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1. Vitamin E/Coenzyme Q-Dependent "Free Radical Reductases": Redox Regulators in Ferroptosis.

2. A primer for measuring cGMP signaling and cGMP-mediated vascular relaxation.

3. Escorting α-globin to eNOS: α-globin-stabilizing protein paves the way.

4. Compartmentalized nitric oxide signaling in the resistance vasculature.

5. Flipping Off and On the Redox Switch in the Microcirculation.

6. The Myoendothelial Junction: Connections That Deliver the Message.

7. Endothelial cell expression of haemoglobin ? regulates nitric oxide signalling.

8. Site-Specific Connexin Phosphorylation Is Associated with Reduced Heterocellular Communication between Smooth Muscle and Endothelium.

9. The Myoendothelial Junction: Breaking through the Matrix?

10. Arsenic-stimulated liver sinusoidal capillarization in mice requires NADPH oxidase-generated superoxide.

11. Low level arsenic promotes progressive inflammatory angiogenesis and liver blood vessel remodeling in mice

13. Burning Bridges: Cavernous Nerve Resection.

14. Orai3 and Orai1 mediate CRAC channel function and metabolic reprogramming in B cells.

15. Nitric oxide: what's new to NO?

16. Cytochrome b5 reductases: Redox regulators of cell homeostasis.

17. The airway smooth muscle sodium/calcium exchanger NCLX is critical for airway remodeling and hyperresponsiveness in asthma.

18. Immunomodulatory actions of a kynurenine-derived endogenous electrophile.

19. Angiotensin II augments renal vascular smooth muscle soluble GC expression via an AT1 receptor–forkhead box subclass O transcription factor signalling axis.

20. FoxO4 controls sGCβ transcription in vascular smooth muscle.

21. Histone deacetylase inhibitors (HDACi) increase expression of KCa2.3 (SK3) in primary microvascular endothelial cells.

22. Endothelial superoxide dismutase 2 is decreased in sickle cell disease and regulates fibronectin processing.

23. Smooth muscle cell CYB5R3 preserves cardiac and vascular function under chronic hypoxic stress.

24. Expression of Pannexin Isoforms in the Systemic Murine Arterial Network.

25. Characterization of the Thoracodorsal Artery: Morphology and Reactivity.

26. Forestalling age-impaired angiogenesis and blood flow by targeting NOX: Interplay of NOX1, IL-6, and SASP in propagating cell senescence.

27. Human and rodent red blood cells do not demonstrate xanthine oxidase activity or XO-catalyzed nitrite reduction to NO.

28. Notch2 suppression mimicking changes in human pulmonary hypertension modulates Notch1 and promotes endothelial cell proliferation.

29. CoenzymeQ in cellular redox regulation and clinical heart failure.

30. Excessive dietary salt promotes aortic stiffness in murine renovascular hypertension.

31. Ultrasound-Targeted Microbubble Cavitation with Sodium Nitrite Synergistically Enhances Nitric Oxide Production and Microvascular Perfusion.

32. Lipidomics Detection of Brain Cardiolipins in Plasma Is Associated With Outcome After Cardiac Arrest.

33. Redox regulation of soluble guanylyl cyclase.

34. Regulation of endothelial hemoglobin alpha expression by Kruppel-like factors.

35. Two functionally distinct pools of eNOS in endothelium are facilitated by myoendothelial junction lipid composition.

36. CCR7 and IRF4-dependent dendritic cells regulate lymphatic collecting vessel permeability.

37. Structure Guided Chemical Modifications of Propylthiouracil Reveal Novel Small Molecule Inhibitors of Cytochrome b5 Reductase 3 That Increase Nitric Oxide Bioavailability.

38. KLF4-dependent phenotypic modulation of smooth muscle cells has a key role in atherosclerotic plaque pathogenesis.

39. Loss of Collectrin, an Angiotensin-Converting Enzyme 2 Homolog, Uncouples Endothelial Nitric Oxide Synthase and Causes Hypertension and Vascular Dysfunction.

40. S-Nitrosylation Inhibits Pannexin 1 Channel Function.

41. H3K4 di-methylation governs smooth muscle lineage identity and promotes vascular homeostasis by restraining plasticity.

42. CD47 Promotes Age-Associated Deterioration in Angiogenesis, Blood Flow and Glucose Homeostasis.

43. P-294 - Detection of brain cardiolipins in plasma after cardiac arrest.

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