Gerald Norman Wogan

Affiliations: 
Biological Engineering Massachusetts Institute of Technology, Cambridge, MA, United States 
Area:
cancer causation, with the long-range objective of contributing to the scientific foundation for preventive strategies
Website:
http://web.mit.edu/gnwlab/people/wogan.htm
Google:
"Gerald Norman Wogan"
Bio:

https://prabook.com/web/gerald_norman.wogan/815975
http://news.mit.edu/2010/emeritus-wogan-1206
http://web.mit.edu/gnwlab/alum/index.htm
http://hdl.handle.net/2142/58882
https://link.springer.com/article/10.1007%2FBF01478504

Mean distance: 8.88
 

Parents

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Frederick Sargent grad student 1957 UIUC (Physiology Academic Tree)
 (Osmotic Balance, Water Diuresis, and Chronic Dehydration in Man.)

Children

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Ronald C. Shank grad student 1965 MIT (Epi Tree)
John M. Essigmann grad student 1976 MIT
Thomas Wells Kensler grad student 1976 MIT
Richard Alan Bennett grad student 1979 MIT
John D. Groopman grad student 1979 MIT
William Rudolf Kobertz grad student 1998 MIT (Neurotree)
Beatriz Zayas Rivera post-doc 1999-2002 MIT
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Publications

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Erkekoglu P, Chao MW, Tseng CY, et al. (2019) Antioxidants and selenocompounds inhibit 3,5-dimethylaminophenol toxicity to human urothelial cells. Arhiv Za Higijenu Rada I Toksikologiju. 70: 18-29
Fedeles BI, Chawanthayatham S, Croy RG, et al. (2017) Early detection of the aflatoxin B1 mutational fingerprint: A diagnostic tool for liver cancer. Molecular & Cellular Oncology. 4: e1329693
Chawanthayatham S, Valentine CC, Fedeles BI, et al. (2017) Mutational spectra of aflatoxin B1 in vivo establish biomarkers of exposure for human hepatocellular carcinoma. Proceedings of the National Academy of Sciences of the United States of America
Wang C, Gong G, Sheh A, et al. (2017) Interleukin-22 drives nitric oxide-dependent DNA damage and dysplasia in a murine model of colitis-associated cancer. Mucosal Immunology
Chawanthayatham S, Valentine CC, Fedeles BI, et al. (2017) Abstract LB-229: Mutation spectra of aflatoxin B1invivoestablish biomarkers of exposure for human hepatocellualr carcinoma Cancer Research. 77
Techapiesancharoenkij N, Fiala JL, Navasumrit P, et al. (2015) Sulforaphane, a cancer chemopreventive agent, induces pathways associated with membrane biosynthesis in response to tissue damage by aflatoxin B1. Toxicology and Applied Pharmacology. 282: 52-60
Chao MW, Erkekoglu P, Tseng CY, et al. (2015) Protective effects of ascorbic acid against the genetic and epigenetic alterations induced by 3,5-dimethylaminophenol in AA8 cells. Journal of Applied Toxicology : Jat. 35: 466-77
Chawanthayatham S, Thiantanawat A, Egner PA, et al. (2015) Prenatal exposure of mice to the human liver carcinogen aflatoxin B1 reveals a critical window of susceptibility to genetic change. International Journal of Cancer. Journal International Du Cancer. 136: 1254-62
Erkekoglu P, Chao MW, Ye W, et al. (2014) Cytoplasmic and nuclear toxicity of 3,5-dimethylaminophenol and potential protection by selenocompounds. Food and Chemical Toxicology : An International Journal Published For the British Industrial Biological Research Association. 72: 98-110
Chao MW, Erkekoglu P, Tseng CY, et al. (2014) Intracellular generation of ROS by 3,5-dimethylaminophenol: persistence, cellular response, and impact of molecular toxicity. Toxicological Sciences : An Official Journal of the Society of Toxicology. 141: 300-13
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