nitrilotriacetic acid has been researched along with ascorbic acid in 26 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 6 (23.08) | 18.7374 |
1990's | 10 (38.46) | 18.2507 |
2000's | 7 (26.92) | 29.6817 |
2010's | 3 (11.54) | 24.3611 |
2020's | 0 (0.00) | 2.80 |
Authors | Studies |
---|---|
Burkitt, MJ; Gilbert, BC | 1 |
Hamazaki, S; Li, JL; Midorikawa, O; Okada, S; Toyokuni, S | 1 |
Peters, TJ; Raja, KB; Simpson, RJ | 1 |
Moore, R; Peters, TJ; Simpson, RJ | 1 |
Gabuzda, TG; Yamada, H | 1 |
Leigh, MJ; Miller, DD | 1 |
Gabbe, EE; Heinrich, HC; Icagić, F | 1 |
Bertoncini, CR; Meneghini, R | 1 |
Davidson, LA; Harris, ED; McOrmond, SL | 1 |
Briat, JF; Laulhere, JP | 1 |
Inman, RS; Wessling-Resnick, M | 1 |
Higuchi, T; Nakagawa, M; Takada, K; Tanaka, M | 1 |
Ansar, S; Athar, M; Iqbal, M; Rezazadeh, H | 1 |
Kulda, J; Schrével, J; Suchan, P; Tachezy, J | 1 |
Huijskes-Heins, MI; Kroos, MJ; van Dijk, JP; van Eijk, HG; Verrijt, CE | 1 |
Richardson, DR | 1 |
Hu, ML; Wang, YF | 1 |
Di Mascio, P; Matos, HR; Medeiros, MH | 1 |
Bendia, E; Benedetti, A; Casini, A; D'Ambrosio, L; Di Sario, A; Feliciangeli, G; Macarri, G; Pigini, P; Ridolfi, F; Svegliati-Baroni, G; Tonnini, C | 1 |
Fujii, M; Fukuzawa, K; Gondoh, N; Iemura, M; Kogure, K; Shibata, A; Tokumura, A; Ueno, S | 1 |
Alonso, A; Gomes, CS; Hermes-Lima, M; Lopes, GK; Maurício, AQ; Oliveira, RG | 1 |
Van Montagu, M; Wolucka, BA | 1 |
Alam, MS; Athar, M; Jabbar, Z; Kaur, G | 1 |
Kaya, M; Volkan, M | 1 |
Ansar, S; Iqbal, M | 2 |
26 other study(ies) available for nitrilotriacetic acid and ascorbic acid
Article | Year |
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Model studies of the iron-catalysed Haber-Weiss cycle and the ascorbate-driven Fenton reaction.
Topics: Ascorbic Acid; Citrates; Citric Acid; Edetic Acid; Electron Spin Resonance Spectroscopy; Ferric Compounds; Ferrous Compounds; Hydroxides; Hydroxyl Radical; Hydroxylation; Iron; Nitrilotriacetic Acid; Oxidation-Reduction; Pentetic Acid; Phytic Acid; Salicylates; Salicylic Acid; Succinates; Succinic Acid; Xanthine; Xanthine Oxidase; Xanthines | 1990 |
Oxygen reduction and lipid peroxidation by iron chelates with special reference to ferric nitrilotriacetate.
Topics: Adenosine Diphosphate; Animals; Ascorbic Acid; Deferoxamine; Edetic Acid; Ferric Compounds; Iron Chelating Agents; Linoleic Acid; Linoleic Acids; Lipid Peroxidation; Liposomes; Membrane Lipids; Micelles; Microsomes, Liver; NADP; Nitrilotriacetic Acid; Oxidation-Reduction; Oxygen; Pentetic Acid; Rats; Rats, Inbred Strains | 1989 |
Mechanisms of intestinal brush border iron transport.
Topics: Animals; Ascorbic Acid; Biological Transport; Cations, Divalent; Duodenum; Ferric Compounds; Ferrous Compounds; Hypoxia; Intestinal Absorption; Intestinal Mucosa; Male; Mice; Microvilli; Nitrilotriacetic Acid; Oxidation-Reduction | 1989 |
Significance of non-esterified fatty acids in iron uptake by intestinal brush-border membrane vesicles.
