citric acid, anhydrous has been researched along with oxaloacetic acid in 27 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 6 (22.22) | 18.7374 |
1990's | 2 (7.41) | 18.2507 |
2000's | 9 (33.33) | 29.6817 |
2010's | 9 (33.33) | 24.3611 |
2020's | 1 (3.70) | 2.80 |
Authors | Studies |
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Abboud, MI; Langley, GW; Lohans, CT; Schofield, CJ | 1 |
Bulat, MN; Kazbekov, EN; Lyubimov, Ya; Rebane, EN | 1 |
Allen, DL; DeRose, EF; Gabel, SA; London, RE | 1 |
Christensen, B; Nielsen, J | 1 |
Chen, J; Danson, MJ; Drysdale, G; Kurz, LC; Riley, M; Russell, RJ; Tomar, MA | 1 |
Comte, B; Poirier, M; Rosiers, CD; Vincent, G | 1 |
Decking, UK; Deussen, A; Preckel, B; Schrader, J; Skwirba, S; Thämer, V; Zimmermann, MF | 1 |
Jetton, TL; Leahy, JL; Liu, YQ | 1 |
Berggren, PO; Efanov, AM; Honkanen, RE; Lehtihet, M; Sjöholm, A; Zaitsev, SV | 1 |
TYLER, DB | 1 |
SRERE, PA | 1 |
CREUTZFELDT, W; GARLEPP, HE; SOELING, HD | 1 |
DATTA, SP; TATE, SS | 1 |
Ballard, FJ; Hanson, RW | 1 |
GUNSALUS, IC; KORKES, S; OCHOA, S; STERN, JR | 1 |
Epstein, PN; Han, J; Liu, YQ; Long, YS | 1 |
Eisenreich, W; Fuchs, G; Huber, H; Hügler, M; Jahn, U | 1 |
Augagneur, Y; Garmyn, D; Guzzo, J | 1 |
Daniele, A; Passarella, S; Paventi, G; Pizzuto, R; Porcile, C; Sarnataro, D | 1 |
Blancato, VS; Lolkema, JS; Magni, C; Mortera, P; Repizo, GD | 1 |
Alves, TC; Cline, GW; Kibbey, RG; Mason, G; Pongratz, RL; Sereda, S; Shirihai, O; Yarborough, O; Zhao, X | 1 |
Chaplin, VD; Hangasky, JA; Knapp, MJ; Valliere, MA | 1 |
Day, DA; Deckers-Hebestreit, G; Hartmann, A; Scheibe, R; Selinski, J; Whelan, J | 1 |
Bačnik, K; Berg, IA; Boll, M; Eisenreich, W; Huber, C; Hügler, M; Kowarschik, S; Mall, A; Mergelsberg, M; Sobotta, J; Tschirner, C | 1 |
Abriola, P; Bisaccia, F; Convertini, P; D'Angelo, S; Infantino, V; Leccese, P; Padula, A; Santarsiero, A | 1 |
Figueroa, CM; Hartman, MD; Iglesias, AA; Leaden, L; Podestá, FE; Rojas, BE | 1 |
Abdoul-Carime, H; Bald, I; Kopyra, J; Rabilloud, F; Thiam, G; Tulwin, A; Wierzbicka, P | 1 |
1 review(s) available for citric acid, anhydrous and oxaloacetic acid
Article | Year |
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Metabolic network analysis. A powerful tool in metabolic engineering.
Topics: Acetyl Coenzyme A; Algorithms; Biomass; Biomedical Technology; Citric Acid; Citric Acid Cycle; Glucose-6-Phosphate; Isocitrates; Lysine; Mannitol; Metabolism; Models, Biological; Oxaloacetic Acid; Propionates; Pyruvic Acid; Saccharomyces cerevisiae | 2000 |
26 other study(ies) available for citric acid, anhydrous and oxaloacetic acid
Article | Year |
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Inhibition of a viral prolyl hydroxylase.
Topics: Enzyme Assays; Hydroxylation; Hypoxia-Inducible Factor-Proline Dioxygenases; Ketoglutaric Acids; Oligopeptides; Phycodnaviridae; Procollagen-Proline Dioxygenase; Prolyl-Hydroxylase Inhibitors; Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization | 2019 |
The mechanism of coupling of the organic anion exchange to Na(+)-dicarboxylate symport in basolateral membrane vesicles.
