首页> 外文期刊>Stem Cells >MiR-133b Promotes Neural Plasticity and Functional Recovery After Treatment of Stroke with Multipotent Mesenchymal Stromal Cells in Rats Via Transfer of Exosome-Enriched Extracellular Particles
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MiR-133b Promotes Neural Plasticity and Functional Recovery After Treatment of Stroke with Multipotent Mesenchymal Stromal Cells in Rats Via Transfer of Exosome-Enriched Extracellular Particles

机译:MiR-133B通过转移外渗细胞外颗粒在大鼠中促进神经可塑性和功能性回收

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To test, in vivo, the hypothesis that exosomes from multipotent mesenchymal stromal cells (MSCs) mediate microRNA 133b (miR-133b) transfer which promotes neurological recovery from stroke, we used knockin and knockdown technologies to upregulate or downregulate the miR-133b level in MSCs (miR-133b~+MSCs or miR-133b~-MSCs) and their corresponding exosomes, respectively. Rats were subjected to middle cerebral artery occlusion (MCAo) and were treated with naive MSCs, miR-133b~+MSCs, or miR-133b~-MSC at 1 day after MCAo. Compared with controls, rats receiving naive MSC treatment significantly improved functional recovery and exhibited increased axonal plasticity and neurite remodeling in the ischemic boundary zone (IBZ) at day 14 after MCAo. The outcomes were significantly enhanced with miR-133b~+MSC treatment, and were significantly decreased with miR-133b~-MSC treatment, compared to naive MSC treatment. The miR-133b level in exosomes collected from the cerebral spinal fluid was significantly increased after miR-133b~+MSC treatment, and was significantly decreased after miR-133b~-MSC treatment at day 14 after MCAo, compared to naive MSC treatment. Tagging exosomes with green fluorescent protein demonstrated that exosomes-enriched extracellular particles were released from MSCs and transferred to adjacent astro-cytes and neurons. The expression of selective targets for miR-133b, connective tissue growth factor and ras homo-log gene family member A, was significantly decreased in the IBZ after miR-133b~+MSC treatment, while their expression remained at similar elevated levels after miR-133b~-MSC treatment, compared to naive MSC treatment. Collectively, our data suggest that exosomes from MSCs mediate the miR-133b transfer to astrocytes and neurons, which regulate gene expression, subsequently benefit neurite remodeling and functional recovery after stroke.
机译:在体内测试,从多能间充质基质细胞(MSCs)中介导的微小RORNA 133b(miR-133b)转移的假设促进中风的神经恢复,我们使用了敲门声和敲低的技术来上调或下调miR-133b水平MSCs(miR-133b〜+ mscs或miR-133b〜-mscs)及其相应的外泌体。对大鼠进行中药动脉闭塞(MCAO),并在MCAO后1天用幼稚MSCs,miR-133b〜+ MSCs或miR-133b〜-msc处理。与对照相比,接受幼稚MSC治疗的大鼠在MCAO后第14天在第14天在第14天在缺血边界区(IBZ)中具有显着改善的功能恢复,并且在缺血边界区(IBZ)增加了轴突可塑性和神经突症。 MiR-133B〜+ MSC处理显着增强了结果,与幼稚MSC处理相比,MiR-133B〜-MSC处理显着降低。在miR-133b〜+ msc处理后,从脑脊髓液中收集的外泌体中的miR-133b水平显着增加,并且在MCAO后第14天在MCAO后的miR-133b〜-msc治疗后显着降低,与幼稚的MSC处理相比。标记具有绿色荧光蛋白的外泌体表明,富含外泌体的细胞外颗粒从MSCs释放并转移到相邻的Astro-Cytes和神经元。在miR-133b〜+ msc治疗后Ibz在Ibz中表达miR-133b,结缔组织生长因子和ras homo-log基因家族a的表达显着降低,而MIR- 133B〜-MSC治疗,与幼稚MSC处理相比。统称,我们的数据表明来自MSCs的外来体介导MIR-133B转移到调节基因表达的星形胶质细胞和神经元,随后有利于中风后的神经突改造和功能性恢复。

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