lithium has been researched along with asparagine in 15 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 12 (80.00) | 18.7374 |
1990's | 1 (6.67) | 18.2507 |
2000's | 2 (13.33) | 29.6817 |
2010's | 0 (0.00) | 24.3611 |
2020's | 0 (0.00) | 2.80 |
Authors | Studies |
---|---|
Houpert, Y; Siest, G; Tarallo, P | 1 |
VĂ¡radi, A | 1 |
Iijima, T; Sato, T | 1 |
Yamamoto, M; Young, JL | 1 |
Benson, JV | 1 |
Kedenburg, CP | 1 |
Nunn, PB; Vega, A | 1 |
Atkin, GE; Ferdinand, W | 1 |
Berridge, BJ; Cummings, JG; Lin, SC; Peters, JH | 1 |
Berridge, BJ; Chao, WR; Cummings, JG; Lin, SC; Peters, JH | 1 |
Christensen, HN; Vadgama, JV | 1 |
Christensen, HN; Handlogten, ME; Kilberg, MS | 1 |
Inoue, K; Nakazawa, K; Ohno, Y | 1 |
Bode, BP; Pawlik, TM; Souba, WW | 1 |
Bush, LA; Cantwell, AM; Di Cera, E; Prasad, S; Shih, P; Xu, H | 1 |
15 other study(ies) available for lithium and asparagine
Article | Year |
---|---|
Amino acid analysis by ion-exchange chromatography using a lithium elution gradient. Influence of methanol concentration and sample pH.
Topics: Amino Acids; Asparagine; Chromatography, Ion Exchange; Glutamates; Glutamine; Granulocytes; Humans; Hydrogen-Ion Concentration; Ion Exchange Resins; Lithium; Methanol | 1975 |
Thin-layer chromatography on a chromatosheet coated with resin in different ionic forms for the separation of amino acid mixtures containing asparagine and glutamine.
Topics: Asparagine; Buffers; Chromatography, Ion Exchange; Chromatography, Thin Layer; Citrates; Glutamine; Ion Exchange Resins; Lithium; Mathematics | 1975 |
A modified lithium buffer system for analysis of acidic and neutral amino acids in physiological fluids.
Topics: Amino Acids; Asparagine; Blood Chemical Analysis; Body Fluids; Buffers; Citrates; Cystine; Glutamine; Humans; Hydrogen-Ion Concentration; Leucine; Lithium; Methods; Urine | 1974 |
Step-change versus gradient lithium buffers for single-column chromatography of complex amino acid mixtures.
Topics: Amino Acids; Asparagine; Buffers; Chromatography; Glutamine; Hydrogen-Ion Concentration; Indicator Dilution Techniques; Lithium; Methods | 1973 |
Multiple resins for analysis of amino acids and ninhydrin-positive compounds in hydrolyzates and physiological fluids.
Topics: Amino Acids; Asparagine; Buffers; Chromatography, Ion Exchange; Citrates; Glutamine; Humans; Hydrolysis; Ion Exchange Resins; Lithium; Methods; Peptides; Time Factors | 1972 |
A lithium buffer system for accelerated single-column amino acid analysis in physiological fluids.
Topics: Amino Acids; Amniotic Fluid; Animals; Asparagine; Autoanalysis; Buffers; Cattle; Chromatography, Ion Exchange; Citrates; Female; Glutamine; Hydrogen-Ion Concentration; Indicators and Reagents; Ion Exchange Resins; Lithium; Methods; Pregnancy; Sheep; Temperature | 1971 |
A lithium buffer system for single-column amino acid analysis.
Topics: Amino Acids; Asparagine; Autoanalysis; Buffers; Chromatography, Ion Exchange; Citrates; Glutamine; Hot Temperature; Indicators and Reagents; Lithium; Serine; Threonine | 1969 |
Accelerated amino acid analysis: studies on the use of lithium citrate buffers and the effect of n-propanol, in the analysis of physiological fluids and protein hydrolyzates.
Topics: 1-Propanol; Amino Acids; Asparagine; Autoanalysis; Buffers; Chromatography, Ion Exchange; Citrates; Glutamine; Hydrogen-Ion Concentration; Lithium; Methods; Protein Hydrolysates; Time Factors | 1970 |
Column chromatographic analysis of neutral and acidic amino acids using lithium buffers.
Topics: Adipates; Amino Acids; Aminobutyrates; Asparagine; Autoanalysis; Buffers; Chromatography, Ion Exchange; Citrulline; Fasting; Glutamine; Humans; Hydrogen-Ion Concentration; Indicators and Reagents; Lithium; Methods; Proline; Spectrophotometry; Time Factors | 1968 |
Amino acids, including asparagine and glutamine, in plasma and urine of normal human subjects.
Topics: Adult; Amino Acids; Asparagine; Autoanalysis; Buffers; Chromatography; Citrates; Creatinine; Female; Glutamine; Humans; Lithium; Male; Methods; Spectrophotometry; Tryptophan | 1969 |
Comparison of system N in fetal hepatocytes and in related cell lines.
Topics: Aging; Amino Acids; Aminoisobutyric Acids; Animals; Asparagine; Biological Transport; Carcinoma, Ehrlich Tumor; Carcinoma, Hepatocellular; Cell Line; Ethylmaleimide; Glutamine; Histidine; Humans; Hydrogen-Ion Concentration; Lithium; Liver; Liver Neoplasms; Sodium | 1983 |
Characteristics of an amino acid transport system in rat liver for glutamine, asparagine, histidine, and closely related analogs.
Topics: Amino Acids; Animals; Asparagine; Biological Transport; Cells, Cultured; Choline; Glutamine; Histidine; Hydrogen-Ion Concentration; Kinetics; Lithium; Liver; Male; Rats; Sodium; Structure-Activity Relationship | 1980 |
An asparagine residue regulating conductance through P2X2 receptor/channels.
Topics: Animals; Asparagine; Binding Sites; Calcium; Cations; Cesium; Ion Channels; Lithium; Magnesium; Mutagenesis, Site-Directed; Receptors, Purinergic P2; Receptors, Purinergic P2X2; Sodium; Xenopus | 1998 |
Asparagine uptake in rat hepatocytes: resolution of a paradox and insights into substrate-dependent transporter regulation.
Topics: Amino Acids; Androstadienes; Animals; Asparagine; Binding, Competitive; Biological Transport; Cells, Cultured; Chromones; Dose-Response Relationship, Drug; Glutamine; Hepatocytes; Kinetics; Lithium; Male; Models, Biological; Morpholines; Ornithine Decarboxylase; Phosphatidylinositol 3-Kinases; Phosphoinositide-3 Kinase Inhibitors; Rats; Rats, Sprague-Dawley; Signal Transduction; Sodium; Substrate Specificity; Time Factors; Wortmannin | 2001 |
Residue Asp-189 controls both substrate binding and the monovalent cation specificity of thrombin.
Topics: Alanine; Allosteric Site; Asparagine; Aspartic Acid; Binding Sites; Cations; Dose-Response Relationship, Drug; Glutamine; Humans; Hydrolysis; Ions; Kinetics; Lithium; Mutagenesis, Site-Directed; Mutation; Protein Binding; Protein Conformation; Rubidium; Serine; Sodium; Substrate Specificity; Thrombin; Trypsin | 2004 |