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M2 microglia-derived exosomes protect the mouse brain from ischemia-reperfusion injury via exosomal miR-124

机译:M2小胶质细胞来源的外泌体通过外泌体miR-124保护小鼠大脑免受缺血再灌注损伤

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摘要

>Rationale: Microglia play a critical role in modulating cell death and neurobehavioral recovery in response to brain injury either by direct cell-cell interaction or indirect secretion of trophic factors. Exosomes secreted from cells are well documented to deliver bioactive molecules to recipient cells to modulate cell function. Here, we aimed to identify whether M2 microglia exert neuroprotection after ischemic attack through an exosome-mediated cell-cell interaction.>Methods: M2 microglia-derived exosomes were intravenously injected into the mouse brain immediately after middle cerebral artery occlusion. Infarct volume, neurological score, and neuronal apoptosis were examined 3 days after ischemic attack. Exosome RNA and target protein expression levels in neurons and brain tissue were determined for the mechanistic study.>Results: Our results showed that the M2 microglia-derived exosomes were taken up by neurons in vitro and in vivo. M2 microglia-derived exosome treatment attenuated neuronal apoptosis after oxygen-glucose deprivation (p<0.05). In vivo results showed that M2 microglia-derived exosome treatment significantly reduced infarct volume and attenuated behavioral deficits 3 days after transient brain ischemia (p<0.05), whereas injection of miR-124 knockdown (miR-124k/d) M2 microglia-derived exosomes partly reversed the neuroprotective effect. Our mechanistic study further demonstrated that ubiquitin-specific protease 14 (USP14) was the direct downstream target of miR-124. Injection of miR-124k/d M2 exosomes plus the USP14 inhibitor, IU1, achieved comparable neuroprotective effect as injection of M2 exosomes alone.>Conclusions: We demonstrated that M2 microglia-derived exosomes attenuated ischemic brain injury and promoted neuronal survival via exosomal miR-124 and its downstream target USP14. M2 microglia-derived exosomes represent a promising avenue for treating ischemic stroke.
机译:>原理:小胶质细胞通过直接的细胞间相互作用或营养因子的间接分泌在调节细胞死亡和神经行为恢复中发挥关键作用,以应对脑损伤。从细胞分泌的外泌体已被充分证明可以将生物活性分子传递至受体细胞以调节细胞功能。在这里,我们旨在确定M2小胶质细胞是否通过外泌体介导的细胞-细胞相互作用在缺血发作后发挥神经保护作用。>方法:将M2小胶质细胞衍生的外泌体在大脑中动脉后立即静脉内注射到小鼠脑中闭塞。缺血发作3天后检查梗塞体积,神经学评分和神经元凋亡。确定了神经元和脑组织中外泌体RNA和靶蛋白的表达水平。>结果:我们的结果表明,M2小胶质细胞衍生的外泌体在体内外都被神经元吸收。 M2小胶质细胞来源的外泌体治疗减轻了氧葡萄糖剥夺后的神经元凋亡(p <0.05)。体内结果显示,M2小胶质细胞来源的外泌体治疗可显着减少短暂性脑缺血后3天的梗塞体积并减轻行为缺陷(p <0.05),而注射miR-124敲低(miR-124k / d)M2小胶质细胞来源的外泌体部分逆转了神经保护作用。我们的机理研究进一步证明,泛素特异性蛋白酶14(USP14)是miR-124的直接下游靶标。 miR-124k / d M2外泌体加USP14抑制剂IU1的神经保护作用与单独M2外泌体相当。>结论:我们证明了M2小胶质细胞衍生的外泌体减轻了缺血性脑损伤并促进了其发展。通过外泌体miR-124及其下游靶标USP14进行神经元存活。 M2小胶质细胞来源的外泌体代表了治疗缺血性中风的有前途的途径。

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