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首页> 外文期刊>Brain pathology >Merging fields: stem cells in neurogenesis, transplantation, and disease modeling.
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Merging fields: stem cells in neurogenesis, transplantation, and disease modeling.

机译:合并领域:干细胞在神经发生,移植和疾病建模中的作用。

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摘要

Traditionally, applied stem cell research has been segregating into strategies aiming at endogenous repair and cell transplantation. Recent advances in both fields have unraveled unexpected potential for synergy between these disparate fields. The increasing dissection of the step-wise integration of adult-born neurons into an established brain circuitry provides a highly informative blueprint for the functional incorporation of grafted neurons into a host brain. On the other hand, in vitro recapitulation of developmental differentiation cascades permits the de novo generation of various neural cell types from pluripotent embryonic stem (ES) cells. Advanced tools in stem cell engineering enable not only genetic selection and instruction of disease-specific donor cells for neural replacement but also the exploitation of stem cells as transgenic cellular model systems for human diseases. In a comparative approach we here illuminate the functional integration of neurons derived from endogenous and transplanted stem cells, the evolving technologies for advanced stem cell engineering and the impact of cloned and mutated stem cells on disease modeling.
机译:传统上,应用干细胞研究已经分为针对内源性修复和细胞移植的策略。这两个领域的最新进展揭示了这些不同领域之间协同作用的出乎意料的潜力。成人出生的神经元逐步整合到已建立的大脑回路中的解剖越来越多,为移植的神经元功能整合到宿主大脑中提供了高度有用的蓝图。另一方面,发育分化级联的体外概括允许从多能胚胎干(ES)细胞从头产生各种神经细胞。干细胞工程学中的先进工具不仅可以进行基因选择和特定疾病供体细胞的神经替代指导,还可以利用干细胞作为人类疾病的转基因细胞模型系统。在一种比较方法中,我们在这里阐明了源自内源性和移植干细胞的神经元的功能整合,先进干细胞工程技术的发展以及克隆和突变干细胞对疾病建模的影响。

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