.
Topics: Animals; Ascorbic Acid; Calcium Channels; Cyclosporine; Egtazic Acid; Ferrous Compounds; Membrane Potentials; Mitochondria, Liver; Mitochondrial Swelling; Oxidative Stress; Permeability; Rats | 2001 |
Humic acid induces the generation of nitric oxide in human umbilical vein endothelial cells: stimulation of nitric oxide synthase during cell injury.
Topics: Antioxidants; Ascorbic Acid; Blotting, Western; Calcium; Carrier Proteins; Cell Death; Cells, Cultured; Chelating Agents; Dexamethasone; DNA; DNA Fragmentation; Dose-Response Relationship, Drug; Egtazic Acid; Endothelium, Vascular; Enzyme Inhibitors; Humans; Humic Substances; L-Lactate Dehydrogenase; NG-Nitroarginine Methyl Ester; Nitric Oxide; Nitric Oxide Synthase; Nitric Oxide Synthase Type II; Nitrites; Peroxynitrous Acid; Protein Kinase C; Superoxide Dismutase; Ubiquitin-Protein Ligases; Vitamin E | 2002 |
Factors affecting the ascorbate- and phenolic-dependent generation of hydrogen peroxide in Dulbecco's Modified Eagles Medium.
Topics: Ascorbic Acid; Catalase; Cell Line, Tumor; Cells, Cultured; Chelating Agents; Culture Media; Dose-Response Relationship, Drug; Edetic Acid; Egtazic Acid; Gallic Acid; Humans; Hydrogen Peroxide; Hydrogen-Ion Concentration; Ions; Pentetic Acid; Spectrophotometry, Atomic; Temperature; Time Factors | 2003 |
Small heat shock protein hsp27 as a possible mediator of intercellular adhesion-induced drug resistance in human larynx carcinoma HEp-2 cells.
Topics: Antineoplastic Combined Chemotherapy Protocols; Ascorbic Acid; ATP Binding Cassette Transporter, Subfamily B, Member 1; Carcinoma; Cell Adhesion; Cell Communication; Cell Culture Techniques; Cell Division; Drug Resistance, Neoplasm; Egtazic Acid; Glutathione; Heat-Shock Proteins; HSP27 Heat-Shock Proteins; Humans; Hydrogen Peroxide; Hydroxocobalamin; Laryngeal Neoplasms; Molecular Chaperones; Neoplasm Proteins; Tumor Cells, Cultured | 2003 |
Glutamate receptors modulate sodium-dependent and calcium-independent vitamin C bidirectional transport in cultured avian retinal cells.
Topics: Animals; Animals, Newborn; Ascorbic Acid; Aspartic Acid; Biological Transport; Calcium; Chelating Agents; Chick Embryo; Cytoskeletal Proteins; Egtazic Acid; Excitatory Amino Acid Antagonists; Glutamic Acid; N-Methylaspartate; Neurons; Organic Anion Transporters, Sodium-Dependent; Rats; Receptors, Glutamate; Retina; Sodium; Sodium-Coupled Vitamin C Transporters; Symporters; Tissue Culture Techniques; Tritium | 2009 |
Endoplasmic reticulum calcium release potentiates the ER stress and cell death caused by an oxidative stress in MCF-7 cells.
Topics: Ascorbic Acid; Calcium; Calcium Signaling; Cell Death; Cell Line, Tumor; Egtazic Acid; Endoplasmic Reticulum; Humans; Oxidative Stress; Vitamin K 3 | 2010 |
Intracellular oxidative stress induced by calcium influx initiates the activation of phagocytosis in keratinocytes accumulating at S-phase of the cell cycle after UVB irradiation.
Topics: Antioxidants; Ascorbic Acid; Calcium; Cell Line; Chelating Agents; DNA Damage; Egtazic Acid; Humans; Keratinocytes; Melanins; Melanosomes; Oxidative Stress; Phagocytosis; Reactive Oxygen Species; S Phase Cell Cycle Checkpoints; Ultraviolet Rays | 2021 |