190 papers found
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Mitochondrial Respiration and Atherosclerosis: R-E-S-P-I-R-E. Find Out What it Means to Mϕ (and VSMC)
Superoxide and hydrogen peroxide counterregulate myogenic contractions in renal afferent arterioles from a mouse model of chronic kidney disease
Redox regulation of the actin cytoskeleton and its role in the vascular system
Fundamental Cardiovascular Research: Returns on Societal Investment: A Scientific Statement From the American Heart Association
Polymerase δ-interacting Protein 2: A Multifunctional Protein
NADPH Oxidases and Measurement of Reactive Oxygen Species
Cyclic Strain and Hypertension Increase Osteopontin Expression in the Aorta
Measurement of Reactive Oxygen Species, Reactive Nitrogen Species, and Redox-Dependent Signaling in the Cardiovascular System: A Scientific Statement From the American Heart Association
NOX4-derived reactive oxygen species limit fibrosis and inhibit proliferation of vascular smooth muscle cells in diabetic atherosclerosis
Redox-Sensitive Regulation of Myocardin-Related Transcription Factor (MRTF-A) Phosphorylation via Palladin in Vascular Smooth Muscle Cell Differentiation Marker Gene Expression
Polymerase delta-interacting protein 2 regulates collagen accumulation via activation of the Akt/mTOR pathway in vascular smooth muscle cells
Chemiluminescence and the Nox1-Nox2-Nox4 Triple Knockout
Hic-5 Mediates TGFβ–Induced Adhesion in Vascular Smooth Muscle Cells by a Nox4-Dependent Mechanism
Dikalov et al ARS 2014
Regulation of Signal Transduction by Reactive Oxygen Species in the Cardiovascular System
Nuclear Factor (Erythroid–Derived 2)-Like 2, the Brake in Oxidative Stress That Nicotinamide Adenine Dinucleotide Phosphate-Oxidase-4 Needs to Protect the Heart
Poldip2 controls vascular smooth muscle cell migration by regulating focal adhesion turnover and force polarization
NADPH Oxidases: Progress and Opportunities
RhoA/Rho kinase mediates TGF-β1-induced kidney myofibroblast activation through Poldip2/Nox4-derived reactive oxygen species
Polymerase -Interacting Protein 2 Promotes Postischemic Neovascularization of the Mouse Hindlimb
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