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1.
Mol Psychiatry ; 22(11): 1520-1530, 2017 11.
Article in English | MEDLINE | ID: mdl-28886009

ABSTRACT

Functional failure of tau contributes to age-dependent, iron-mediated neurotoxicity, and as iron accumulates in ischemic stroke tissue, we hypothesized that tau failure may exaggerate ischemia-reperfusion-related toxicity. Indeed, unilateral, transient middle cerebral artery occlusion (MCAO) suppressed hemispheric tau and increased iron levels in young (3-month-old) mice and rats. Wild-type mice were protected by iron-targeted interventions: ceruloplasmin and amyloid precursor protein ectodomain, as well as ferroptosis inhibitors. At this age, tau-knockout mice did not express elevated brain iron and were protected against hemispheric reperfusion injury following MCAO, indicating that tau suppression may prevent ferroptosis. However, the accelerated age-dependent brain iron accumulation that occurs in tau-knockout mice at 12 months of age negated the protective benefit of tau suppression against MCAO-induced focal cerebral ischemia-reperfusion injury. The protective benefit of tau knockout was revived in older mice by iron-targeting interventions. These findings introduce tau-iron interaction as a pleiotropic modulator of ferroptosis and ischemic stroke outcome.


Subject(s)
Brain Ischemia/metabolism , Iron/metabolism , tau Proteins/metabolism , Age Factors , Animals , Brain/metabolism , Brain Injuries/metabolism , Disease Models, Animal , Infarction, Middle Cerebral Artery/physiopathology , Male , Mice , Mice, Knockout , Neurons/metabolism , Rats , Rats, Sprague-Dawley , Reperfusion Injury , Stroke/metabolism , tau Proteins/genetics
2.
Br J Pharmacol ; 156(4): 680-8, 2009 Feb.
Article in English | MEDLINE | ID: mdl-19175604

ABSTRACT

BACKGROUND AND PURPOSE: Reactive oxygen species (ROS) derived from Nox2-containing reduced form of nicotinamide adenine dinucleotide phosphate (NADPH) oxidase activity is reportedly detrimental in cerebrovascular disease. However, ROS generation by other Nox isoforms may have a physiological role. No Nox2-selective inhibitors have yet been identified, and thus it is unclear whether isoform non-selective Nox inhibitors would necessarily improve outcome after stroke. We assessed the effect of apocynin on cerebrovascular ROS production and also on outcome following cerebral ischaemia when administered either before ischaemia or after cerebral reperfusion. The involvement of Nox2-containing NADPH oxidase in the effects of apocynin was assessed using Nox2(-/-) mice. EXPERIMENTAL APPROACH: Transient cerebral ischaemia was induced by 0.5 h middle cerebral artery occlusion followed by 23.5 h reperfusion. Mice received apocynin (2.5 mg.kg(-1), i.p.) either 0.5 h before ischaemia or 1 h after reperfusion. In situ superoxide production after cerebral ischaemia-reperfusion was measured in brain sections of wild-type mice at 24 h using dihydroethidium fluorescence. KEY RESULTS: Treatment with apocynin 0.5 h before ischaemia reduced total infarct volume, neurological impairment and mortality in wild-type but not Nox2(-/-) mice. Conversely, treatment with apocynin 1 h after initiation of reperfusion had no protective effect. Cerebral ischaemia and reperfusion increased superoxide production in the brain at 24 h, and pretreatment but not posttreatment with apocynin reduced superoxide levels. CONCLUSIONS AND IMPLICATIONS: Apocynin improves outcome following stroke when administered before ischaemia in wild-type but not Nox2(-/-) mice.


Subject(s)
Acetophenones/therapeutic use , Infarction, Middle Cerebral Artery/prevention & control , Ischemic Attack, Transient/prevention & control , Membrane Glycoproteins/deficiency , NADPH Oxidases/deficiency , Acetophenones/administration & dosage , Animals , Brain/drug effects , Brain/metabolism , Drug Administration Schedule , Infarction, Middle Cerebral Artery/complications , Infarction, Middle Cerebral Artery/metabolism , Ischemic Attack, Transient/complications , Ischemic Attack, Transient/metabolism , Male , Membrane Glycoproteins/genetics , Mice , Mice, Inbred C57BL , Mice, Knockout , NADPH Oxidase 2 , NADPH Oxidases/genetics , Reactive Oxygen Species/metabolism
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