Oxidative damage to nucleic acids /
| Other Authors: | , |
|---|---|
| Format: | eBook |
| Language: | English |
| Published: |
Austin, Tex. : New York :
Landes Bioscience ; Springer Science+Business Media,
[2007]
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| Series: | Molecular biology intelligence unit (Unnumbered)
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| Subjects: | |
| Online Access: | Connect to the full text of this electronic book |
Table of Contents:
- Oxidatively generated damage to cellular DNA : mechanistic aspects / Jean Cadet ... [et al.]
- Chlorination and nitration of DNA and nucleic acid components / Clare L. Hawkins ... [et al.]
- Prevention of the mutagenicity and cytotoxicity of oxidized purine nucleotides / Yusaku Nakabeppu ... [et al.]
- Nucleotide incision repair : an alternative and ubiquitous pathway to handle oxidative DNA damage / Sophie Couvé-Privat ... [et al.]
- OGG1 : from structural analysis to the knockout mouse / Arne Klungland, Jon K. Laerdahl, and Torbjörn Rognes
- Processing of 3'-end modified DNA strand breaks induced by oxidative damage / Jason L. Parsons, Emma Boswell, and Grigory L. Dianov
- Oxidative damage and promoter function / David Mitchell and Rita Ghosh
- Oxidative DNA damage and telomere shortening / Torsten Richter and Thomas von Zglinicki
- Oxidative damage and repair in the mitochondrial genome / Lene Juel Rasmussen and Keshav K. Singh.
- The role of oxidative damage to nucleic acids in the pathogenesis of neurological disease / V. Prakash Reddy ... [et al.]
- Nucleic acid oxidation and the pathogenesis of cardiovascular diseases / Maria Grazia Andreassi
- Oxidative DNA damage and carcinogenesis / Ryszard Olinski, Marek Foksinski, and Barbara Tudek
- The physiological and pathological roles of oxidative damage to DNA in relation to life stage / Alberto Izzotti
- Analysis of 8-hydroxy-2'-deoxyguanosine as a marker of oxidatively damaged DNA in relation to carcinogenesis and aging / H. Kasai ... [et al.]
- Oxidatively damaged DNA and inflammation / Peter C. Dedon and Marita C. Barth
- The role of antioxidants in the prevention of oxidative damage to nucleic acids / Peter Muller and Steffen Loft.