126 results on '"Varadarajan, Sudhahar"'
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2. Abstract 4143291: Macrophage Drp1 Sulfenylation drives neovascularization and regeneration of ischemic muscle via promoting reparative polarization and metabolic reprograming
3. Abstract 4142846: Endothelial Copper Uptake Transporter CTR1 Senses Disturbed Flow to Promote Atherosclerosis through Cuproptosis
4. Abstract 15774: Cu Uptake Transporter CTR1 Cys189 Oxidation Protects Against Atherosclerosis via Limiting Mitochondrial Dysfunction and Endothelial Senescence
5. Abstract 15747: AMPK Cysteine Oxidation by SOD3-Derived H2O2 Mediates Exercise-Induced Restoration of Skeletal Muscle Angiogenesis in Type2 Diabetes
6. Abstract 15477: Mitochondrial Drp1 Deficiency in Macrophage Limits Revascularization of Ischemic Muscle via Inflammatory Metabolic Reprograming and Macrophage Polarization
7. Pentose Pathway Activation Is Superior to Increased Glycolysis for Therapeutic Angiogenesis in Peripheral Arterial Disease
8. Abstract 12879: Endothelial Cu Exporter Atp7a Deficiency Promotes Cu-Dependent Endothelial-to-Mesenchymal Transition and Atherosclerosis via Orchestrating Glycolysis and Ros Signaling
9. Abstract 12127: Protein Disulfide Isomerase A1 as Novel Redox Sensor in VEGFR2 Signaling and Angiogenesis
10. Abstract 11858: ATIC-Mediated De Novo Purine Synthesis Protects Endothelial Cells From Disturbed Flow-Induced Injury in Atherosclerosis
11. Abstract 9930: Exercise-Induced ATP7A, A Cu Transporter for SOD3, Restores Endothelial Dysfunction in Type2 Diabetes via Cysteine Oxidation of Protein Kinase G
12. The P-type ATPase transporter ATP7A promotes angiogenesis by limiting autophagic degradation of VEGFR2
13. Abstract 15747: AMPK Cysteine Oxidation by SOD3-Derived H 2 O 2 Mediates Exercise-Induced Restoration of Skeletal Muscle Angiogenesis in Type2 Diabetes
14. Whole-Transcriptome Sequencing Analyses of Nuclear Antixoxidant-1 in Endothelial Cells: Role in Inflammation and Atherosclerosis
15. PRKAA1/AMPKα1-driven glycolysis in endothelial cells exposed to disturbed flow protects against atherosclerosis
16. Abstract 14078: Ros-dependent Sumoylation of Cu Chaperone Atox1 Drives Its Nuclear Translocation to Promote Inflammatory Angiogenesis Induced by Ischemic Injury
17. Abstract 13610: Endothelial Cu Transporter Atp7a Promotes Vegfr2 Signaling and Post-ischemic Neovascularization via Regulating Autophagy
18. Abstract 13469: Novel Role of Extracellular SOD-derived H2O2 Signaling in Exercise-induced Vascular Adaptation in Type 2 Diabetes
19. Abstract 13373: Exercise Improves Angiogenic Function of Circulating Exosomes in Type 2 Diabetes: Role of Extracellular SOD
20. Protein disulfide isomerase A1 as a novel redox sensor in VEGFR2 signaling and angiogenesis
21. Cysteine oxidation of copper transporter CTR1 drives VEGFR2 signalling and angiogenesis
22. Contributors
23. Epigenetic mechanisms in cardiovascular diseases
24. Sulfenylation of Drp1 in Endothelial Cells Couples VEGF-induced Redox Signaling and Glycolysis to Drive Angiogenesis
25. Novel Role of Copper Transport Proteins in Oxidative Stress-Dependent Brain Endothelial Barrier Dysfunction and Inflammation Associated with Alzheimer’s Disease
26. Novel Role of Copper Transporter CTR1 and Therapeutic Potential of Copper Chelators in Retinal Ischemia-Reperfusion Injury
27. Modification of Cardiac Progenitor Cell-Derived Exosomes by miR-322 Provides Protection against Myocardial Infarction through Nox2-Dependent Angiogenesis
28. Abstract 18002: Novel Mechanisms for Exercise Induced Improved Vasodilation and Angiogenesis in Diabetes: Role of Extracellular SOD-Derived H2O2
29. Abstract 17428: Cu Transporter ATP7A Promotes Angiogenesis by Limiting Autophagic Degradation of VEGFR2
30. Abstract 15775: Novel Mechanism of Redox Regulation of Mitochondria Dynamics Linked to Endothelial Function via Protein Disulfide Isomerase
31. Exercise Improves Angiogenic Function of Circulating Exosomes in Type 2 Diabetes: Role of Exosomal SOD3
32. Cysteine Oxidation of Cu Uptake Transporter CTR1 Protects Against Atherosclerosis via limiting Endothelial Senescence
33. Endothelial Cu Transporter ATP7A deficiency promotes Endothelial-to-mesenchymal Transition and Atherosclerosis via inducing Metabolic Reprogramming
34. Copper Transporter ATP7A Promotes Myogenesis and Skeletal Muscle Regeneration in Response to Injury
35. Exercise Improves Angiogenic Function of Circulating Exosomes in Type 2 Diabetes: Role of Exosomal SOD3
36. Copper Transporter ATP7A (Copper-Transporting P-Type ATPase/Menkes ATPase) Limits Vascular Inflammation and Aortic Aneurysm Development
37. A novel regulator of angiogenesis in endothelial cells: 5-hydroxytriptamine 4 receptor
38. Critical role of endothelial hydrogen peroxide in post-ischemic neovascularization.
39. Caveolin-1 stabilizes ATP7A, a copper transporter for extracellular SOD, in vascular tissue to maintain endothelial function
40. Cysteine oxidation of copper transporter CTR1 drives VEGFR2 signalling and angiogenesis
41. The P-type ATPase transporter ATP7A promotes angiogenesis by limiting autophagic degradation of VEGFR2
42. Akt2 (Protein Kinase B Beta) Stabilizes ATP7A, a Copper Transporter for Extracellular Superoxide Dismutase, in Vascular Smooth Muscle
43. Redox Regulation of Mitochondrial Fission Protein Drp1 by Protein Disulfide Isomerase Limits Endothelial Senescence
44. Abstract 13469: Novel Role of Extracellular SOD-derived H 2 O 2 Signaling in Exercise-induced Vascular Adaptation in Type 2 Diabetes
45. Short-term regular aerobic exercise reduces oxidative stress produced by acute high intraluminal pressure in the adipose microvasculature
46. Novel interaction of antioxidant-1 with TRAF4: role in inflammatory responses in endothelial cells
47. Modification of Cardiac Progenitor Cell-Derived Exosomes by miR-322 Provides Protection against Myocardial Infarction through Nox2-Dependent Angiogenesis
48. Copper transporter ATP7A interacts with IQGAP1, a Rac1 binding scaffolding protein: role in PDGF-induced VSMC migration and vascular remodeling
49. Abstract 461: Enhanced Glycolysis in Endothelial Cells Protects Against Atherosclerosis
50. Exercise Improves Exosome Function via Increasing Extracellular SOD and Cu transporter ATP7A to Restore the Impaired Angiogenesis in Type 2 Diabetic Mice
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