Oxidants, antioxidants and the ischemic brain

DS Warner, H Sheng… - Journal of experimental …, 2004 - journals.biologists.com
Journal of experimental biology, 2004journals.biologists.com
Despite numerous defenses, the brain is vulnerable to oxidative stress resulting from
ischemia/reperfusion. Excitotoxic stimulation of superoxide and nitric oxide production leads
to formation of highly reactive products, including peroxynitrite and hydroxyl radical, which
are capable of damaging lipids, proteins and DNA. Use of transgenic mutants and selective
pharmacological antioxidants has greatly increased understanding of the complex interplay
between substrate deprivation and ischemic outcome. Recent evidence that reactive …
Summary
Despite numerous defenses, the brain is vulnerable to oxidative stress resulting from ischemia/reperfusion. Excitotoxic stimulation of superoxide and nitric oxide production leads to formation of highly reactive products,including peroxynitrite and hydroxyl radical, which are capable of damaging lipids, proteins and DNA. Use of transgenic mutants and selective pharmacological antioxidants has greatly increased understanding of the complex interplay between substrate deprivation and ischemic outcome. Recent evidence that reactive oxygen/nitrogen species play a critical role in initiation of apoptosis, mitochondrial permeability transition and poly(ADP-ribose) polymerase activation provides additional mechanisms for oxidative damage and new targets for post-ischemic therapeutic intervention. Because oxidative stress involves multiple post-ischemic cascades leading to cell death, effective prevention/treatment of ischemic brain injury is likely to require intervention at multiple effect sites.
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