Browsing by Author Hamilton, Elisha

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Issue DateTitleAuthor(s)Citation
2010Activation of cAMP-dependent signaling induces oxidative modification of the cardiac Na+-K+ pump and inhibits its activityChia, Karin; Figtree, Gemma; Garcia, Alvaro; Hamilton, Elisha; Liu, Chia-chi; Rasmussen, Helge; White, Caroline; Northern Clinical School: Medicine; Northern Clinical School: Medicine; College of Health Sciences; Northern Clinical School: Medicine; Northern Clinical School: Medicine; Northern Clinical School: Medicine; Northern Clinical School: Kolling InstituteActivation of cAMP-dependent signaling induces oxidative modification of the cardiac Na+-K+ pump and inhibits its activity, Journal of Biological Chemistry, vol.285, 18,pp 13712-13720
2007Alloxan-induced diabetes reduces sarcolemmal Na+-K+ pump function in rabbit ventricular myocytesClarke, Ronald; Hamilton, Elisha; Hansen, Peter; Rasmussen, Helge; Buhagiar, Kerrie A; Garcia, Alvaro; White, Caroline; Chemistry; Northern Clinical School: Medicine; Northern Clinical School: Medicine; Northern Clinical School: MedicineAlloxan-induced diabetes reduces sarcolemmal Na+-K+ pump function in rabbit ventricular myocytes, American Journal of Physiology: Cell Physiology, vol.292,(0),2007,pp C1070-C1077
2006Alloxan-induced diabetes reduces sarcolemmal Na+-K+ pump function in rabbit ventricular myocytes.Hamilton, Elisha; Hansen, Peter; Rasmussen, Helge; Buhagiar, Kerrie A; Clarke, Robert; Garcia, Alvaro; White, Caroline; Northern Clinical School: Medicine; Northern Clinical School: Medicine; Northern Clinical School: MedicineAlloxan-induced diabetes reduces sarcolemmal Na+-K+ pump function in rabbit ventricular myocytes., American Journal of Physiology: Cell Physiology, vol.292,(3),2006,pp C1070-C1077
2009Angiotensin II inhibits the Na+-K+ pump via PKC-dependent activation of NADPH oxidaseChia, Karin; Figtree, Gemma; Hamilton, Elisha; Liu, Chia-chi; Rasmussen, Helge; White, Caroline; Garcia, Alvaro; Medicine; Northern Clinical School: Medicine; Northern Clinical School: Medicine; Northern Clinical School: Medicine; Northern Clinical School: Medicine; Northern Clinical School: Kolling InstituteAngiotensin II inhibits the Na+-K+ pump via PKC-dependent activation of NADPH oxidase, American Journal of Physiology: Cell Physiology, vol.296,(4),2009,pp C693-C700
2016Beta3 adrenergic stimulation restores nitric oxide/redox balance and enhances endothelial function in hyperglycemiaFigtree, Gemma Alexandra; Fry, Natasha Alexandria; Galougahi, Keyvan Karimi; Garcia, Alvaro; Gentle, Carmine; Hamilton, Elisha; Hawkins, Clare; Liu, Chia-chi; Northern Clinical School: Medicine; Northern Clinical School: Medicine; Medicine; Chemistry; Central Clinical School: Heart Research Institute; Northern Clinical School: Medicine; Central Clinical School: Heart Research Institute; Northern Clinical School: MedicineBeta3 adrenergic stimulation restores nitric oxide/redox balance and enhances endothelial function in hyperglycemia, Journal of the American Heart Association, vol.5, 2, 2016,pp 1-17
2015Beta3-Adrenoceptor activation relieves oxidative inhibition of the cardiac Na+-K+ pump in hyperglycemia induced by insulin receptor blockadeFigtree, Gemma Alexandra; Fry, Natasha Alexandria; Galougahi, Keyvan Karimi; Garcia, Alvaro; Hamilton, Elisha; Liu, Chia-chi; Rasmussen, Helge; Northern Clinical School: Medicine; Northern Clinical School: Medicine; Medicine; Northern Clinical School: Kolling Institute; Northern Clinical School: Medicine; Northern Clinical School: Medicine; Northern Clinical School: MedicineBeta3-Adrenoceptor activation relieves oxidative inhibition of the cardiac Na+-K+ pump in hyperglycemia induced by insulin receptor blockade, American Journal of Physiology: Cell Physiology, vol.309, 5, 2015,pp C286-C295
