Shosuke Kawanishi
Department of Environmental and Molecular Medicine
Mie University Graduate School of Medicine
Mie 514-8507
Japan
Name/email consistency: high
- Oxidative and nitrative DNA damage in animals and patients with inflammatory diseases in relation to inflammation-related carcinogenesis. Kawanishi, S., Hiraku, Y., Pinlaor, S., Ma, N. Biol. Chem. (2006)
- Mechanism of DNA damage induced by bromate differs from general types of oxidative stress. Kawanishi, S., Murata, M. Toxicology (2006)
- Evaluation for safety of antioxidant chemopreventive agents. Kawanishi, S., Oikawa, S., Murata, M. Antioxid. Redox Signal. (2005)
- Mechanism of telomere shortening by oxidative stress. Kawanishi, S., Oikawa, S. Ann. N. Y. Acad. Sci. (2004)
- Amplification of anticancer drug-induced DNA damage and apoptosis by DNA-binding compounds. Kawanishi, S., Hiraku, Y. Curr. Med. Chem. Anticancer. Agents (2004)
- The role of metals in site-specific DNA damage with reference to carcinogenesis. Kawanishi, S., Hiraku, Y., Murata, M., Oikawa, S. Free Radic. Biol. Med. (2002)
- Distinct mechanisms of oxidative DNA damage induced by carcinogenic nickel subsulfide and nickel oxides. Kawanishi, S., Oikawa, S., Inoue, S., Nishino, K. Environ. Health Perspect. (2002)
- Mechanism of guanine-specific DNA damage by oxidative stress and its role in carcinogenesis and aging. Kawanishi, S., Hiraku, Y., Oikawa, S. Mutat. Res. (2001)
- Sequence-specific DNA damage induced by UVA radiation in the presence of endogenous and exogenous photosensitizers. Kawanishi, S., Hiraku, Y. Curr. Probl. Dermatol. (2001)
- Oxidative DNA damage in cultured cells and rat lungs by carcinogenic nickel compounds. Kawanishi, S., Inoue, S., Oikawa, S., Yamashita, N., Toyokuni, S., Kawanishi, M., Nishino, K. Free Radic. Biol. Med. (2001)
- Amplification of pepleomycin-mediated DNA cleavage and apoptosis by unfused aromatic cations. Kawanishi, S., Oikawa, S., Kawanishi, M., Sugiyama, H., Saito, I., Strekowski, L., Wilson, W.D. Biochemistry (2000)
- Site-specific oxidation at GG and GGG sequences in double-stranded DNA by benzoyl peroxide as a tumor promoter. Kawanishi, S., Oikawa, S., Murata, M., Tsukitome, H., Saito, I. Biochemistry (1999)