Topics: Animals; Anion Transport Proteins; Anions; Biological Transport; Carrier Proteins; Cell Membrane; Cell Polarity; Citric Acid; Dicarboxylic Acids; Fumarates; Glutarates; Ion Transport; Isocitrates; Ketoglutaric Acids; Kidney Tubules, Proximal; Oxaloacetic Acid; p-Aminohippuric Acid; Rats; Sodium; Sodium Channels; Succinic Acid; Uric Acid | 1998 |
Carbon-13 nuclear magnetic resonance study of metabolism of propionate by Escherichia coli.
Topics: Acyl Coenzyme A; Alanine; Carbon Isotopes; Cell Wall; Citrates; Citric Acid; Citric Acid Cycle; Escherichia coli; Formates; Gluconeogenesis; Glutamic Acid; Glycine; Magnetic Resonance Spectroscopy; Methylmalonic Acid; Oxaloacetic Acid; Propionates; Protons; Putrescine; Pyruvic Acid; Succinic Acid; Trehalose | 1999 |
Kinetics and mechanism of the citrate synthase from the thermophilic archaeon Thermoplasma acidophilum.
Topics: Acetyl Coenzyme A; Acyl Coenzyme A; Animals; Circular Dichroism; Citrate (si)-Synthase; Citric Acid; Coenzyme A; Enzyme Activation; Enzyme Inhibitors; Hydrogen-Ion Concentration; Isoelectric Point; Kinetics; Nuclear Magnetic Resonance, Biomolecular; Oxaloacetic Acid; Protons; Solvents; Substrate Specificity; Swine; Temperature; Thermoplasma | 2000 |
Citrate release by perfused rat hearts: a window on mitochondrial cataplerosis.
Topics: Acetyl Coenzyme A; Animals; Caprylates; Citric Acid; Energy Metabolism; Gas Chromatography-Mass Spectrometry; Glucose; In Vitro Techniques; Indicator Dilution Techniques; Insulin; L-Lactate Dehydrogenase; Lactic Acid; Male; Mitochondria, Heart; Myocardium; Oxaloacetic Acid; Pyruvic Acid; Rats; Rats, Sprague-Dawley | 2000 |
Spatial heterogeneity of energy turnover in the heart.
Topics: Alanine; Animals; Aspartic Acid; Carbon Isotopes; Citric Acid; Citric Acid Cycle; Coronary Circulation; Dogs; Energy Metabolism; Glutamic Acid; Ketoglutaric Acids; Lactic Acid; Magnetic Resonance Spectroscopy; Malates; Models, Biological; Myocardium; Oxaloacetic Acid; Oxygen Consumption; Pyruvic Acid | 2001 |
beta-Cell adaptation to insulin resistance. Increased pyruvate carboxylase and malate-pyruvate shuttle activity in islets of nondiabetic Zucker fatty rats.
Topics: Animals; Body Weight; Citric Acid; Dose-Response Relationship, Drug; Glucose; Glycerol; Insulin Resistance; Islets of Langerhans; Kinetics; Malate Dehydrogenase; Malates; Mitochondria; Oxaloacetic Acid; Pancreas; Perfusion; Phenylacetates; Pyruvate Carboxylase; Pyruvic Acid; Rats; Rats, Zucker; Time Factors | 2002 |
Glucose metabolites inhibit protein phosphatases and directly promote insulin exocytosis in pancreatic beta-cells.
Topics: Animals; Calcium; Citric Acid; Drug Synergism; Enzyme Inhibitors; Exocytosis; Fructosediphosphates; Glucose; Glyceric Acids; Guanosine Triphosphate; Insulin; Insulinoma; Islets of Langerhans; Okadaic Acid; Oxaloacetic Acid; Pancreatic Neoplasms; Phosphoenolpyruvate; Phosphoprotein Phosphatases; Phosphorylation; Rats; Tumor Cells, Cultured | 2002 |
Effect of citric acid-cycle intermediates on oxaloacetate utilization and succinate oxidation.