Topics: Animals; Ascorbic Acid; Biological Transport; Fatty Acids, Nonesterified; Hot Temperature; Hydrogen-Ion Concentration; In Vitro Techniques; Intestinal Absorption; Intestinal Mucosa; Iron; Liposomes; Metals; Mice; Microvilli; Nitrilotriacetic Acid; Oleic Acid; Oleic Acids; Rabbits | 1988 |
Erythroblast ferritin: synthesis, structure, and function in developing erythroid cells.
Topics: Animals; Ascorbic Acid; Bone Marrow; Bone Marrow Cells; Chromatography, DEAE-Cellulose; Citrates; Cysteine; Edetic Acid; Erythrocytes; Ferritins; Glutathione; Half-Life; Hydrogen-Ion Concentration; Iron; Iron Radioisotopes; Leucine; Liver; Male; Nitrilotriacetic Acid; Rabbits; Reticulocytes; Spleen; Tritium | 1974 |
Effects of pH and chelating agents on iron binding by dietary fiber: implications for iron availability.
Topics: Ascorbic Acid; Citrates; Dietary Fiber; Edetic Acid; Hydrogen-Ion Concentration; In Vitro Techniques; Iron; Iron Chelating Agents; Ligands; Nitrilotriacetic Acid; Nutritive Value | 1983 |
Proposal for the standardization of the serum unsaturated iron binding capacity assay, and results in groups of subjects with normal iron stores and with prelatent, latent, and manifest iron deficiency.
Topics: Anemia, Hypochromic; Apoproteins; Ascorbic Acid; Carrier Proteins; Chromogenic Compounds; False Positive Reactions; Humans; Iron; Iron-Binding Proteins; Methods; Nitrilotriacetic Acid; Phenanthrolines; Photometry; Transferrin; Transferrin-Binding Proteins | 1982 |
DNA strand breaks produced by oxidative stress in mammalian cells exhibit 3'-phosphoglycolate termini.
Topics: Animals; Ascorbic Acid; Cell Line; Chlorocebus aethiops; Deoxyribose; DNA; DNA Damage; DNA Polymerase I; DNA Repair; Exodeoxyribonucleases; Ferric Compounds; Fibroblasts; Glycolates; Hydrogen Peroxide; Hydroxyl Radical; Mutagens; Nitrilotriacetic Acid; Oxidative Stress | 1995 |
Characterization of a particulate pathway for copper in K562 cells.
Topics: 2,2'-Dipyridyl; Ascorbic Acid; Biological Transport; Cell Fractionation; Cell Line; Centrifugation, Density Gradient; Ceruloplasmin; Copper; Copper Radioisotopes; Edetic Acid; Heparin Lyase; Humans; Leukemia, Erythroblastic, Acute; Nitrilotriacetic Acid; Polysaccharide-Lyases; Subcellular Fractions; Tumor Cells, Cultured | 1994 |
Iron release and uptake by plant ferritin: effects of pH, reduction and chelation.
Topics: Ascorbic Acid; Citrates; Citric Acid; Edetic Acid; Fabaceae; Ferritins; Ferrozine; Hydrogen-Ion Concentration; Iron; Iron Chelating Agents; Iron Radioisotopes; Kinetics; Nitrilotriacetic Acid; Oxidation-Reduction; Oxygen; Plants; Plants, Medicinal; Seeds | 1993 |
Characterization of transferrin-independent iron transport in K562 cells. Unique properties provide evidence for multiple pathways of iron uptake.
Topics: Ascorbic Acid; Biological Transport; Calcium; Ferric Compounds; Humans; Iron; Kinetics; Leukemia, Erythroblastic, Acute; Nitrilotriacetic Acid; Transferrin; Tumor Cells, Cultured | 1993 |
Thiopalmitic acid-mediated Fe(III)-nitrilotriacetate reduction and lipid peroxidation.
