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首页> 外文期刊>Gene therapy >Hypoxia-specific GM-CSF-overexpressing neural stem cells improve graft survival and functional recovery in spinal cord injury.
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Hypoxia-specific GM-CSF-overexpressing neural stem cells improve graft survival and functional recovery in spinal cord injury.

机译:缺氧特异性GM-CSF过表达的神经干细胞可改善脊髓损伤中的移植物存活率和功能恢复。

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摘要

Granulocyte-macrophage colony-stimulating factor (GM-CSF) is a hematopoietic cytokine that stimulates the differentiation and function of hematopoietic cells. GM-CSF has been implicated in nervous system function. The goal of the present study was to understand the effects of hypoxia-induced GM-CSF on neural stem cells (NSCs) in a model of spinal cord injury (SCI). GM-CSF-overexpressing NSCs were engineered utilizing a hypoxia-inducible gene expression plasmid, including an Epo enhancer ahead of an SV promoter (EpoSV-GM-CSF). Cells were then subjected to hypoxia (pO(2), 1%) or a hypoxia-mimicking reagent (CoCl(2)) in vitro. The progression of time of GM-CSF expression was tracked in EpoSV-GM-CSF-transfected NSCs. Overexpression of GM-CSF in undifferentiated and differentiated NSCs created resistance to H(2)O(2)-induced apoptosis in hypoxia. NSCs transfected with EpoSV-GM-CSF or SV-GM-CSF were transplanted into rats after SCI to assess the effect of GM-CSF on NSC survival and restoration of function. Moreover, a significantly higher amount of surviving NSCs and neuronal differentiation was observed in the EpoSV-GM-CSF-treated group. Significant improvement in locomotor function was also found in this group. Thus, GM-CSF overexpression by the Epo enhancer in hypoxia was beneficial to transplanted NSC survival and to behavioral improvement, pointing toward a possible role for GM-CSF in the treatment of SCI.
机译:粒细胞巨噬细胞集落刺激因子(GM-CSF)是刺激造血细胞分化和功能的造血细胞因子。 GM-CSF与神经系统功能有关。本研究的目的是在脊髓损伤(SCI)模型中了解缺氧诱导的GM-CSF对神经干细胞(NSC)的影响。利用缺氧诱导型基因表达质粒(包括在SV启动子之前的Epo增强子(EpoSV-GM-CSF))对过表达GM-CSF的NSC进行了工程改造。然后将细胞在体外进行低氧(pO(2),1%)或低氧模拟试剂(CoCl(2))。在EpoSV-GM-CSF转染的NSC中追踪了GM-CSF表达的时间进程。 GM-CSF在未分化和分化的NSC中的过表达产生了对H(2)O(2)诱导的缺氧细胞凋亡的抗性。在SCI后,将用EpoSV-GM-CSF或SV-GM-CSF转染的NSC移植到大鼠中,以评估GM-CSF对NSC存活和功能恢复的影响。此外,在EpoSV-GM-CSF治疗组中观察到明显更高的存活NSC和神经元分化。在该组中还发现运动功能的显着改善。因此,Epo增强剂在缺氧状态下的GM-CSF过表达有益于移植的NSC存活和行为改善,这表明GM-CSF在SCI的治疗中可能发挥作用。

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