首页> 美国卫生研究院文献>Brain Communications >Activation of both transforming growth factor-β and bone morphogenetic protein signalling pathways upon traumatic brain injury restrains pro-inflammatory and boosts tissue reparatory responses of reactive astrocytes and microglia
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Activation of both transforming growth factor-β and bone morphogenetic protein signalling pathways upon traumatic brain injury restrains pro-inflammatory and boosts tissue reparatory responses of reactive astrocytes and microglia

机译:创伤性脑损伤的转化生长因子-β和骨形态发生蛋白信号传导途径的激活抑制了促炎并提高了活性星形胶质细胞和微胶质细胞的组织逆转反应

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摘要

Various ligands and receptors of the transforming growth factor-β superfamily have been found upregulated following traumatic brain injury; however, the role of this signalling system in brain injury pathophysiology is not fully characterized. To address this, we utilized an acute stab wound brain injury model to demonstrate that hallmarks of transforming growth factor-β superfamily system activation, such as levels of phosphorylated Smads, ligands and target genes for both transforming growth factor-β and bone morphogenetic protein pathways, were upregulated within injured tissues. Using a bone morphogenetic protein-responsive reporter mouse model, we showed that activation of the bone morphogenetic protein signalling pathway involves primarily astrocytes that demarcate the wound area. Insights regarding the potential role of transforming growth factor-β superfamily activation in glia cells within the injured tissues were obtained indirectly by treating purified reactive astrocytes and microglia with bone morphogenetic protein-4 or transforming growth factor-β1 and characterizing changes in their transcriptional profiles. Astrocytes responded to both ligands with considerably overlapping profiles, whereas, microglia responded selectively to transforming growth factor-β1. Novel pathways, crucial for repair of tissue-injury and blood–brain barrier, such as activation of cholesterol biosynthesis and transport, production of axonal guidance and extracellular matrix components were upregulated by transforming growth factor-β1 and/or bone morphogenetic protein-4 in astrocytes. Moreover, both ligands in astrocytes and transforming growth factor-β1 in microglia shifted the phenotype of reactive glia cells towards the anti-inflammatory and tissue reparatory ‘A2’-like and ‘M0/M2’-like phenotypes, respectively. Increased expression of selected key components of the in vitro modulated pathways and markers of ‘A2’-like astrocytes was confirmed within the wound area, suggesting that these processes could also be modulated in situ by the integrated action of transforming growth factor-β and/or bone morphogenetic protein-mediated signalling. Collectively, our study provides a comprehensive comparative analysis of transforming growth factor-β superfamily signalling in reactive astrocytes and microglia and points towards a crucial role of both transforming growth factor-β and bone morphogenetic protein pathways in modulating the inflammatory and brain injury reparatory functions of activated glia cells.
机译:在创伤性脑损伤后,已发现各种配体和转化生长因子-β超家族的受体;然而,该信号系统在脑损伤病理生理学中的作用并未完全表征。为了解决这一点,我们利用急性刺伤脑损伤模型来证明转化生长因子-β超家族系统活化的标志,例如用于转化生长因子-β和骨形态发生蛋白途径的磷酸化的Smads,配体和靶基因的水平,在受伤组织内上调。使用骨形态发生蛋白响应的报告器小鼠模型,我们表明骨形态发生蛋白信号传导途径的激活主要涉及划分伤口区域的星形胶质细胞。通过用骨形态发生蛋白-4或转化生长因子-β1,间接地通过用骨形态发生蛋白-4或转化生长因子-β1,间接地通过用骨形态发生蛋白-4或转化生长因子-β1来间接在受伤组织内转化生长因子-β超家族激活在受伤组织内的潜在作用的洞察。星形胶质细胞对两个配体具有显着重叠的曲线,而小胶质细胞选择性地反应转化生长因子-β1。组织损伤和血脑屏障修复的新途径,例如胆固醇生物合成和运输的激活,通过转化生长因子-β1和/或骨形态发生蛋白-4来上调轴突引导和细胞外基质组分的产生星形胶质细胞。此外,在星形胶质细胞和小神经胶质细胞中转化生长因子β1两种配体移位反应神经胶质细胞的表型朝向抗炎和组织赔偿性“A2'状和“M0 /-M2'像分别表型。在伤口区域内确认了体外调制途径和'a2-样星形胶质细胞的标记的所选关键组分的表达和'a2'样星形胶质细胞的标记。表明这些方法还可以通过转化生长因子-β和/ / / / /的综合作用来原位调节所述方法和/或骨形态发生蛋白介导的信号传导。我们的研究提供了对活性星形胶质细胞和微胶质细胞和小胶质细胞中的生长因子-β超家族信号传导的综合对比分析,并指向转化生长因子-β和骨形态发生蛋白途径调节炎症和脑损伤批量函数的关键作用活化的胶质细胞。

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