首页> 美国卫生研究院文献>Journal of Cerebral Blood Flow Metabolism >The acute-phase protein PTX3 is an essential mediator of glial scar formation and resolution of brain edema after ischemic injury
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The acute-phase protein PTX3 is an essential mediator of glial scar formation and resolution of brain edema after ischemic injury

机译:急性期蛋白PTX3是缺血性损伤后神经胶质瘢痕形成和脑水肿消退的重要介质

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摘要

Acute-phase proteins (APPs) are key effectors of the immune response and are routinely used as biomarkers in cerebrovascular diseases, but their role during brain inflammation remains largely unknown. Elevated circulating levels of the acute-phase protein pentraxin-3 (PTX3) are associated with worse outcome in stroke patients. Here we show that PTX3 is expressed in neurons and glia in response to cerebral ischemia, and that the proinflammatory cytokine interleukin-1 (IL-1) is a key driver of PTX3 expression in the brain after experimental stroke. Gene deletion of PTX3 had no significant effects on acute ischemic brain injury. In contrast, the absence of PTX3 strongly compromised blood–brain barrier integrity and resolution of brain edema during recovery after ischemic injury. Compromised resolution of brain edema in PTX3-deficient mice was associated with impaired glial scar formation and alterations in scar-associated extracellular matrix production. Our results suggest that PTX3 expression induced by proinflammatory signals after ischemic brain injury is a critical effector of edema resolution and glial scar formation. This highlights the potential role for inflammatory molecules in brain recovery after injury and identifies APPs, in particular PTX3, as important targets in ischemic stroke and possibly other brain inflammatory disorders.
机译:急性期蛋白(APPs)是免疫反应的关键效应物,通常在脑血管疾病中用作生物标记物,但它们在脑部炎症中的作用仍然未知。急性期蛋白pentraxin-3(PTX3)的循环水平升高与中风患者的预后差有关。在这里,我们显示PTX3在响应于脑缺血的神经元和神经胶质中表达,而促炎性细胞因子白介素-1(IL-1)是实验性中风后脑中PTX3表达的关键驱动器。 PTX3的基因缺失对急性缺血性脑损伤没有明显影响。相反,缺乏PTX3会严重损害缺血损伤后恢复过程中的血脑屏障完整性和脑水肿消退。 PTX3缺陷小鼠脑水肿的解决能力受损与胶质瘢痕形成受损以及与瘢痕相关的细胞外基质产生改变有关。我们的结果表明,缺血性脑损伤后由促炎信号诱导的PTX3表达是水肿消退和胶质瘢痕形成的关键因素。这突出了炎性分子在损伤后脑恢复中的潜在作用,并确定了APP(尤其是PTX3)是缺血性中风和其他可能的脑炎性疾病的重要靶标。

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