Edward Morgan

Affiliations: 
Emory University, Atlanta, GA 
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"Edward Morgan"
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Publications

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Morgan ET, Skubic C, Lee CM, et al. (2020) Regulation of cytochrome P450 enzyme activity and expression by nitric oxide in the context of inflammatory disease. Drug Metabolism Reviews. 1-17
Cerrone J, Lee CM, Mi T, et al. (2020) Nitric Oxide Mediated Degradation of CYP2A6 via the Ubiquitin-Proteasome Pathway in Human Hepatoma Cells. Drug Metabolism and Disposition: the Biological Fate of Chemicals
Park JW, Lee CM, Cheng JS, et al. (2018) Posttranslational regulation of CYP2J2 by nitric oxide. Free Radical Biology & Medicine
Park JW, Byrd A, Lee CM, et al. (2017) Nitric oxide stimulates cellular degradation of human CYP51A1, the highly conserved lanosterol 14α-demethylase. The Biochemical Journal
Lee CM, Tripathi S, Morgan ET. (2017) Nitric oxide-regulated proteolysis of human CYP2B6 via the ubiquitin-proteasome system. Free Radical Biology & Medicine
Nyagode BA, Jahangardi R, Merrell MD, et al. (2014) Selective effects of a therapeutic protein targeting tumor necrosis factor-alpha on cytochrome P450 regulation during infectious colitis: Implications for disease-dependent drug-drug interactions. Pharmacology Research & Perspectives. 2: e00027
Nyagode BA, Williams IR, Morgan ET. (2014) Altered inflammatory responses to Citrobacter rodentium infection, but not bacterial lipopolysaccharide, in mice lacking the Cyp4a10 or Cyp4a14 genes. Inflammation. 37: 893-907
Merrell MD, Nyagode BA, Clarke JD, et al. (2014) Selective and cytokine-dependent regulation of hepatic transporters and bile acid homeostasis during infectious colitis in mice. Drug Metabolism and Disposition: the Biological Fate of Chemicals. 42: 596-602
Mimche SM, Nyagode BA, Merrell MD, et al. (2014) Hepatic cytochrome P450s, phase II enzymes and nuclear receptors are downregulated in a Th2 environment during Schistosoma mansoni infection. Drug Metabolism and Disposition: the Biological Fate of Chemicals. 42: 134-40
Lee CM, Lee BS, Arnold SL, et al. (2014) Nitric oxide and interleukin-1β stimulate the proteasome-independent degradation of the retinoic acid hydroxylase CYP2C22 in primary rat hepatocytes. The Journal of Pharmacology and Experimental Therapeutics. 348: 141-52
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