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首页> 外文期刊>Scientific reports. >Minimally Invasive Delivery of Microbeads with Encapsulated, Viable and Quiescent Neural Stem Cells to the Adult Subventricular Zone
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Minimally Invasive Delivery of Microbeads with Encapsulated, Viable and Quiescent Neural Stem Cells to the Adult Subventricular Zone

机译:用封装,可行的和静止神经干细胞对成人子底区进行微创递送微珠

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Stem cell therapies demonstrate promising results as treatment for neurological disease and injury, owing to their innate ability to enhance endogenous neural tissue repair and promote functional recovery. However, delivery of undifferentiated and viable neuronal stem cells requires an engineered delivery system that promotes integration of transplanted cells into the inflamed and cytotoxic region of damaged tissue. Within the brain, endothelial cells (EC) of the subventricular zone play a critical role in neural stem cell (NSC) maintenance, quiescence and survival. Therefore, here, we describe the use of polyethylene glycol microbeads for the coincident delivery of EC and NSC as a means of enhancing appropriate NSC quiescence and survival during transplantation into the mouse brain. We demonstrate that EC and NSC co-encapsulation maintained NSC quiescence, enhanced NSC viability, and facilitated NSC extravasation in vitro, as compared to NSC encapsulated alone. In addition, co-encapsulated cells delivered to an in vivo non-injury model reduced inflammatory response compared to freely injected NSC. These results suggest the strong potential of a biomimetic engineered niche for NSC delivery into the brain following neurological injury.
机译:干细胞疗法表现出具有神经疾病和损伤的治疗的有前途的结果,因为它们的先天性能力增强内源性神经组织修复并促进功能恢复。然而,未分化的和活神经元干细胞的递送需要工程化递送系统,其促进移植细胞的整合到受损组织的发炎和细胞毒性区域中。在脑内,子内感区域的内皮细胞(EC)在神经干细胞(NSC)维持,静态和生存中起着关键作用。因此,在这里,我们描述了聚乙二醇微珠用于EC和NSC的重合递送,作为在移植到小鼠脑中加入适当的NSC静态和存活的方法。我们证明EC和NSC共同包封维持NSC静态,增强的NSC活力,并且与单独的NSC封装相比,在体外保持不良的NSC脱发。另外,与自由注入的NSC相比,共封装给体内非损伤模型的细胞降低炎症反应。这些结果表明,在神经损伤之后,对NSC输送到脑中的仿生工程的肌肉的强潜力。

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