430 results on '"Straub, Adam C."'
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102. Abstract 575: Loss of Function Variant in CYB5R3 Associates With Exacerbated Cardiac Hypertrophy in Mice
103. A loss-of-function single nucleotide polymorphism in cytochrome b5 reductase 3 amplifies the response of bone marrow-derived macrophages to high salt
104. Antagonism of Forkhead Box Subclass O Transcription Factors Elicits Loss of Soluble Guanylyl Cyclase Expression
105. The impact of xanthine oxidase (XO) on hemolytic diseases
106. Sickle cell disease: at the crossroads of pulmonary hypertension and diastolic heart failure.
107. Escorting α-globin to eNOS: α-globin–stabilizing protein paves the way
108. Abstract P146: Cytochrome B5 Reductase (CYB5R3) Function in Smooth Muscle Cells and Blood Pressure Regulation
109. Highlights From Vascular Discovery: From Genes to Medicine Scientific Sessions 2018
110. Abstract 103: Cytochrome b5 Reductase 3 Regulates Myoglobin Redox State and Controls Cardiac Function
111. 2357 Lost and found: Detection of brain cardiolipins in plasma after cardiac arrest
112. Redox regulation of soluble guanylyl cyclase
113. Nitric Oxide–Independent Soluble Guanylate Cyclase Activation Improves Vascular Function and Cardiac Remodeling in Sickle Cell Disease
114. Abstract 503: Smooth Muscle Cell Cytochrome B5 reductase < CYB5R3 > expression modulates vascular tone
115. Detection of brain cardiolipins in plasma after cardiac arrest
116. Abstract P498: Redox Regulation of Vascular Smooth Muscle cGMP Signaling and Blood Pressure by Cytochrome B5 Reductase 3
117. Abstract 14: Identification of a Major Role for Cytochrome B5 Reductase 3 in Cardiomyocyte Metabolism and Function
118. Cytochrome b5 Reductase 3 Modulates Soluble Guanylate Cyclase Redox State and cGMP Signaling
119. Nitric oxide: what’s new to NO?
120. The Role of Nitric Oxide during Sonoreperfusion of Microvascular Obstruction
121. Nrf2 Activation Attenuates Hemolysis but Promotes Pulmonary Vascular Dysfunction in Sickle Mice
122. Pulmonary artery endothelial cells upregulate alpha globin in pulmonary arterial hypertension
123. TSP1–CD47 signaling is upregulated in clinical pulmonary hypertension and contributes to pulmonary arterial vasculopathy and dysfunction
124. Two functionally distinct pools of eNOS in endothelium are facilitated by myoendothelial junction lipid composition
125. Abstract 378: Cytochrome b5 Reductase 3 Regulates Vascular Smooth Muscle Phenotypic Switching
126. Erratum: Corrigendum: KLF4-dependent phenotypic modulation of smooth muscle cells has a key role in atherosclerotic plaque pathogenesis
127. P-294 - Detection of brain cardiolipins in plasma after cardiac arrest
128. Targeting Pulmonary Endothelial Hemoglobin a Improves Nitric Oxide Signaling and Reverses Pulmonary Artery Endothelial Dysfunction.
129. Abstract 15696: Cytochrome B5 Reductase 3 Sensitizes Soluble Guanylate Cyclase to Nitric Oxide
130. Abstract 107: Cytochrome B5 Reductase 3 Sensitizes Soluble Guanylate Cyclase to Nitric Oxide in Vascular Smooth Muscle
131. Compartmentalized nitric oxide signaling in the resistance vasculature
132. Structure Guided Chemical Modifications of Propylthiouracil Reveal Novel Small Molecule Inhibitors of Cytochrome b5 Reductase 3 That Increase Nitric Oxide Bioavailability
133. Hemoglobin α/eNOS Coupling at Myoendothelial Junctions Is Required for Nitric Oxide Scavenging During Vasoconstriction
134. Reduced nitric oxide bioavailability contributes to endothelial dysfunction in a murine model of β-thalassemia
135. The Myoendothelial Junction: Connections That Deliver the Message
136. Mechanisms for Arsenic-Stimulated Sinusoidal Endothelial Cell Capillarization
137. Abstract 45: Critical Residues of the Hemoglobin a / Endothelial Nitric Oxide Synthase Macromolecular Complex Within Endothelial Cells Can Regulate Arterial Reactivity and Blood Pressure
138. Un nouveau venu dans la régulation du monoxyde d’azote endothélial
139. The emerging roles of somatic globins in cardiovascular redox biology and beyond
140. S-Nitrosylation Inhibits Pannexin 1 Channel Function
141. MAPK Phosphorylation of Connexin 43 Promotes Binding of Cyclin E and Smooth Muscle Cell Proliferation
142. A Novel mRNA Binding Protein Complex Promotes Localized Plasminogen Activator Inhibitor-1 Accumulation at the Myoendothelial Junction
143. Characterization of the Thoracodorsal Artery: Morphology and Reactivity
144. Expression of pannexin isoforms in the murine arterial network
145. MAPK phosphorylation of connexin 43 promotes binding of cyclin E and smooth muscle cell proliferation
146. Pannexin1 Regulates α1-Adrenergic Receptor– Mediated Vasoconstriction
147. Nicotinamide phosphoribosyl transferase coordinates stabilization of plasminogen activator inhibitor‐1 mRNA at the myoendothelial junction
148. Compartmentalized Connexin 43 S -Nitrosylation/Denitrosylation Regulates Heterocellular Communication in the Vessel Wall
149. Plasminogen Activator Inhibitor-1 Regulates Myoendothelial Junction Formation
150. Compartmentalized nitric oxide signaling at the myoendothelial junction can regulate gap junction communication
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