19 results on '"Schlimpert, Manuel"'
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2. Anaerobic Glycolysis Maintains the Glomerular Filtration Barrier Independent of Mitochondrial Metabolism and Dynamics
3. Cells grown in three-dimensional spheroids mirror in vivo metabolic response of epithelial cells
4. Cathepsin D deficiency in mammary epithelium transiently stalls breast cancer by interference with mTORC1 signaling
5. Alterations of the exo- and endometabolite profiles in breast cancer cell lines: A mass spectrometry-based metabolomics approach
6. Metabolic perturbations caused by depletion of nephronophthisis factor Anks6 in mIMCD3 cells
7. Metabolic profiling of breast cancer: Differences in central metabolism between subtypes of breast cancer cell lines
8. Metabolic Phenotyping of Anks3 Depletion in mIMCD-3 cells - a Putative Nephronophthisis Candidate
9. Double deficiency of cathepsins B and L results in massive secretome alterations and suggests a degradative cathepsin-MMP axis
10. Conditional Gene Targeting Reveals Cell Type-Specific Roles of the Lysosomal Protease Cathepsin L in Mammary Tumor Progression
11. The Gb3-enriched CD59/flotillin plasma membrane domain regulates host cell invasion byPseudomonas aeruginosa
12. Impact of left ventricular assist device therapy on the cardiac proteome and metabolome composition in ischemic cardiomyopathy
13. Unraveling altered RNA metabolism in pancreatic cancer cells by liquid-chromatography coupling to ion mobility mass spectrometry
14. Impact of left ventricular assist device therapy on the cardiac proteome and metabolome composition in ischemic cardiomyopathy.
15. Metabolic characterization of directly reprogrammed renal tubular epithelial cells (iRECs)
16. Directly reprogrammed renal tubular epithelial cells are sensitive to typical metabolic alterations occurring in hyperglycemia
17. Metabolic Response to XD14 Treatment in Human Breast Cancer Cell Line MCF-7
18. Pregnancy Specific β-1 Glycoprotein 1 is Expressed in Pancreatic Ductal Adenocarcinoma and its Subcellular Localization Correlates with Overall Survival
19. Double deficiency of cathepsins B and L results in massive secretome alterations and suggests a degradative cathepsin-MMP axis
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