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Current Cardiology Reviews|January 13, 2010
Emerging role for antioxidant therapy in protection against diabetic cardiac complications: experimental and clinical evidence for utilization of classic and new antioxidantsMichael F HillJournal of Molecular and Cellular Cardiology|August 30, 2005
Greater propensity of diabetic myocardium for oxidative stress after myocardial infarction is associated with the development of heart failureHolly M Smith, Milton Hamblin, Michael F HillCirculation Research|October 30, 2012
Neuregulin in cardiovascular development and diseaseOghenerukevwe Odiete, Michael F Hill, Douglas B SawyerMolecular and Cellular Biochemistry|July 2, 2004
Antioxidant and oxidative stress changes in experimental cor pulmonaleFiroozeh Farahmand, Michael F Hill, Pawan K SingalJournal of Cardiac Failure|December 11, 2007
Dietary supplementation with vitamin E ameliorates cardiac failure in type I diabetic cardiomyopathy by suppressing myocardial generation of 8-iso-prostaglandin F2alpha and oxidized glutathioneMilton Hamblin, Holly M Smith, Michael F HillCardiovascular Diabetology|March 28, 2013
Type 1 diabetes mellitus abrogates compensatory augmentation of myocardial neuregulin-1β/ErbB in response to myocardial infarction resulting in worsening heart failureOghenerukevwe Odiete, Ewa A Konik, Douglas B Sawyer, et al.Journal of Cardiac Failure|September 6, 2017
Chronic Neuregulin-1β Treatment Mitigates the Progression of Postmyocardial Infarction Heart Failure in the Setting of Type 1 Diabetes Mellitus by Suppressing Myocardial Apoptosis, Fibrosis, and Key Oxidant-Producing EnzymesManisha Gupte, Hind Lal, Firdos Ahmad, et al.Cardiovascular Pathology : the Official Journal of the Society for Cardiovascular Pathology|April 10, 2013
Augmented cardiac formation of oxidatively-induced carbonylated proteins accompanies the increased functional severity of post-myocardial infarction heart failure in the setting of type 1 diabetes mellitusKathleen E Dennis, Salisha Hill, Kristie L Rose, et al.Experimental and Clinical Cardiology|July 31, 2009
Reduction in oxidative stress and modulation of heart failure subsequent to myocardial infarction in ratsMichael F Hill, Vince P Palace, Kuljeet Kaur, et al.Journal of Molecular and Cellular Cardiology|February 27, 2007
Alterations in the diabetic myocardial proteome coupled with increased myocardial oxidative stress underlies diabetic cardiomyopathyMilton Hamblin, David B Friedman, Salisha Hill, et al.Pageof 2