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首页> 外文期刊>Journal of neuroinflammation >Molecular imaging of nestin in neuroinflammatory conditions reveals marked signal induction in activated microglia
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Molecular imaging of nestin in neuroinflammatory conditions reveals marked signal induction in activated microglia

机译:巢蛋白在神经炎症条件下的分子成像显示活化的小胶质细胞中明显的信号诱导

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BackgroundNestin is a known marker of neuronal progenitor cells in the adult brain. Following neuro- and gliogenesis, nestin is replaced by cell type-specific intermediate filaments, e.g., neurofilaments for panneuronal expression and glial fibrillary acidic protein as a specific marker of mature astrocytes. While previous work have been mostly focused on the neuronal fate of nestin-positive progenitors, in the present study, we sought to investigate in real time how nestin signals and cellular expression patterns are controlled in the context of neuroinflammatory challenge and ischemic brain injury. MethodsTo visualize effects of neuroinflammation on neurogenesis/gliogenesis, we created a transgenic model bearing the dual reporter system luciferase and GFP under transcriptional control of the murine nestin promoter. In this model, transcriptional activation of nestin was visualized from the brains of living animals using biophotonic/bioluminescence molecular imaging and a high resolution charged coupled device camera. Nestin induction profiles in vivo and in tissue sections were analyzed in two different experimental paradigms: middle cerebral artery occlusion and lipopolysaccharide-induced innate immune stimuli. ResultsWe report here a context- and injury-dependent induction and cellular expression profile of nestin. While in the baseline conditions the nestin signal and/or GFP expression was restricted to neuronal progenitors, the cellular expression patterns of nestin following innate immune challenge and after stroke markedly differed shifting the cellular expression patterns towards activated microglia/macrophages and astrocytes. ConclusionsOur results suggest that nestin may serve as a context-dependent biomarker of inflammatory response in glial cells including activated microglia/macrophages.
机译:背景Nestin是成人大脑中神经元祖细胞的已知标记。在神经和神经胶质发生之后,巢蛋白被细胞类型特异性的中间丝代替,例如,用于神经元表达的神经丝和作为成熟星形胶质细胞的特异性标志物的神经胶质原纤维酸性蛋白。虽然以前的工作主要集中在Nestin阳性祖细胞的神经元命运上,但在本研究中,我们试图实时研究在神经炎性攻击和局部缺血性脑损伤的背景下如何控制Nestin信号和细胞表达模式。方法为了可视化神经炎症对神经发生/神经胶质发生的影响,我们创建了一个在鼠Nestin启动子转录控制下带有双重报告系统荧光素酶和GFP的转基因模型。在该模型中,使用生物光子/生物发光分子成像和高分辨率带电耦合设备的摄像头,可以从活体动物的大脑中看到巢蛋白的转录激活。在两种不同的实验范式中分析了体内和组织切片中的巢蛋白诱导概况:大脑中动脉闭塞和脂多糖诱导的先天免疫刺激。结果我们在这里报告了Nestin的背景和损伤依赖性诱导和细胞表达概况。虽然在基线条件下,巢蛋白信号和/或GFP表达仅限于神经元祖细胞,但先天性免疫攻击后和中风后巢蛋白的细胞表达模式明显不同,使细胞表达模式向活化的小胶质细胞/巨噬细胞和星形胶质细胞转移。结论我们的结果表明,巢蛋白可以作为神经胶质细胞(包括活化的小胶质细胞/巨噬细胞)中炎症反应的上下文相关生物标志物。

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