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Short-term grafting of human neural stem cells: Electrophysiological properties and motor behavioral amelioration in experimental Parkinson’s disease

机译:人类神经干细胞的短期移植:实验帕金森氏病的电生理特性和运动行为改善

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摘要

Cell replacement therapy in Parkinson’s disease (PD) still lacks a study addressing the acquisition of electrophysiological properties of human grafted neural stem cells and their relation with the emergence of behavioral recovery after transplantation in the short term. Here we study the electrophysiological and biochemical profiles of two ventral mesencephalic human neural stem cell (NSC) clonal lines (C30-Bcl-X and C32-Bcl-X) that express high levels of Bcl-X to enhance their neurogenic capacity, after grafting in an in vitro parkinsonian model. Electrophysiological recordings show that the majority of the cells derived from the transplants are not mature at 6 weeks after grafting, but 6.7% of the studied cells showed mature electrophysiological profiles. Nevertheless, parallel in vivo behavioral studies showed a significant motor improvement at 7 weeks postgrafting in the animals receiving C30-Bcl-X, the cell line producing the highest amount of TH cells. Present results show that, at this postgrafting time point, behavioral amelioration highly correlates with the spatial dispersion of the TH grafted cells in the caudate putamen. The spatial dispersion, along with a high number of dopaminergic-derived cells, is crucial for behavioral improvements. Our findings have implications for long-term standardization of stem cell-based approaches in Parkinson’s disease.
机译:帕金森氏病(PD)中的细胞替代疗法仍然缺乏针对人类移植的神经干细胞的电生理特性的获得及其与短期移植后行为恢复的关系的研究。在这里,我们研究了两个高表达Bcl-X以增强其神经发生能力的腹侧中脑人神经干细胞(NSC)克隆系(C30-Bcl-X和C32-Bcl-X)的电生理和生化特征在体外帕金森模型中。电生理学记录表明,移植后的大多数细胞在移植后6周时尚未成熟,但有6.7%的研究细胞显示出成熟的电生理特征。然而,平行的体内行为研究显示,在接受C30-Bcl-X的动物中,移植后7周的运动能力有了显着改善,该细胞系产生最高数量的TH细胞。目前的结果表明,在移植后的这一时间点,行为的改善与尾状壳中TH移植细胞的空间分散高度相关。空间分散以及大量多巴胺能来源的细胞对于改善行为至关重要。我们的发现对帕金森氏病中基于干细胞的方法的长期标准化具有重要意义。

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