hydrogen carbonate has been researched along with asparagine in 10 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 6 (60.00) | 18.7374 |
1990's | 0 (0.00) | 18.2507 |
2000's | 2 (20.00) | 29.6817 |
2010's | 2 (20.00) | 24.3611 |
2020's | 0 (0.00) | 2.80 |
Authors | Studies |
---|---|
Martin, DW; Murphy, B | 1 |
Anderson, PM; Meister, A; Wellner, VP | 1 |
Horiuchi, T; Ishitoya, T; Suzuki, H; Taguchi, Y | 1 |
Balling, R; Coon, C | 1 |
Breuer, LH; Loosli, JK; Pond, WG; Warner, RG | 1 |
ROTHSTEIN, M | 1 |
Amadò, R; Amrein, TM; Escher, F; Schönbächler, B | 1 |
Amado, R; Amrein, TM; Andres, L; Manzardo, GG | 1 |
Adina-Zada, A; Attwood, PV; Jitrapakdee, S; Wallace, JC | 1 |
Chauhan, VS; Kumari, P; Sahal, D | 1 |
10 other study(ies) available for hydrogen carbonate and asparagine
Article | Year |
---|---|
Carbamyl phosphate and glutamine stimulation of the gallbladder salt pump.
Topics: Acetates; Animals; Asparagine; Aspartic Acid; Azaserine; Bicarbonates; Biological Transport, Active; Carbamates; Gallbladder; Glutamates; Glutamine; Hydrogen-Ion Concentration; Kinetics; Organophosphorus Compounds; Rabbits; Sodium Chloride; Water | 1974 |
Interaction of Escherichia coli carbamyl phosphate synthetase with glutamine.
Topics: Adenosine Triphosphate; Amides; Amino Acids; Asparagine; Bicarbonates; Binding Sites; Carbamates; Carbon Isotopes; Chromatography, Gel; Escherichia coli; Glutaminase; Glutamine; Keto Acids; Kinetics; Magnesium; Molecular Weight; Phosphotransferases; Protein Binding; Protein Denaturation; Spectrophotometry, Ultraviolet; Stereoisomerism; Structure-Activity Relationship | 1973 |
Correction of severe metabolic acidosis by peritoneal dialysis in cyanotic babies.
Topics: Acid-Base Equilibrium; Acidosis; Aorta; Aortic Coarctation; Asparagine; Bicarbonates; Blood Gas Analysis; Cerebral Angiography; Cyanosis; Ductus Arteriosus, Patent; Electrocardiography; Female; Humans; Hydrogen-Ion Concentration; Infant; Infant, Newborn; Infant, Newborn, Diseases; Male; Peritoneal Dialysis; Potassium; Sodium; Venae Cavae | 1968 |
Asparagine and glutamine metabolism in chicks.
Topics: Amino Acids; Ammonium Chloride; Animals; Asparaginase; Asparagine; Bicarbonates; Chickens; Dietary Proteins; Glutaminase; Glutamine; Kidney; Liver; Mitochondria; Mitochondria, Liver; Sodium Bicarbonate | 1984 |
THE ROLE OF DISPENSABLE AMINO ACIDS IN THE NUTRITION OF THE RAT.
Topics: Alanine; Amino Acids; Arginine; Asparagine; Aspartic Acid; Bicarbonates; Caseins; Cystine; Dietary Proteins; Glutamates; Glycine; Growth; Histidine; Isoleucine; Lysine; Methionine; Phenylalanine; Proline; Proteins; Rats; Research; Serine; Tyrosine | 1964 |
NEMATODE BIOCHEMISTRY. V. INTERMEDIARY METABOLISM AND AMINO ACID INTERCONVERSIONS IN CAENORHABDITIS BRIGGSAE.
Topics: Acetates; Alanine; Amino Acids; Aminobutyrates; Animals; Asparagine; Aspartic Acid; Bicarbonates; Caenorhabditis; Carbon Dioxide; Chromatography; Formates; Glutamates; Glutamine; Glycine; Malates; Nematoda; Phenylalanine; Research; Serine; Taurine; Tyrosine | 1965 |
Factors influencing acrylamide formation in gingerbread.
Topics: Acrylamide; Acrylates; Asparaginase; Asparagine; Bicarbonates; Bread; Carbohydrates; Citric Acid; Cooking; Food; Food Analysis; Food Handling; Food Preservation; Glycine; Hot Temperature; Quaternary Ammonium Compounds; Sucrose; Temperature; Time Factors | 2005 |
Investigations on the promoting effect of ammonium hydrogencarbonate on the formation of acrylamide in model systems.
Topics: Acrylamide; Asparagine; Bicarbonates; Fructose; Glucose; Maillard Reaction; Pyruvaldehyde; Quaternary Ammonium Compounds | 2006 |
Coordinating role of His216 in MgATP binding and cleavage in pyruvate carboxylase.
Topics: Adenosine Diphosphate; Adenosine Triphosphate; Amino Acid Sequence; Asparagine; Bicarbonates; Binding Sites; Carbamyl Phosphate; Histidine; Kinetics; Models, Molecular; Mutagenesis, Site-Directed; Protein Structure, Quaternary; Pyruvate Carboxylase; Rhizobium etli; Ultracentrifugation | 2014 |
Dendrimeric template of Plasmodium falciparum histidine rich protein II repeat motifs bearing Asp→Asn mutation exhibits heme binding and β-hematin formation.
Topics: Amino Acid Motifs; Amino Acid Sequence; Antigens, Protozoan; Asparagine; Aspartic Acid; Bicarbonates; Binding Sites; Chromatography, High Pressure Liquid; Chromatography, Reverse-Phase; Dendrimers; Heme; Hemeproteins; Kinetics; Mass Spectrometry; Molecular Sequence Data; Mutation; Plasmodium falciparum; Protein Binding; Protein Stability; Protozoan Proteins; Repetitive Sequences, Amino Acid; Spectrum Analysis; Structure-Activity Relationship; Titrimetry | 2014 |