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Concise Review: Reactive Astrocytes and Stem Cells in Spinal Cord Injury: Good Guys or Bad Guys?

机译:简要评论:脊髓损伤中的反应性星形胶质细胞和干细胞:好家伙还是坏家伙?

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Spinal cord injury (SCI) usually results in long lasting locomotor and sensory neuron degeneration below the injury. Astrocytes normally play a decisive role in mechanical and metabolic support of neurons, but in the spinal cord they cause injury, exerting well-known detrimental effects that contribute to glial scar formation and inhibition of axon outgrowth. Cell transplantation is considered a promising approach for replacing damaged cells and promoting neuroprotective and neuroregenerative repair, but the effects of the grafted cells on local tissue and the regenerative properties of endogenous neural stem cells in the injured spinal cord are largely unknown. During the last 2 decades cumulative evidence from diverse animal models has indicated that reactive astrocytes in synergy with transplanted cells could be beneficial for injury in multiple ways, including neuroprotection and axonal growth. In this review, we specifically focus on the dual opposing roles of reactive astrocytes in SCI and how they contribute to the creation of a permissive environment when combined with transplanted cells as the influential components for a local regenerative niche. Modulation of reactive astrocyte function might represent an extremely attractive new therapy to enhance the functional outcomes in patients. Stem Cells2015;33:1036-1041
机译:脊髓损伤(SCI)通常导致损伤下方的持久运动和感觉神经元变性。星形胶质细胞通常在神经元的机械和代谢支持中起决定性作用,但它们在脊髓中会造成损伤,发挥众所周知的有害作用,有助于形成神经胶质疤痕并抑制轴突生长。细胞移植被认为是替代受损细胞并促进神经保护和神经再生修复的有前途的方法,但是移植细胞对局部组织的影响以及受损脊髓中内源性神经干细胞的再生特性尚不清楚。在过去的20年中,来自各种动物模型的累积证据表明,与移植细胞协同作用的反应性星形胶质细胞可能以多种方式有益于损伤,包括神经保护和轴突生长。在这篇综述中,我们特别关注反应性星形胶质细胞在SCI中的双重对立作用,以及当它们与移植细胞结合作为局部再生生态位的影响成分时,它们如何有助于创造宽松的环境。反应性星形胶质细胞功能的调节可能代表了一种非常有吸引力的新疗法,可以增强患者的功能结局。干细胞2015; 33:1036-1041

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