45 results on '"Glatz, Jan F.C."'
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2. Glycolysis-Mediated Activation of v-ATPase by Nicotinamide Mononucleotide Ameliorates Lipid-Induced Cardiomyopathy by Repressing the CD36-TLR4 Axis
3. Specific amino acid supplementation rescues the heart from lipid overload-induced insulin resistance and contractile dysfunction by targeting the endosomal mTOR–v-ATPase axis
4. Understanding the distinct subcellular trafficking of CD36 and GLUT4 during the development of myocardial insulin resistance
5. Re-balancing cellular energy substrate metabolism to mend the failing heart
6. Metabolic Profiling Associates with Disease Severity in Nonischemic Dilated Cardiomyopathy
7. Fatty Acids Prevent Hypoxia-Inducible Factor-1α Signaling Through Decreased Succinate in Diabetes
8. WITHDRAWN: The Endocannabinoid System: Overview of an Emerging Multi-faceted Therapeutic Target
9. Cardiac contraction-induced GLUT4 translocation requires dual signaling input
10. Protein kinase-D1 overexpression prevents lipid-induced cardiac insulin resistance
11. Diabetic db/db mice do not develop heart failure upon pressure overload: a longitudinal in vivo PET, MRI, and MRS study on cardiac metabolic, structural, and functional adaptations
12. Inhibition of sarcolemmal FAT/CD36 by sulfo-N-succinimidyl oleate rapidly corrects metabolism and restores function in the diabetic heart following hypoxia/reoxygenation
13. CD36 (SR-B2) as master regulator of cellular fatty acid homeostasis
14. Basics in Metabolically Relevant Biochemistry
15. List of Contributors
16. Good and bad consequences of altered fatty acid metabolism in heart failure: evidence from mouse models
17. CD36 as a target for metabolic modulation therapy in cardiac disease
18. Comparison of human and rodent cell models to study myocardial lipid-induced insulin resistance
19. Targeting metabolic pathways to treat cardiovascular diseases
20. Time for a détente in the war on the mechanism of cellular fatty acid uptake
21. Spotlight on fatty acids in cell signaling: The 13th FACS meeting
22. Membrane Substrate Transporters as Target to Re‐balance Cardiac Energy Metabolism to Mend the Failing Heart
23. Augmenting Vacuolar H+-ATPase Function Prevents Cardiomyocytes from Lipid-Overload Induced Dysfunction
24. CD36 (SR-B2) as a Target to Treat Lipid Overload-Induced Cardiac Dysfunction
25. The power of metabolism — Linking energy supply and demand with cardiac contractile function
26. The endocannabinoid system: Overview of an emerging multi-faceted therapeutic target
27. Chapter 2 - Basics in Metabolically Relevant Biochemistry
28. Molecular mechanism of lipid-induced cardiac insulin resistance and contractile dysfunction
29. Cardiac adaptations to obesity, diabetes and insulin resistance
30. Human embryonic stem cell-derived cardiomyocytes as an in vitro model to study cardiac insulin resistance
31. From fat to FAT (CD36/SR-B2): Understanding the regulation of cellular fatty acid uptake
32. 2-Arachidonoylglycerol ameliorates inflammatory stress-induced insulin resistance in cardiomyocytes
33. Palmitate-Induced Vacuolar-Type H+-ATPase Inhibition Feeds Forward Into Insulin Resistance and Contractile Dysfunction
34. A new leptin-mediated mechanism for stimulating fatty acid oxidation: a pivotal role for sarcolemmal FAT/CD36
35. The role of post-translational protein modifications on heart and vascular metabolism
36. Post-translational modifications of CD36 (SR-B2): Implications for regulation of myocellular fatty acid uptake
37. Effects of high-fat feeding on ectopic fat storage and postprandial lipid metabolism in mouse offspring
38. Regulation of the subcellular trafficking of CD36, a major determinant of cardiac fatty acid utilization
39. The interaction between AMPKβ2 and the PP1-targeting subunit R6 is dynamically regulated by intracellular glycogen content
40. Early health technology assessment of future clinical decision rule aided triage of patients presenting with acute chest pain in primary care.
41. Fatty acid transport and transporters in muscle are critically regulated by Akt2
42. Letter by Neumann et al Regarding Article, “Myostatin Regulates Energy Homeostasis in the Heart and Prevents Heart Failure”
43. Lipids and lipid binding proteins: A perfect match
44. Spotlight on cellular lipid binding proteins
45. Fatty acids in cell signaling: Historical perspective and future outlook
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