半影
基因剔除小鼠
医学
神经毒性
冲程(发动机)
脑缺血
神经科学
缺血
内科学
毒性
心理学
受体
机械工程
工程类
作者
Qing‐zhang Tuo,Peng Lei,K A Jackman,X-l Li,Huan Xiong,X-l Li,Z-y Liuyang,Laila C. Roisman,S-t Zhang,Scott Ayton,Qin Wang,Peter J. Crouch,Katherine Ganio,X WANG,Lei Pei,Paul A. Adlard,Y-m Lu,Roberto Cappai,J-z Wang,Rong Liu,Ashley I. Bush
摘要
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.
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