lactic acid has been researched along with 2-deoxyglucose-6-phosphate in 6 studies
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 2 (33.33) | 18.2507 |
2000's | 4 (66.67) | 29.6817 |
2010's | 0 (0.00) | 24.3611 |
2020's | 0 (0.00) | 2.80 |
Authors | Studies |
---|---|
Hertz, L; Juurlink, BH; Marrif, H; Newman, GC; Peng, L; Swanson, RA | 1 |
Huang, MT | 1 |
Cao-Danh, H; Cowan, DB; del Nido, PJ; Friehs, I; McGowan, FX; Stamm, C | 1 |
Clow, KA; Driedzic, WR; MacCormack, TJ; Rodnick, KJ | 1 |
Fokt, I; Ginalski, K; Krishan, A; Kurtoglu, M; Lampidis, TJ; Lesyng, B; Liu, H; Maher, JC; Priebe, W; Rudnicki, WR; Sheft, V; Szymanski, S | 1 |
Eijgelshoven, MH; Jameel, MN; Mansoor, A; Wang, X; Zhang, J | 1 |
6 other study(ies) available for lactic acid and 2-deoxyglucose-6-phosphate
Article | Year |
---|---|
Can experimental conditions explain the discrepancy over glutamate stimulation of aerobic glycolysis?
Topics: Aerobiosis; Animals; Astrocytes; Cells, Cultured; Culture Media; Deoxyglucose; Dose-Response Relationship, Drug; Glucose; Glucose-6-Phosphate; Glutamic Acid; Glycolysis; Lactic Acid; Mice; Osmolar Concentration; Rats | 1998 |
Glycogen turnover in skeletal muscle is stimulated along with glucose uptake in vivo during contraction.
Topics: Animals; Blood Glucose; Glucose; Glucose-6-Phosphate; Glycogen; Lactic Acid; Male; Muscle Contraction; Muscle, Skeletal; Rats; Rats, Wistar | 1998 |
Postnatal increase in insulin-sensitive glucose transporter expression is associated with improved recovery of postischemic myocardial function.
Topics: Age Factors; Animals; Biological Transport; Biomarkers; Disease Models, Animal; Female; Glucose-6-Phosphate; Heart Ventricles; Insulin Resistance; Lactic Acid; Male; Models, Cardiovascular; Monosaccharide Transport Proteins; Myocardial Contraction; Myocardial Ischemia; Myocardium; Rabbits; Recovery of Function; Statistics as Topic; Ventricular Pressure | 2003 |
The regulation and importance of glucose uptake in the isolated Atlantic cod heart: rate-limiting steps and effects of hypoxia.
Topics: Analysis of Variance; Animals; Biological Transport, Active; Cytochalasin B; Deoxyglucose; Fishes; Glucose; Glucose-6-Phosphate; Glycogen; Heart; Hypoxia; Lactic Acid; Mannitol; Myocardium; Phlorhizin; Sodium; Time Factors | 2004 |
Efficacy of 2-halogen substituted D-glucose analogs in blocking glycolysis and killing "hypoxic tumor cells".
Topics: Cell Hypoxia; Cell Line, Tumor; Cell Proliferation; Cell Survival; Deoxyglucose; Drug Design; Fluorodeoxyglucose F18; Glucose-6-Phosphate; Glycolysis; Halogens; Hexokinase; Humans; Lactic Acid; Models, Molecular; Quantitative Structure-Activity Relationship; Thermodynamics | 2006 |
Transmural distribution of metabolic abnormalities and glycolytic activity during dobutamine-induced demand ischemia.
Topics: Adenosine Triphosphate; Animals; Coronary Circulation; Coronary Stenosis; Disease Models, Animal; Dobutamine; Dogs; Endocardium; Energy Metabolism; Glucose-6-Phosphate; Glycolysis; Hemodynamics; Lactic Acid; Magnetic Resonance Spectroscopy; Myocardial Ischemia; Myocardium; Oxygen Consumption; Pericardium; Phosphocreatine | 2008 |