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- W1986619037 abstract "The metabolic biotransformation of xenobiotics to chemically reactive metabolites can, in some instances, underlie the pathogenesis of certain adverse drug reactions, due to the development of chemical or oxidative stress. In order to guard against such stresses, mammalian cells have evolved multi-faceted, highly-regulated defence systems, one of the most important being that which is regulated by the transcription factor Nrf2. Through regulating the expression of numerous cytoprotective genes, Nrf2 serves as a critical determinant of a cell's capacity to survive, or succumb, to a toxic insult. The aim of this review is to summarise our current understanding of the biochemistry that underlies the Nrf2 defence pathway, and highlight the important role of this transcription factor in the protection against drug-induced toxicity, primarily through the examination of recent investigations that have demonstrated an increased vulnerability to various toxins in animals lacking Nrf2." @default.
- W1986619037 created "2016-06-24" @default.
- W1986619037 creator A5022911613 @default.
- W1986619037 creator A5023569261 @default.
- W1986619037 creator A5035418058 @default.
- W1986619037 creator A5049530044 @default.
- W1986619037 date "2008-04-01" @default.
- W1986619037 modified "2023-10-17" @default.
- W1986619037 title "The Nrf2–Keap1 defence pathway: Role in protection against drug-induced toxicity" @default.
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