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Human umbilical cord mesenchymal stem cells-derived extracellular vesicles facilitate the repair of spinal cord injury via the miR-29b-3p/PTEN/Akt/mTOR axis

机译:人的脐带间充质干细胞衍生的细胞外囊囊泡通过MIR-29B-3P / PTEN / AKT / MTOR轴进行脊髓损伤的修复

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Spinal cord injury (SCI) is a salient traumatic disease that often leads to permanent disability, and motor and sensory impairments. Human umbilical cord mesenchymal stem cells (HucMSCs) have a wide application prospect in the treatment of SCI. This study explored the repair effect of HucMSCs-derived extracellular vesicles (HucMSCs-EVs) on SCI. HucMSCs and HucMSCs-EVs were cultured and identified. The rat model of SCI was established, and SCI rats were treated with HucMSCs-EVs. The motor function of SCI rats and morphology of spinal cord tissues were evaluated. Levels of NeuN, GFAP, and NF200 in spinal cord tissues were detected and cell apoptosis was measured. SCI rats were treated with EVs extracted from miR-29b-3p inhibitor-transfected HucMSCs. The downstream gene and pathway of miR-29b-3p were examined. HucMSCs-EVs-treated rats showed obvious motor function recovery and reduced necrosis, nuclear pyknosis, and cavity. HucMSCs-EVs alleviated spinal cord neuronal injury. miR-29b-3p was poorly expressed in SCI tissues, but highly expressed in EVs and SCI rats treated with EVs. miR-29b-3p targeted PTEN. Inhibition of miR-29b-3p or overexpression of PTEN reversed the repair effect of EVs on SCI. EVs activated the AKT/mTOR pathway via the miR-29b-3p/PTEN. In conclusion, HucMSCs-EVs reduced pathological changes, improved motor function, and promoted nerve function repair in SCI rats via the miR-29b-3p/PTEN/Akt/mTOR axis.
机译:脊髓损伤(SCI)是一种突出的创伤性疾病,通常导致永久性残疾,以及电机和感官障碍。人的脐带间充质干细胞(HUCMSCs)在治疗SCI时具有广泛的应用前景。本研究探讨了HUCMSCS衍生的细胞外囊(HUCMSCS-EV)对SCI的修复效果。培养并鉴定Hucmscs和Hucmscs-evs。建立了SCI的大鼠模型,并用HUCMSCS-EVS治疗了SCI大鼠。评估了SCI大鼠和脊髓组织形态的运动功能。检测脊髓组织中的Neun,GFAP和NF200的水平,并测量细胞凋亡。通过从MiR-29B-3P抑制剂转染的HUCMSCs提取的EVS治疗SCI大鼠。检查了miR-29b-3p的下游基因和途径。 HUCMSCS-EVS治疗的大鼠显示出明显的运动功能恢复和减少坏死,核细胞和腔。 Hucmscs-evs缓解了脊髓神经元损伤。 MiR-29B-3P在SCI组织中表达不当,但在EVS和SCI大鼠中表达了高度表达。 miR-29b-3p靶向pten。 PTEN对MIR-29B-3P或过表达的抑制反转了EVS对SCI的修复效果。 EVS通过MIR-29B-3P / PTEN激活AKT / MTOR途径。总之,HUCMSCS-EVS通过MIR-29B-3P / PTEN / AKT / MTOR轴降低了病理变化,改善了电机功能和促进了SCI大鼠的神经功能修复。

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