2010{beta}3 Adrenergic Stimulation of the Cardiac Na+-K+ Pump by Reversal of an Inhibitory Oxidative ModificationBundgaard, Henning; Chia, Karin; Figtree, Gemma; Hamilton, Elisha; Huang, Yifei; Hunyor, Stephen; Liu, Chia-chi; Rasmussen, Helge; Garcia, Alvaro; Northern Clinical School: Medicine; Northern Clinical School: Medicine; Northern Clinical School: Medicine; Northern Clinical School: Medicine; Northern Clinical School: Surgery; Northern Clinical School: Kolling Institute; Northern Clinical School: Medicine; Northern Clinical School: Medicine{beta}3 Adrenergic Stimulation of the Cardiac Na+-K+ Pump by Reversal of an Inhibitory Oxidative Modification, Circulation (Baltimore), vol.122, N/A,pp 2699-2708
2011FXYD Proteins Reverse Inhibition of the Na+-K+ Pump Mediated by Glutathionylation of Its beta 1 SubunitFigtree, Gemma; Garcia, Alvaro; Hamilton, Elisha; Liu, Chia-chi; Rasmussen, Helge; Bibert, Stephanie; Cornelius, Flemming; Geering, Kaethi; Marassi, Francesca; Sweadner, Kathleen; Northern Clinical School: Medicine; Northern Clinical School: Kolling Institute; Northern Clinical School: Medicine; Northern Clinical School: Medicine; Northern Clinical School: MedicineFXYD Proteins Reverse Inhibition of the Na+-K+ Pump Mediated by Glutathionylation of Its beta 1 Subunit, Journal of Biological Chemistry, vol.286, 21, 2011,pp 18562-18572
2008Natriuretic peptides stimulate the cardiac sodium pump via NPR-C coupled NOS activationChia, Karin; Figtree, Gemma Alexandra; Hamilton, Elisha; Rasmussen, Helge; William, M; Bundgaard, Henning; Garcia, Alvaro; Northern Clinical School: Medicine; Northern Clinical School: Medicine; Northern Clinical School: Medicine; Northern Clinical School: Medicine; MedicineNatriuretic peptides stimulate the cardiac sodium pump via NPR-C coupled NOS activation, American Journal of Physiology: Cell Physiology, vol.294, 4, 2008,pp C1067-C1073
2005The nitric oxide donor sodium nitroprusside stimulates the Na+–K+ pump in isolated rabbit cardiac myocytesClarke, Ronald; Hamilton, Elisha; Rasmussen, Helge; William, M; Bundgaard, Henning; Garcia, Alvaro; Vien, Jimmy; Chemistry; Northern Clinical School: Medicine; Northern Clinical School: Medicine; MedicineThe nitric oxide donor sodium nitroprusside stimulates the Na+–K+ pump in isolated rabbit cardiac myocytes, Journal of Physiology (2005), vol.565.3,(3),2005,pp 815-825
2008Opposing effects of coupled and uncoupled NOS activity on the Na+-K+ pump in cardiac myocytesChia, Karin; Figtree, Gemma; Hamilton, Elisha; Rasmussen, Helge; Wang, Dennis; Garcia, Alvaro; White, Caroline; Medicine; Northern Clinical School: Medicine; Northern Clinical School: Medicine; Northern Clinical School: Medicine; Northern Clinical School: MedicineOpposing effects of coupled and uncoupled NOS activity on the Na+-K+ pump in cardiac myocytes, American Journal of Physiology: Cell Physiology, vol.294,(N/A),2008,pp C572-C578
