Krapf, S.A.; Lund, J.; Saqib, A.U.R.; Bakke, H.G.; Rustan, A.C.; Thoresen, G.H.; Kase, E.T.
Pancreatic Cancer Cell-Conditioned, Human-Derived Primary Myotubes Display Increased Leucine Turnover, Increased Lipid Accumulation, and Reduced Glucose Uptake. Metabolites 2022, 12, 1095.
https://doi.org/10.3390/metabo12111095
AMA Style
Krapf SA, Lund J, Saqib AUR, Bakke HG, Rustan AC, Thoresen GH, Kase ET.
Pancreatic Cancer Cell-Conditioned, Human-Derived Primary Myotubes Display Increased Leucine Turnover, Increased Lipid Accumulation, and Reduced Glucose Uptake. Metabolites. 2022; 12(11):1095.
https://doi.org/10.3390/metabo12111095
Chicago/Turabian Style
Krapf, Solveig A., Jenny Lund, Awais Ur Rehman Saqib, Hege G. Bakke, Arild C. Rustan, G. Hege Thoresen, and Eili T. Kase.
2022. "Pancreatic Cancer Cell-Conditioned, Human-Derived Primary Myotubes Display Increased Leucine Turnover, Increased Lipid Accumulation, and Reduced Glucose Uptake" Metabolites 12, no. 11: 1095.
https://doi.org/10.3390/metabo12111095
APA Style
Krapf, S. A., Lund, J., Saqib, A. U. R., Bakke, H. G., Rustan, A. C., Thoresen, G. H., & Kase, E. T.
(2022). Pancreatic Cancer Cell-Conditioned, Human-Derived Primary Myotubes Display Increased Leucine Turnover, Increased Lipid Accumulation, and Reduced Glucose Uptake. Metabolites, 12(11), 1095.
https://doi.org/10.3390/metabo12111095