Topics: Citric Acid; Citric Acid Cycle; Keto Acids; Metabolism; Oxaloacetates; Oxaloacetic Acid; Succinates; Succinic Acid | 1960 |
SPECTRAL EVIDENCE FOR COMPLEX FORMATION BETWEEN OXALOACETATE AND CITRATE-CONDENSING ENZYME.
Topics: Acetates; Chemical Phenomena; Chemistry; Citrate (si)-Synthase; Citrates; Citric Acid; Lyases; Oxaloacetates; Oxaloacetic Acid; Research; Spectrophotometry | 1965 |
[RELATION BETWEEN GLUCOSE AND KETONE BODY METABOLISM IN EVISCERATED, NEPHRECTOMIZED RATS AND THE EFFECT OF OXALOACETATE, CITRATE AND PYRUVATE ON PERIPHERAL UPTAKE OF KETONE BODIES].
Topics: Acetoacetates; Adipose Tissue; Citrates; Citric Acid; Diaphragm; Fatty Acids; Glucose; Glycogen; Keto Acids; Ketone Bodies; Muscles; Nephrectomy; Oxaloacetates; Oxaloacetic Acid; Pharmacology; Pyruvates; Pyruvic Acid; Rats; Research | 1965 |
THE EQUILIBRIUM OF THE REACTION CATALYSED BY CITRATE OXALOACETATE-LYASE.
Topics: Acetyl Coenzyme A; Biochemical Phenomena; Biochemistry; Catalysis; Chemistry Techniques, Analytical; Citrates; Citric Acid; Coenzyme A; Enterobacter aerogenes; Hydrolysis; Lyases; Magnesium; Multienzyme Complexes; Oxaloacetates; Oxaloacetic Acid; Oxo-Acid-Lyases; Research; Thermodynamics | 1965 |
The citrate cleavage pathway and lipogenesis in rat adipose tissue: replenishment of oxaloacetate.
Topics: Adipose Tissue; Animals; Citric Acid; Fatty Acids; In Vitro Techniques; Lipids; Malate Dehydrogenase; Male; Models, Biological; Oxaloacetic Acid; Pyruvate Carboxylase; Rats; Rats, Wistar | 1967 |
Enzymatic synthesis of citrate from pyruvate and oxalacetate.
Topics: Citrates; Citric Acid; Enzymes; Oxaloacetates; Oxaloacetic Acid; Pyruvates; Pyruvic Acid | 1950 |
Enhanced rat beta-cell proliferation in 60% pancreatectomized islets by increased glucose metabolic flux through pyruvate carboxylase pathway.
Topics: Animals; Antimetabolites, Antineoplastic; Cell Count; Cell Proliferation; Citric Acid; DNA; Glucose; Islets of Langerhans; Malates; Male; Mitochondria; Models, Biological; Oxaloacetic Acid; Oxidation-Reduction; Pancreatectomy; Phenylacetates; Proteins; Pyruvate Carboxylase; Pyruvate Dehydrogenase Complex; Pyruvic Acid; Rats; Rats, Sprague-Dawley; Streptavidin | 2005 |
Insights into the autotrophic CO2 fixation pathway of the archaeon Ignicoccus hospitalis: comprehensive analysis of the central carbon metabolism.
Topics: 2-Aminoadipic Acid; Acetyl Coenzyme A; Archaea; Autotrophic Processes; Carbon; Carbon Dioxide; Carbon Isotopes; Citrate (si)-Synthase; Citric Acid; Fructose-Bisphosphate Aldolase; Gluconeogenesis; Glycolysis; Hexosephosphates; Isoleucine; Lysine; Magnetic Resonance Spectroscopy; Malates; Models, Biological; Molecular Structure; Oxaloacetic Acid; Pentosephosphates; Phosphoenolpyruvate; Phosphoenolpyruvate Carboxylase; Pyruvate Synthase; Pyruvates | 2007 |
Mutation of the oxaloacetate decarboxylase gene of Lactococcus lactis subsp. lactis impairs the growth during citrate metabolism.
