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Vascular Pharmacology|October 16, 2002
The coronary circulation in diabetes: influence of reactive oxygen species on K+ channel-mediated vasodilationYanping Liu, David D GuttermanClinical and Experimental Pharmacology & Physiology|May 3, 2002
Oxidative stress and potassium channel functionYanping Liu, David D GuttermanBasic Research in Cardiology|February 5, 2009
Vascular control in humans: focus on the coronary microcirculationYanping Liu, David D GuttermanArteriosclerosis, Thrombosis, and Vascular Biology|February 12, 2005
Redox modulation of vascular tone: focus of potassium channel mechanisms of dilationDavid D Gutterman, Hiroto Miura, Yanping LiuAmerican Journal of Physiology. Heart and Circulatory Physiology|May 24, 2003
Elevated glucose impairs cAMP-mediated dilation by reducing Kv channel activity in rat small coronary smooth muscle cellsHongwei Li, Qiang Chai, David D Gutterman, et al.Diabetes|August 28, 2004
Nitration and functional loss of voltage-gated K+ channels in rat coronary microvessels exposed to high glucoseHongwei Li, David D Gutterman, Nancy J Rusch, et al.Circulation Research|January 15, 2011
H2O2 is the transferrable factor mediating flow-induced dilation in human coronary arteriolesYanping Liu, Aaron H Bubolz, Suelhem Mendoza, et al.American Journal of Physiology. Heart and Circulatory Physiology|August 7, 2007
Ebselen reduces nitration and restores voltage-gated potassium channel function in small coronary arteries of diabetic ratsAaron H Bubolz, Qingping Wu, Brandon T Larsen, et al.Medical & Biological Engineering & Computing|March 15, 2008
Endothelial cytoskeletal elements are critical for flow-mediated dilation in human coronary arteriolesYanping Liu, Hongwei Li, Aaron H Bubolz, et al.Circulation Research|August 16, 2003
Mitochondrial sources of H2O2 generation play a key role in flow-mediated dilation in human coronary resistance arteriesYanping Liu, Hongtao Zhao, Hongwei Li, et al.Pageof 74