358 results on '"Zalba, Guillermo"'
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2. Structure, regulation, and physiological functions of NADPH oxidase 5 (NOX5)
3. Effect of a 3-year lifestyle intervention on telomere length in participants from PREDIMED-Plus: a randomized trial
4. Asociación entre salud cardiovascular ideal y longitud telomérica en una población de edad avanzada de la cohorte SUN
5. Telomere length and 4-year changes in cognitive function in an older Mediterranean population at high risk of cardiovascular disease.
6. NADPH Oxidase 5 (NOX5) Upregulates MMP-10 Production and Cell Migration in Human Endothelial Cells.
7. Vascular NADPH Oxidases and Atherothrombotic Stroke.
8. Matrix metalloproteinase-10 deficiency delays atherosclerosis progression and plaque calcification
9. NADPH oxidase 5 promotes proliferation and fibrosis in human hepatic stellate cells
10. A Role for MMP-10 (Matrix Metalloproteinase-10) in Calcific Aortic Valve Stenosis
11. Mediterranean diet and telomere length in high cardiovascular risk subjects from the PREDIMED-NAVARRA study
12. Endothelial NADPH oxidase 5 (NOX5) overexpression promotes thrombosis and alters thrombi composition: sex as a main player?
13. Dietary inflammatory index and telomere length in subjects with a high cardiovascular disease risk from the PREDIMED-NAVARRA study: cross-sectional and longitudinal analyses over 5 y
14. Dietary total antioxidant capacity is associated with leukocyte telomere length in a children and adolescent population
15. NADPH Oxidase 5 (NOX5) Overexpression Promotes Endothelial Dysfunction via Cell Apoptosis, Migration, and Metabolic Alterations in Human Brain Microvascular Endothelial Cells (hCMEC/D3)
16. Relationship of the CYBA Gene Polymorphisms with Oxidative Stress and Cardiovascular Risk
17. mPGES-1 (Microsomal Prostaglandin E Synthase-1) Mediates Vascular Dysfunction in Hypertension Through Oxidative Stress
18. Oxidative Stress in Cardiovascular Disease and Comorbidities
19. Supplemental Data Interferon stimulated gene 15 pathway is a novel mediator of endothelial dysfunction and aneurysms development in Angiotensin II infused mice through increased oxidative stress
20. Interferon-stimulated gene 15 pathway is a novel mediator of endothelial dysfunction and aneurysms development in angiotensin II infused mice through increased oxidative stress
21. Association between ideal cardiovascular health and telomere length in participants older than 55 years old from the SUN cohort
22. Connection Between the Early Phases of Kidney Disease and the Metabolic Syndrome
23. Dietary Exposure to Polychlorinated Biphenyls and Dioxins and Its Relationship to Telomere Length in Subjects Older Than 55 Years from the SUN Project
24. Endothelial NOX5 Expression Modulates Thermogenesis and Lipolysis in Mice Fed with a High-Fat Diet and 3T3-L1 Adipocytes through an Interleukin-6 Dependent Mechanism
25. Interferon-stimulated gene 15 pathway is a novel mediator of endothelial dysfunction and aneurysms development in angiotensin II infused mice through increased oxidative stress.
26. The senescence-accelerated mouse prone-8 (SAM-P8) oxidative stress is associated with upregulation of renal NADPH oxidase system
27. Interferon-stimulated gene 15 pathway is a novel mediator of endothelial dysfunction and aneurysms development in angiotensin II infused mice through increased oxidative stress
28. TWEAK/Fn14 interaction promotes oxidative stress through NADPH oxidase activation in macrophages
29. Thioredoxin-1/peroxiredoxin-1 as sensors of oxidative stress mediated by NADPH oxidase activity in atherosclerosis
30. Insulin-induced NADPH oxidase activation promotes proliferation and matrix metalloproteinase activation in monocytes/macrophages
31. Expression of Endothelial NOX5 Alters the Integrity of the Blood-Brain Barrier and Causes Loss of Memory in Aging Mice
32. Oxidative Stress in Vascular Pathophysiology: Still Much to Learn
33. Endothelial Nox5 Expression Modulates Glucose Uptake and Lipid Accumulation in Mice Fed a High-Fat Diet and 3T3-L1 Adipocytes Treated with Glucose and Palmitic Acid
34. Association between favourable changes in objectively measured physical activity and telomere length after a lifestyle intervention in pediatric patients with abdominal obesity
35. Inside the Thrombus: Association of Hemostatic Parameters With Outcomes in Large Vessel Stroke Patients
36. NADPH Oxidase 5 Induces Changes in the Unfolded Protein Response in Human Aortic Endothelial Cells and in Endothelial-Specific Knock-in Mice
37. Contrasting Regulation of NOX4 versus NOX2 in Patients with Aortic Stenosis: 90
38. HIF-1-mediated up-regulation of cardiotrophin-1 is involved in the survival response of cardiomyocytes to hypoxia
39. Higher adherence to an empirically derived Mediterranean dietary pattern is positively associated with telomere length: the Seguimiento Universidad de Navarra (SUN) project
40. Implications of NADPH oxidase 5 in vascular diseases
41. Association between diet quality indexes and the risk of short telomeres in an elderly population of the SUN project
42. Associations of telomere length with two dietary quality indices after a lifestyle intervention in children with abdominal obesity: a randomized controlled trial
43. Ultra-processed food consumption and the risk of short telomeres in an elderly population of the Seguimiento Universidad de Navarra (SUN) Project
44. Associations of telomere length with anthropometric and glucose changes after a lifestyle intervention in abdominal obese children
45. Induction of Cyclooxygenase-2 by Overexpression of the Human NADPH Oxidase 5 (NOX5) Gene in Aortic Endothelial Cells
46. NADPH Oxidase Overactivity Underlies Telomere Shortening in Human Atherosclerosis
47. G Protein–Coupled Receptor Kinase 2 Plays a Relevant Role in Insulin Resistance and Obesity
48. Increased CD74 expression in human atherosclerotic plaques: contribution to inflammatory responses in vascular cells
49. Oxidative Stress, Endothelial Dysfunction and Cerebrovascular Disease
50. The Inhibitory Effect of Leptin on Angiotensin II-Induced Vasoconstriction in Vascular Smooth Muscle Cells Is Mediated via a Nitric Oxide-Dependent Mechanism
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