Topics: Animals; Antioxidants; Ascorbic Acid; Ferric Compounds; Glutathione; Hydrogen-Ion Concentration; In Vitro Techniques; Lipid Peroxidation; Liposomes; Male; Microsomes, Liver; Nitrilotriacetic Acid; Oxygen Consumption; Palmitic Acids; Phospholipids; Rats; Rats, Wistar; Thiobarbituric Acid Reactive Substances | 1996 |
alpha-Tocopherol (vitamin-E) ameliorates ferric nitrilotriacetate (Fe-NTA)-dependent renal proliferative response and toxicity: diminution of oxidative stress.
Topics: Animals; Ascorbic Acid; Blood Urea Nitrogen; Carcinogens; Catalase; Creatinine; Ferric Compounds; Glutathione; Glutathione Peroxidase; Glutathione Reductase; Glutathione Transferase; Hydrogen Peroxide; Kidney; Kidney Diseases; Lipid Peroxidation; Microsomes; Nitrilotriacetic Acid; Ornithine Decarboxylase; Oxidative Stress; Rats; Vitamin E | 1998 |
The host-protein-independent iron uptake by Tritrichomonas foetus.
Topics: Amiloride; Ammonium Chloride; Animals; Antiprotozoal Agents; Ascorbic Acid; Cattle; Chloroquine; Ferric Compounds; Iron; Iron Chelating Agents; Lactoferrin; Nitrilotriacetic Acid; Oxidation-Reduction; Sodium Fluoride; Transferrin; Tritrichomonas foetus | 1998 |
Non-transferrin iron uptake by trophoblast cells in culture. Significance of a NADH-dependent ferrireductase.
Topics: Adult; Ascorbic Acid; Cells, Cultured; Chorionic Villi; Female; Ferric Compounds; Ferricyanides; Ferrous Compounds; Ferrozine; FMN Reductase; Humans; Intracellular Membranes; Iron Chelating Agents; Iron Radioisotopes; NADH, NADPH Oxidoreductases; Nitrilotriacetic Acid; Pregnancy; Transferrin; Trophoblasts | 1998 |
Role of ceruloplasmin and ascorbate in cellular iron release.
Topics: Antimetabolites; Apoproteins; Ascorbic Acid; Biological Transport, Active; Cell Line; Ceruloplasmin; Ferric Compounds; Humans; Iron; Iron Radioisotopes; Kinetics; Nitrilotriacetic Acid; Temperature; Transferrin | 1999 |
Use of rat liver slices for the study of oxidative DNA damage in comparison with isolated rat liver nuclei and HepG2 human hepatoma cells.
Topics: 8-Hydroxy-2'-Deoxyguanosine; Animals; Ascorbic Acid; Bromobenzenes; Bromotrichloromethane; Carcinogens; Cell Nucleus; Deoxyguanosine; DNA Damage; Ferric Compounds; Humans; Lipid Peroxidation; Liver; Liver Neoplasms, Experimental; Nitrilotriacetic Acid; Nitroparaffins; Oxidation-Reduction; Propane; Rats; Thiobarbituric Acid Reactive Substances; Tumor Cells, Cultured | 2000 |
Protective effect of lycopene on lipid peroxidation and oxidative DNA damage in cell culture.
Topics: 8-Hydroxy-2'-Deoxyguanosine; Animals; Antioxidants; Ascorbic Acid; Carotenoids; Cell Line; Deoxyguanosine; DNA Damage; Ferric Compounds; Lipid Peroxidation; Lycopene; Mutagens; Nitrilotriacetic Acid; Oxidative Stress | 2000 |
Inhibition of the NA(+)/H(+) exchanger reduces rat hepatic stellate cell activity and liver fibrosis: an in vitro and in vivo study.
Topics: Amiloride; Animals; Anti-Arrhythmia Agents; Antineoplastic Agents; Ascorbic Acid; Carcinogens; Cell Division; Collagen; Diuretics; Ferric Compounds; Ferrous Compounds; Gene Expression; Hydrogen-Ion Concentration; In Situ Nick-End Labeling; Liver; Liver Cirrhosis; Male; Nitrilotriacetic Acid; Procollagen; Rats; Rats, Sprague-Dawley; Reactive Oxygen Species; RNA, Messenger; Sodium-Hydrogen Exchangers; Thymidine Phosphorylase; Transforming Growth Factor beta | 2001 |
A comparative study of the ability of ferric nitrilotriacetate [correction of nitriloacetate] and other iron chelators to assist membrane lipid peroxidation by superoxide radicals.
