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首页> 外文期刊>Stroke: A Journal of Cerebral Circulation >Neuronal damage and plasticity identified by microtubule-associated protein 2, growth-associated protein 43, and cyclin D1 immunoreactivity after focal cerebral ischemia in rats.
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Neuronal damage and plasticity identified by microtubule-associated protein 2, growth-associated protein 43, and cyclin D1 immunoreactivity after focal cerebral ischemia in rats.

机译:在大鼠局灶性脑缺血后,通过微管相关蛋白2,生长相关蛋白43和细胞周期蛋白D1免疫反应来鉴定神经元损伤和可塑性。

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BACKGROUND AND PURPOSE: An objective of therapeutic intervention after cerebral ischemia is to promote improved functional outcome. Improved outcome may be associated with a reduction of the volume of cerebral infarction and the promotion of cerebral plasticity. In the developing brain, neuronal growth is concomitant with expression of particular proteins, including microtubule-associated protein 2 (MAP-2), growth-associated protein 43 (GAP-43), and cyclin D1. In the present study we measured the expression of select proteins associated with neurite damage and plasticity (MAP-2 and GAP-43) as well as cell cycle (cyclin D1) after induction of focal cerebral ischemia in the rat. METHODS: Brains from rats (n=28) subjected to 2 hours of middle cerebral artery occlusion and 6 hours, 12 hours, and 2, 7, 14, 21, and 28 days (n=4 per time point) of reperfusion and control sham-operated (n=3) and normal (n=2) rats were processed by immunohistochemistry with antibodies raised against MAP-2, GAP-43, and cyclin D1. Double staining of these proteins for cellular colocalization was also performed. RESULTS: Loss of immunoreactivity of both MAP-2 and GAP-43 was observed in most damaged neurons in the ischemic core. In contrast, MAP-2, GAP-43, and cyclin D1 were selectively increased in morphologically intact or altered neurons localized to the ischemic core at an early stage (eg, 6 hours) of reperfusion and in the boundary zone to the ischemic core (penumbra) during longer reperfusion times. CONCLUSIONS: The selective expressions of the neuronal structural proteins (MAP-2 in dendrites and GAP-43 in axons) and the cyclin D1 cell cycle protein in neurons observed in the boundary zone to the ischemic core are suggestive of compensatory and repair mechanisms in ischemia-damaged neurons after transient focal cerebral ischemia.
机译:背景与目的:脑缺血后治疗干预的目的是促进改善功能预后。改善的结局可能与减少脑梗塞和促进脑可塑性有关。在发育中的大脑中,神经元生长与特定蛋白质的表达相伴,包括微管相关蛋白2(MAP-2),生长相关蛋白43(GAP-43)和细胞周期蛋白D1。在本研究中,我们测量了诱导大鼠局灶性脑缺血后与神经突损伤和可塑性相关的特定蛋白质(MAP-2和GAP-43)的表达以及细胞周期(cyclin D1)的表达。方法:来自大鼠(n = 28)的大脑经过2小时的大脑中动脉闭塞以及6小时,12小时以及2、7、14、21和28天(每个时间点n = 4)进行再灌注和控制通过免疫组织化学用针对MAP-2,GAP-43和细胞周期蛋白D1的抗体对假手术(n = 3)和正常(n = 2)大鼠进行处理。还对这些蛋白质进行了双染色以进行细胞共定位。结果:在缺血核心的大多数受损神经元中均观察到MAP-2和GAP-43的免疫反应性降低。相比之下,MAP-2,GAP-43和细胞周期蛋白D1在再灌注的早期(例如6小时)位于局部缺血核心的形态完整或改变的神经元中以及在局部缺血核心(半影)在更长的再灌注时间。结论:在缺血核心边界区域观察到的神经元结构蛋白(树突中的MAP-2和轴突中的GAP-43)和细胞周期蛋白D1细胞周期蛋白的选择性表达提示缺血的补偿和修复机制。短暂性局灶性脑缺血后神经元受损。

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