58 results on '"Ventura-Clapier, Renée"'
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2. Cardiac Hypertrophy, Pathological
3. What do we not know of cellular bioenergetics? — a general view on the state of the art
4. In situ study of myofibrils, mitochondria and bound creatine kinases in experimental cardiomyopathies
5. Compartmentation of creatine kinases during perinatal development of mammalian heart
6. Myofibrillar creatine kinase and cardiac contraction
7. Introduction: history of the problem
8. The Effects of Volatile Anesthetics on the Calcium Sensitivity of Cardiac Myofilaments
9. Mitochondrial function as a determinant of recovery or death in cell response to injury
10. Metabolic control analysis and mitochondrial pathologies
11. Clinical cardiac magnetic resonance spectroscopy— present state and future directions
12. Creatine supplementation in health and disease. Effects of chronic creatine ingestion in vivo: Down-regulation of the expression of creatine transporter isoforms in skeletal muscle
13. Early ischemia-induced alterations of the outer mitochondrial membrane and the intermembrane space: A potential cause for altered energy transfer in cardiac muscle?
14. Mechanisms of thyroid hormone control over sensitivity and maximal contractile responsiveness to β-adrenergic agonists in atria
15. Time-Resolved Spectroscopy of mitochondria, cells and tissues under normal and pathological conditions
16. Quantitative studies of enzyme-substrate compartmentation, functional coupling and metabolic channelling in muscle cells
17. The dynamic regulation of myocardial oxidative phosphorylation: Analysis of the response time of oxygen consumption
18. Role of cellular energetics in ischemia-reperfusion and ischemic preconditioning of myocardium
19. Role of mitochondrial calcium transport in the control of substrate oxidation
20. Modulation of cell calcium signals by mitochondria
21. Oligomeric state and membrane binding behaviour of creatine kinase isoenzymes: Implications for cellular function and mitochondrial structure
22. Is it possible to predict any properties of oxidative phosphorylation in a theoretical way?
23. Subtleties in control by metabolic channelling and enzyme organization
24. Theoretical modelling of some spatial and temporal aspects of the mitochondrion/creatine kinase myofibril system in muscle
25. Cytoarchitectural and metabolic adaptations in muscles with mitochondrial and cytosolic creatine kinase deficiencies
26. Functional coupling of creatine kin a ses in muscles: Species and tissue specificity
27. Molecular characterization of the creatine kinases and some historical perspectives
28. Mathematical model of compartmentalized energy transfer: Its use for analysis and interpretation of 31 P-NMR studies of isolated heart of creatine kinase deficient mice
29. Permeabilized cell and skinned fiber techniques in studies of mitochondrial function in vivo
30. Yeast mitochondrial metabolism: From in vitro to in situ quantitative study
31. In situ measurements of creatine kinase flux by NMR. The lessons from bioengineered mice
32. Adenylate kinase: Kinetic behavior in intact cells indicates it is integral to multiple cellular processes
33. Energetics of swelling in isolated hepatocytes: A comprehensive study
34. Functional aspects of the X-ray structure of mitochondrial creatine kinase: A molecular physiology approach
35. Cytoskeleton and mitochondrial morphology and function
36. Oxidative phosphorylation in intact hepatocytes: Quantitative characterization of the mechanisms of change in efficiency and cellular consequences
37. Quantitative analysis of some mechanisms affecting the yield of oxidative phosphorylation: Dependence upon both fluxes and forces
38. Top-down elasticity analysis and its application to energy metabolism in isolated mitochondria and intact cells
39. A model of O·2 -generation in the complex III of the electron transport chain
40. Mathematical modeling of intracellular transport processes and the creatine kinase systems: a probability approach
41. Mathematical modeling of intracellular transport processes and the creatine kinase systems: a probability approach
42. Control theory of metabolic channelling
43. Thyroid hormones and the creatine kinase system in cardiac cells
44. Approaching the multifaceted nature of energy metabolism: inactivation of the cytosolic creatine kinases via homologous recombination in mouse embryonic stem cells
45. Sequence homology and structure predictions of the creatine kinase isoenzymes
46. The structure of mitochondrial creatine kinase and its membrane binding properties
47. Expression of the mitochondrial creatine kinase genes
48. The creatine kinase system in smooth muscle
49. Creatine kinase in non-muscle tissues and cells
50. The influence of the cytosolic oncotic pressure on the permeability of the mitochondrial outer membrane for ADP: implications for the kinetic properties of mitochondrial creatine kinase and for ADP channelling into the intermembrane space
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