Topics: Animals; Ascorbic Acid; Carcinogens; Ferric Compounds; Hydrogen-Ion Concentration; Iron Chelating Agents; Lipid Peroxidation; Liposomes; Male; Microsomes, Liver; NADP; Nitrilotriacetic Acid; Oxidation-Reduction; Oxygen; Phosphatidylcholines; Rats; Rats, Wistar; Superoxides; Thiobarbituric Acid Reactive Substances | 2001 |
Pyridoxal isonicotinoyl hydrazone inhibits iron-induced ascorbate oxidation and ascorbyl radical formation.
Topics: Ascorbic Acid; Chelating Agents; Deoxyribose; Edetic Acid; Electron Spin Resonance Spectroscopy; Ferric Compounds; Free Radicals; Hydroxyl Radical; Isoniazid; Nitrilotriacetic Acid; Oxidation-Reduction; Oxidative Stress; Pyridoxal | 2003 |
GDP-mannose 3',5'-epimerase forms GDP-L-gulose, a putative intermediate for the de novo biosynthesis of vitamin C in plants.
Topics: Amino Acid Motifs; Arabidopsis; Ascorbic Acid; Binding, Competitive; Carbohydrate Epimerases; Carbon; Chromatography, Affinity; Chromatography, High Pressure Liquid; Dose-Response Relationship, Drug; Glutathione Transferase; Guanosine Diphosphate Sugars; Hexoses; HSP70 Heat-Shock Proteins; Kinetics; Models, Biological; Models, Chemical; Nitrilotriacetic Acid; Oxidation-Reduction; Peptides; Plasmids; Protein Folding; Recombinant Proteins; Time Factors | 2003 |
Punica granatum (pomegranate) flower extract possesses potent antioxidant activity and abrogates Fe-NTA induced hepatotoxicity in mice.
Topics: Animals; Antioxidants; Ascorbic Acid; Biphenyl Compounds; Catalase; Chemical and Drug Induced Liver Injury; Ferric Compounds; Flowers; Free Radical Scavengers; Glutathione; Glutathione Peroxidase; Glutathione Transferase; Hydrogen Peroxide; Hydroxyl Radical; Lipid Peroxidation; Liver; Liver Function Tests; Lythraceae; Male; Mice; Nitric Oxide; Nitrilotriacetic Acid; Oxidants; Oxidation-Reduction; Oxidoreductases; Phenols; Picrates; Plant Extracts; Subcellular Fractions; Superoxides | 2006 |
New approach for the surface enhanced resonance Raman scattering (SERRS) detection of dopamine at picomolar (pM) levels in the presence of ascorbic acid.
Topics: Ascorbic Acid; Dopamine; Humans; Iron; Metal Nanoparticles; Nitrilotriacetic Acid; Parkinson Disease; Silver; Spectrum Analysis, Raman | 2012 |
Ascorbic acid inhibits ferric nitrilotriacetate induction of ornithine decarboxylase, DNA synthesis, oxidative stress, and hepatotoxicity in rats.
Topics: Animals; Antioxidants; Ascorbic Acid; Chemical and Drug Induced Liver Injury; DNA; Ferric Compounds; L-Lactate Dehydrogenase; Lipid Peroxidation; Liver; Male; Nitrilotriacetic Acid; Ornithine Decarboxylase; Oxidative Stress; Protein Carbonylation; Rats; Transaminases | 2015 |
Role of ascorbic acid in counteracting ferric nitrilotriacetate-induced nephrotoxicity in rats.
Topics: Animals; Antioxidants; Ascorbic Acid; Ferric Compounds; Glutathione; Glutathione Peroxidase; Glutathione Transferase; Kidney Diseases; Lipid Peroxidation; Male; Microsomes; Nitrilotriacetic Acid; Oxidative Stress; Rats; Rats, Wistar | 2013 |