2013Oxidative inhibition of the vascular Na+-K+ pump via NADPH oxidase-dependent β1-subunit glutathionylation: Implications for angiotensin II-induced vascular dysfunctionFigtree, Gemma; Fry, Natasha; Galougahi, Keyvan Karimi; Garcia, Alvaro; Hamilton, Elisha; Hansen, Thomas; Liu, Chia-chi; Nunez, Andrea; Ravaie, Ramtin; Cohen, Richard; Liu, Yi; Sweadner, Kathleen; Weisbrod, Robert; Northern Clinical School: Medicine; Northern Clinical School: Medicine; Medicine; Northern Clinical School: Kolling Institute; Northern Clinical School: Medicine; Northern Clinical School: Kolling Institute; Northern Clinical School: Medicine; Northern Clinical School: Medicine; Northern Clinical School: Kolling InstituteOxidative inhibition of the vascular Na+-K+ pump via NADPH oxidase-dependent β1-subunit glutathionylation: Implications for angiotensin II-induced vascular dysfunction, Free Radical Biology and Medicine, vol.65, 2013, 2013,pp 563-572
2013Protein kinase-dependent oxidative regulation of the cardiac Na+-K+ pump: evidence from in vivo and in vitro modulation of cell signallingFigtree, Gemma Alexandra; Fry, Natasha Alexandria; Garcia, Alvaro; Hamilton, Elisha; Karimi Galougahi, Keyvan; Liu, Chia-chi; Rasmussen, Helge; Northern Clinical School: Medicine; Northern Clinical School: Medicine; Northern Clinical School: Kolling Institute; Northern Clinical School: Medicine; Medicine; Northern Clinical School: Medicine; Northern Clinical School: MedicineProtein kinase-dependent oxidative regulation of the cardiac Na+-K+ pump: evidence from in vivo and in vitro modulation of cell signalling, The Journal of Physiology, vol.591, 12, 2013,pp 2999-3015
2013Redox-dependent regulation of the Na+ -K+ pump: New twists to an old target for treatment of heart failureChia, Karin; Clarke, Ronald; Figtree, Gemma; Galougahi, Keyvan Karimi; Garcia, Alvaro; Hamilton, Elisha; Liu, Chia-chi; Rasmussen, Helge; Bundgaard, Henning; Fry, Natasha A.S.; Northern Clinical School: Medicine; Chemistry; Northern Clinical School: Medicine; Medicine; Northern Clinical School: Kolling Institute; Northern Clinical School: Medicine; Northern Clinical School: Medicine; Northern Clinical School: MedicineRedox-dependent regulation of the Na+ -K+ pump: New twists to an old target for treatment of heart failure, Journal of Molecular and Cellular Cardiology, vol.61, N/A, 2013,pp 94-101
2009Reversible oxidative modification: A key mechanism of Na+-K + pump regulationChia, Karin; Figtree, Gemma; Hamilton, Elisha; Liu, Chia-chi; Rasmussen, Helge; White, Caroline; Bibert, Stephanie; Cornelius, Flemming; Garcia, Alvaro; Geering, Kaethi; Medicine; Northern Clinical School: Medicine; Northern Clinical School: Medicine; Northern Clinical School: Medicine; Northern Clinical School: Medicine; Northern Clinical School: Kolling InstituteReversible oxidative modification: A key mechanism of Na+-K + pump regulation, Circulation Research, vol.105,(2),2009,pp 185-193
2015Stimulation of the cardiac myocyte NA+-K+ pump due to reversal of its constitutive oxidative inhibitionChia, Karin; Figtree, Gemma Alexandra; Fry, Natasha Alexandria; Garcia, Alvaro; Hamilton, Elisha; Hannam, William; Liu, Chia-chi; Rasmussen, Helge; Northern Clinical School: Medicine; Northern Clinical School: Medicine; Northern Clinical School: Medicine; Northern Clinical School: Kolling Institute; Northern Clinical School: Medicine; Northern Clinical School: Kolling Institute; Northern Clinical School: Medicine; Northern Clinical School: MedicineStimulation of the cardiac myocyte NA+-K+ pump due to reversal of its constitutive oxidative inhibition, American Journal of Physiology: Cell Physiology, vol.309, 4, 2015,pp C239-C250