Mechanism of genotoxicity induced by targeted cytoplasmic irradiation
Author:
Publisher
Springer Science and Business Media LLC
Subject
Cancer Research,Oncology
Link
http://www.nature.com/articles/6605888.pdf
Reference37 articles.
1. Burlando B, Magnelli V, Panfoli I, Berti E, Viarengo A (2003) Ligand-independent tyrosine kinase signalling in RTH 149 trout hepatoma cells: comparison among heavy metals and pro-oxidants. Cell Physiol Bioche 13: 147–154
2. Burney S, Tamir S, Gal A, Tannenbaum SR (1997) A mechanistic analysis of nitric oxide-induced cellular toxicity. Nitric Oxide: Biol Chem 1: 130–144
3. Chao C, Park S, Aust AE (1996) Participation of nitric oxide and iron in the oxidation of DNA in asbestos-treated human lung epithelial cells. Arch Biochem Biophys 326: 152–157
4. Chiarpotto E, Domenicotti C, Paola D, Vitali A, Nitti M, Pronzato MA, Biasi F, Cottalasso D, Marinari UM, Dragonetti A, Cesaro P, Isidoro C, Poli G (1999) Regulation of rat hepatocyte protein kinase C beta isoenzymes by the lipid peroxidation product 4-hydroxy-2,3-nonenal: a signaling pathway to modulate vesicular transport of glycoproteins. Hepatology 29: 1565–1572
5. Dent P, Yacoub A, Fisher PB, Hagan MP, Grant S (2003) MAPK pathways in radiation responses. Oncogene 22: 5885–5896
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