Cortright RN

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Name Cortright Ron N, Prof. Dr.
Institution Departments of Physiology and Kinesiology

East Carolina University

Address 378 Ward Sports Medicine Bldg, 27858
City Greenville
State/Province North Carolina (NC)
Country USA
Email cortrightr@ecu.edu
Weblink
O2k-Network Lab US NC Greenville Neufer PD


Labels: Field of research: Basic 



Publications

 PublishedReference
Kwak 2019 Int J Environ Res Public Health2019Kwak HB, Woodlief TL, Green TD, Cox JH, Hickner RC, Neufer PD, Cortright RN (2019) Overexpression of long-chain acyl-CoA synthetase 5 increases fatty acid oxidation and free radical formation while attenuating insulin signaling in primary human skeletal myotubes. Int J Environ Res Public Health 16:E1157.
Kwak 2012 Free Radic Biol Med2012Kwak HB, Thalacker-Mercer A, Anderson EJ, Lin CT, Kane DA, Lee NS, Cortright RN, Bamman MM, Neufer PD (2012) Simvastatin impairs ADP-stimulated respiration and increases mitochondrial oxidative stress in primary human skeletal myotubes. Free Radic Biol Med 52:198-207.
Kane 2011 Am J Physiol Endocrinol Metab2011Kane DA, Lin CT, Anderson EJ, Kwak HB, Cox JH, Brophy PM, Hickner RC, Neufer PD, Cortright RN (2011) Progesterone increases skeletal muscle mitochondrial H2O2 emission in non-menopausal women. Am J Physiol Endocrinol Metab 300:E528-35.
Kane 2010 Free Radic Biol Med2010Kane DA, Anderson EJ, Price III JW, Woodlief TL, Lin C-T, Bikman BT, Cortright RN, Neufer PD (2010) Metformin selectively attenuates mitochondrial H2O2 emission without affecting respiratory capacity in skeletal muscle of obese rats. Free Radic Biol Med 49:1082–7.
Anderson 2009 J Clin Invest2009Anderson EJ, Lustig ME, Boyle KE, Woodlief TL, Kane DA, Lin C-T, Price JW, Kang L, Rabinovitch PS, Szeto HH, Houmard JA, Cortright RN, Wasserman DH, Neufer PD (2009) Mitochondrial H2O2 emission and cellular redox state link excess fat intake to insulin resistance in both rodents and humans. J Clin Invest 119:573-81.

Abstracts

 PublishedReference
Cortright 2015 Abstract MiPschool Greenville 20152015Intramyocellular triacylglycerol is associated with peroxisomal biogenesis in skeletal muscle from lean and obese humans.
Huang 2015 Abstract MiPschool Greenville 20152015Intramyocellular triacylglycerol is associated with peroxisomal biogenesis in skeletal muscle from lean and obese humans.

Participated at