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首页> 外文期刊>Journal of Cerebral Blood Flow and Metabolism: Official Journal of the International Society of Cerebral Blood Flow and Metabolism >Monitoring stroke progression: in vivo imaging of cortical perfusion, blood-brain barrier permeability and cellular damage in the rat photothrombosis model.
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Monitoring stroke progression: in vivo imaging of cortical perfusion, blood-brain barrier permeability and cellular damage in the rat photothrombosis model.

机译:监测中风进展:在大鼠光血栓形成模型中对皮质灌注,血脑屏障通透性和细胞损伤进行体内成像。

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摘要

Focal cerebral ischemia is among the main causes of death and disability worldwide. The ischemic core often progresses, invading the peri-ischemic brain; however, assessing the propensity of the peri-ischemic brain to undergo secondary damage, understanding the underlying mechanisms, and adjusting treatment accordingly remain clinically unmet challenges. A significant hallmark of the peri-ischemic brain is dysfunction of the blood-brain barrier (BBB), yet the role of disturbed vascular permeability in stroke progression is unclear. Here we describe a longitudinal in vivo fluorescence imaging approach for the evaluation of cortical perfusion, BBB dysfunction, free radical formation and cellular injury using the photothrombosis vascular occlusion model in male Sprague Dawley rats. Blood-brain barrier dysfunction propagated within the peri-ischemic brain in the first hours after photothrombosis and was associated with free radical formation and cellular injury. Inhibiting free radical signaling significantly reduced progressive cellular damage after photothrombosis, with no significant effect on blood flow and BBB permeability. Our approach allows a dynamic follow-up of cellular events and their response to therapeutics in the acutely injured cerebral cortex.
机译:局灶性脑缺血是全世界死亡和残疾的主要原因之一。缺血核心经常发展,侵袭周围缺血的大脑。然而,评估周围缺血性脑遭受继发性损伤的倾向,了解潜在的机制并相应地调整治疗仍然是临床上尚未解决的挑战。周围脑缺血的一个重要标志是血脑屏障(BBB)功能障碍,但尚不清楚血管通透性在中风进展中的作用。在这里,我们描述了一种纵向体内荧光成像方法,用于在雄性Sprague Dawley大鼠中使用光血栓形成血管闭塞模型评估皮层灌注,BBB功能障碍,自由基形成和细胞损伤。在血栓形成后的最初几个小时内,血脑屏障功能障碍在局部缺血性脑内传播,并与自由基形成和细胞损伤有关。抑制自由基信号转导显着减少了光血栓形成后进行性细胞损伤,对血流量和血脑屏障通透性没有明显影响。我们的方法允许动态追踪细胞事件及其在急性受伤的大脑皮层中对治疗剂的反应。

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