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首页> 外文期刊>Scientific reports. >Isosteviol Sodium Protects against Ischemic Stroke by Modulating Microglia/Macrophage Polarization via Disruption of GAS5/miR-146a-5p sponge
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Isosteviol Sodium Protects against Ischemic Stroke by Modulating Microglia/Macrophage Polarization via Disruption of GAS5/miR-146a-5p sponge

机译:通过破坏Gas5 / miR-146a-5p海绵调节微胶质细胞/巨噬细胞极化,isosteviol钠可防止缺血性卒中

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摘要

Recent studies have shown that transforming microglia phenotype from pro-inflammation of M1 phenotype to anti-inflammation and tissue-repairing M2 phenotype may be an effective therapeutic strategy for preventing ischemic stroke brain injury. Isosteviol Sodium (STV-Na) has shown promise as a neuroprotective agent in cerebral ischemia model, although its effect on microglial polarization and chronic recovery after stroke is not clear. Here, we demonstrated that STV-Na treatment significantly reduced cerebral ischemic damage at both acute and chronic time points. STV-Na has a profound regulatory effect on microglia response after stroke. It can promote M2 polarization and inhibit microglia-mediated inflammation (M1) response following stroke in vivo and in vitro. Furthermore, we also found that Growth Arrest-Specific 5 (GAS5) altered OGD/R-induced microglial activation by increasing Notch1 expression via miR-146a-5p, the mRNA level of GAS5 and the protein level of Notch1 in vivo and in vitro, were discovered that both downgraded with STV-Na. Taken together, the present study demonstrated that STV-Na exerted neuroprotective effects by modulating microglia/macrophage polarization in ischemic stroke via the GAS5/miR-146a-5p sponge. These findings provide new evidence that targeting STV-Na could be a treatment for the prevention of stroke-related brain damage.
机译:最近的研究表明,将M1表型的促炎转化的微凝血性表型与抗炎和组织修复M2表型可能是预防缺血性脑损伤的有效治疗策略。 Isosteviol钠(STV-NA)所示的希望作为脑缺血模型中的神经保护剂,尽管其对中风后的微胶质极化和慢性恢复的影响尚不清楚。在这里,我们证明了STV-NA治疗在急性和慢性时分中的脑缺血性损伤显着降低。 STV-NA对中风后对微胶质植物反应具有深远的调节作用。它可以促进M2偏振,抑制体内中风和体外中风后的微胶质介导的炎症(M1)反应。此外,我们还发现,通过MiR-146A-5P,ViVo和体内Notch1的Notch1的MRNA水平和Notch1的蛋白质水平增加Notch1表达,生长抑制特异性5(Gas5)改变了OGD / R诱导的微胶质活化。被发现两者都与STV-NA降级。在一起,本研究表明,通过气体5 / miR-146a-5p海绵调节缺血性卒中中的微血花植物/巨噬细胞极化,STV-NA施加了神经保护作用。这些发现提供了靶向STV-NA的新证据可以是预防中风相关的脑损伤的治疗方法。

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