Repair of Oxidative DNA Damage and Cancer: Recent Progress in DNA Base Excision Repair

Explore this paper's citation graph

Summary

The emphasis of this review is to highlight the importance of the cellular response to oxidative DNA damage during carcinogenesis, and the unusual activity and subcellular distribution of apurinic/apyrimidinic endonuclease 1, an essential DNA repair factor/redox sensor, affect cancer malignancy by increasing cellular resistance to oxidative stress and by positively influencing cell proliferation.

Type
article
Published
2014-01-21
Cited by
152
References
191
Access
Open access

Keywords

Political science

References

Cited by

Related papers

No related papers recorded.