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Niche-dependent development of functional neuronal networks from embryonic stem cell-derived neural populations

机译:来自胚胎干细胞的神经种群的功能神经元网络的利基依赖发展。

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摘要

BackgroundThe present work was performed to investigate the ability of two different embryonic stem (ES) cell-derived neural precursor populations to generate functional neuronal networks in vitro. The first ES cell-derived neural precursor population was cultivated as free-floating neural aggregates which are known to form a developmental niche comprising different types of neural cells, including neural precursor cells (NPCs), progenitor cells and even further matured cells. This niche provides by itself a variety of different growth factors and extracellular matrix proteins that influence the proliferation and differentiation of neural precursor and progenitor cells. The second population was cultivated adherently in monolayer cultures to control most stringently the extracellular environment. This population comprises highly homogeneous NPCs which are supposed to represent an attractive way to provide well-defined neuronal progeny. However, the ability of these different ES cell-derived immature neural cell populations to generate functional neuronal networks has not been assessed so far.
机译:背景技术进行本工作以研究两种不同的胚胎干(ES)细胞来源的神经前体群体在体外产生功能性神经元网络的能力。将第一个ES细胞来源的神经前体群体培养为自由漂浮的神经聚集体,已知该聚集体会形成发育小生境,其中包括不同类型的神经细胞,包括神经前体细胞(NPC),祖细胞,甚至进一步成熟的细胞。这种小生境本身提供了各种不同的生长因子和细胞外基质蛋白,它们影响神经前体细胞和祖细胞的增殖和分化。第二种群在单层培养中粘附培养,以最严格地控制细胞外环境。该种群包括高度均质的NPC,它们被认为是提供定义明确的神经元后代的一种有吸引力的方式。但是,到目前为止,尚未评估这些不同的ES细胞来源的未成熟神经细胞群体产生功能性神经元网络的能力。

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