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首页> 外文期刊>Molecular Neurobiology >bFGF Protects Against Blood-Brain Barrier Damage Through Junction Protein Regulation via PI3K-Akt-Rac1 Pathway Following Traumatic Brain Injury
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bFGF Protects Against Blood-Brain Barrier Damage Through Junction Protein Regulation via PI3K-Akt-Rac1 Pathway Following Traumatic Brain Injury

机译:bFGF通过创伤性脑损伤后PI3K-Akt-Rac1途径通过连接蛋白调节来防止血脑屏障损害。

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摘要

Many traumatic brain injury (TBI) survivors sustain neurological disability and cognitive impairments due to the lack of defined therapies to reduce TBI-induced blood-brain barrier (BBB) breakdown. Exogenous basic fibroblast growth factor (bFGF) has been shown to have neuroprotective function in brain injury. The present study therefore investigates the beneficial effects of bFGF on the BBB after TBI and the underlying mechanisms. In this study, we demonstrate that bFGF reduces neurofunctional deficits and preserves BBB integrity in a mouse model of TBI. bFGF suppresses RhoA and upregulates tight junction proteins, thereby mitigating BBB breakdown. In vitro, bFGF exerts a protective effect on BBB by upregulating tight junction proteins claudin-5, occludin, zonula occludens-1, p120-catenin, and beta-catenin under oxygen glucose deprivation/reoxygenation (OGD) in human brain microvascular endothelial cells (HBMECs). Both the in vivo and in vitro effects are related to the activation of the downstream signaling pathway, PI3K/Akt/Rac-1. Inhibition of the PI3K/Akt or Rac-1 by specific inhibitors LY294002 or si-Rac-1, respectively, partially reduces the protective effect of bFGF on BBB integrity. Overall, our results indicate that the protective role of bFGF on BBB involves the regulation of tight junction proteins and RhoA in the TBI model and OGD-induced HBMECs injury, and that activation of the PI3K/Akt /Rac-1 signaling pathway underlies these effects.
机译:由于缺乏确定的疗法来减少TBI引起的血脑屏障(BBB)分解,许多创伤性脑损伤(TBI)幸存者遭受神经功能障碍和认知障碍。外源性碱性成纤维细胞生长因子(bFGF)已显示在脑损伤中具有神经保护功能。因此,本研究调查了TBI后bFGF对BBB的有益作用及其潜在机制。在这项研究中,我们证明bFGF减少了TBI小鼠模型中的神经功能缺陷并保留了BBB完整性。 bFGF抑制RhoA并上调紧密连接蛋白,从而减轻BBB分解。在体外,bFGF通过上调人脑微血管内皮细胞(OGD)中的葡萄糖(OGD)的紧密连接蛋白claudin-5,occludin,zonula occludens-1,p120-catenin和β-catenin对BBB具有保护作用( HBMEC)。体内和体外作用均与下游信号通路PI3K / Akt / Rac-1的激活有关。特异性抑制剂LY294002或si-Rac-1分别抑制PI3K / Akt或Rac-1,部分降低了bFGF对BBB完整性的保护作用。总体而言,我们的结果表明bFGF对BBB的保护作用涉及TBI模型和OGD诱导的HBMECs损伤中紧密连接蛋白和RhoA的调节,而PI3K / Akt / Rac-1信号通路的激活是这些作用的基础。

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