401 results on '"Van den Berghe, Georges"'
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2. Disorders of Purine and Pyrimidine Metabolism
3. Disorders of Purine and Pyrimidine Metabolism
4. Disorders of Fructose Metabolism
5. Disorders of Fructose Metabolism
6. Purine and Pyrimidine Metabolism Between Millennia: What has been Accomplished, What has to be Done?
7. Adenylosuccinate Lyase Deficiency: From the Clinics to Molecular Biology
8. Exogenous S-Adenosyl-Methionine Methylates Phospholipids Located on the Outer Cell Surface of Isolated Rat Hepatocytes
9. Muscle Purine Nucleotide Cycle Enzymes in Exercise Intolerance
10. Adenylosuccinate Lyase Deficiency: An Update
11. The AMP — Adenosine Cycle is Active During Normoxia and Impaired in ATP Depletion in Isolated Rabbit Cardiomyocytes
12. Production of Adenosine and Nucleoside Analogues by an Exchange Reaction Catalyzed by Adenosine Kinase
13. Aicariboside Inhibits Gluconeogenesis in Isolated Rat Hepatocytes
14. Adenylosuccinase Activity and Succinylpurine Production in Fibroblasts of Adenylosuccinase-Deficient Children
15. Evidence for a Substrate Cycle between AMP and Adenosine in Isolated Hepatocytes
16. Adenylosuccinate Lyase Deficiency
17. Metabolic disorders of purine metabolism affecting the nervous system
18. AICA-ribosiduria: a novel, neurologically devastating inborn error of purine biosynthesis caused by mutation of ATIC
19. Purine and Pyrimidine Metabolism Between Millennia: What has been Accomplished, What has to be Done?
20. Adenylosuccinate Lyase Deficiency: From the Clinics to Molecular Biology
21. Activation of deoxycytidine kinase by protein kinase inhibitors and okadaic acid in leukemic cells
22. Activation of deoxycytidine kinase by UV-C-irradiation in chronic lymphocytic leukemia B-lymphocytes
23. The AMP — Adenosine Cycle is Active During Normoxia and Impaired in ATP Depletion in Isolated Rabbit Cardiomyocytes
24. Production of Adenosine and Nucleoside Analogues by an Exchange Reaction Catalyzed by Adenosine Kinase
25. Adenylosuccinate Lyase Deficiency: An Update
26. Metabolism and cytotoxic effects of 2-chloroadenine, the major catabolite of 2-chloro-2′-deoxyadenosine
27. Adenylosuccinase deficiency: possibly underdiagnosed encephalopathy with variable clinical features
28. Purine Biosynthesis in Chinese Hamster Cell Mutants and Human Fibroblasts Partially Deficient in Adenylosuccinate Lyase
29. Diseases Involving Cyclic AMP
30. The Role of Cyclic AMP in the Regulation of Glycogen Metabolism
31. Chapter 187 - Metabolic disorders of purine metabolism affecting the nervous system
32. Myoadenylate deaminase deficiency: absence of correlation with exercise intolerance in 452 muscle biopsies
33. Disorders of the Urea Cycle and Related Enzymes
34. Peroxisomal Disorders [Chapter 41]
35. Purine Biosynthesis in Chinese Hamster Cell Mutants and Human Fibroblasts Partially Deficient in Adenylosuccinate Lyase
36. Purine Catabolism in Isolated Hepatocytes : Influence of Coformycin
37. Mechanism of ATP Catabolism Induced By Deoxyadenosine and Other Nucleosides in Adenosine Deaminase — Inhibited Human Erythrocytes
38. Metabolic Effects of Fructose in the Liver
39. Influence of Succinylpurines on the Binding of Adenosine to a Particulate Fraction of Rat Cerebral Cortex
40. Metabolic disorders of purine metabolism affecting the nervous system
41. AICA-riboside (acadesine), an activator of AMP-activated protein kinase with potential for application in hematologic malignancies
42. Purine and Pyrimidine Metabolism
43. Inborn metabolic diseases : diagnosis and treatment
44. Disorders of purine and pyrimidine metabolism
45. Disorders of fructose metabolism
46. AICA-ribosiduria: a novel, neurologically devastating inborn error of purine biosynthesis caused by mutation of ATIC.
47. Effects of 2-chloro-2'-deoxyadenosine on the cell cycle in the human leukemia EHEB cell line.
48. Adenylosuccinate lyase deficiency: study of physiopathologic mechanism(s).
49. Activation of deoxycytidine kinase by protein kinase inhibitors and okadaic acid in leukemic cells
50. New evidences for a regulation of deoxycytidine kinase activity by reversible phosphorylation.
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