Topics: Acetoin; Bacteriological Techniques; Base Sequence; Carboxy-Lyases; Citric Acid; Diacetyl; Fermentation; Food Microbiology; Genes, Bacterial; Genetic Engineering; Hydrogen-Ion Concentration; Lactococcus lactis; Molecular Sequence Data; Mutation; Oxaloacetic Acid | 2008 |
l-Lactate metabolism in HEP G2 cell mitochondria due to the l-lactate dehydrogenase determines the occurrence of the lactate/pyruvate shuttle and the appearance of oxaloacetate, malate and citrate outside mitochondria.
Topics: Citric Acid; Hep G2 Cells; Humans; L-Lactate Dehydrogenase; Lactic Acid; Malates; Mitochondria; Oxaloacetic Acid; Pyruvic Acid | 2012 |
Biochemical and genetic characterization of the Enterococcus faecalis oxaloacetate decarboxylase complex.
Topics: Amino Acid Sequence; Bacterial Proteins; Carboxy-Lyases; Citric Acid; Cytoplasm; Enterococcus faecalis; Escherichia coli; Fermentation; Hydrogen-Ion Concentration; Multienzyme Complexes; Oxaloacetic Acid; Protein Subunits; Recombinant Proteins; Sequence Deletion; Transgenes | 2013 |
Integrated, Step-Wise, Mass-Isotopomeric Flux Analysis of the TCA Cycle.
Topics: Acetyl Coenzyme A; Animals; Carbon Isotopes; Citrates; Citric Acid; Citric Acid Cycle; Insulin; Isocitrate Dehydrogenase; Oxaloacetic Acid; Oxidation-Reduction; Oxygen Consumption; Pyruvate Carboxylase; Pyruvate Dehydrogenase Complex; Pyruvic Acid; Rats | 2015 |
Investigations on the role of a solvent tunnel in the α-ketoglutarate dependent oxygenase factor inhibiting HIF (FIH).
Topics: Catalytic Domain; Citric Acid; Dose-Response Relationship, Drug; Electrophoresis, Polyacrylamide Gel; Genetic Variation; Humans; Hypoxia-Inducible Factor 1; Ketoglutaric Acids; Kinetics; Oxaloacetic Acid; Oxygenases; Solvents | 2018 |
Alternative Oxidase Isoforms Are Differentially Activated by Tricarboxylic Acid Cycle Intermediates.
Topics: Amino Acid Substitution; Citric Acid; Citric Acid Cycle; Cysteine; Enzyme Activation; Escherichia coli; Isoenzymes; Ketoglutaric Acids; Malates; Mitochondrial Proteins; Oxaloacetic Acid; Oxidoreductases; Plant Proteins | 2018 |
Reversibility of citrate synthase allows autotrophic growth of a thermophilic bacterium.
Topics: Acetyl Coenzyme A; Adenosine Triphosphate; Autotrophic Processes; Carbon Cycle; Carbon Dioxide; Citrate (si)-Synthase; Citric Acid; Deltaproteobacteria; Oxaloacetic Acid | 2018 |
New Insights into Behçet's Syndrome Metabolic Reprogramming: Citrate Pathway Dysregulation.
Topics: Acetyl Coenzyme A; Adult; Anion Transport Proteins; ATP Citrate (pro-S)-Lyase; Behcet Syndrome; Case-Control Studies; Citric Acid; Female; Humans; Inflammation; Leukocytes, Mononuclear; Macrophages; Male; Metabolic Syndrome; Middle Aged; Mitochondria; Mitochondrial Proteins; Organic Anion Transporters; Oxaloacetic Acid; RNA, Messenger; Up-Regulation | 2018 |
Biochemical characterization of phosphoenolpyruvate carboxykinases from Arabidopsis thaliana.
Topics: Adenosine Triphosphate; Allosteric Regulation; Arabidopsis; Arabidopsis Proteins; Citric Acid; Escherichia coli; Fluorometry; Fumarates; Kinetics; Malates; Manganese; Oxaloacetic Acid; Phosphoenolpyruvate Carboxykinase (ATP); Photosynthesis; Protein Binding; Recombinant Proteins; Succinic Acid; Transition Temperature | 2019 |
Experimental and Theoretical Studies of Dissociative Electron Attachment to Metabolites Oxaloacetic and Citric Acids.
Topics: Anions; Citric Acid; Electrons; Gases; Models, Theoretical; Oxaloacetic Acid; Quantum Theory | 2021 |