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神经祖细胞在微图案化聚合物基质上的定向生长与选择性分化

Directed growth and selective differentiation of neural progenitor cells on micropatterned polymer substrates.

作者信息

Recknor Jennifer B, Sakaguchi Donald S, Mallapragada Surya K

机构信息

Department of Chemical and Biological Engineering and The Neuroscience Program, Iowa State University, 2114 Sweeney Hall, Ames, IA 50011, USA.

出版信息

Biomaterials. 2006 Aug;27(22):4098-108. doi: 10.1016/j.biomaterials.2006.03.029. Epub 2006 Apr 17.

Abstract

Directional growth and differentiation of adult rat hippocampal progenitor cells (AHPCs) were investigated on micropatterned polymer substrates in vitro. Astrocytes or AHPCs cultured on micropatterned polystyrene substrates chemically modified with laminin exhibited over 75% alignment in the groove direction. AHPCs co-cultured with astrocytes preferentially acquired neuronal morphology, with nearly double the percentage of cells expressing class III beta-tubulin on the micropatterned half of the substrate, as opposed to the planar half of the substrate, or compared to those growing in the absence of astrocytes. This indicates that substrate three-dimensional topography, in synergy with chemical (laminin) and biological (astrocytes) guidance cues, facilitates neuronal differentiation of the AHPCs. Through multi-dimensional cell-cell interactions, this environment provides spatial control selectively enhancing neuronal differentiation and neurite alignment on topographically different regions of the same substrate. Integrating these cues is important in understanding and controlling neural stem cell differentiation and designing scaffolds for guided nerve regeneration.

摘要

在体外微图案化聚合物基质上研究了成年大鼠海马祖细胞(AHPCs)的定向生长和分化。在经层粘连蛋白化学修饰的微图案化聚苯乙烯基质上培养的星形胶质细胞或AHPCs在凹槽方向上的排列率超过75%。与星形胶质细胞共培养的AHPCs优先获得神经元形态,在基质微图案化部分表达III类β-微管蛋白的细胞百分比几乎是基质平面部分的两倍,或者与在无星形胶质细胞条件下生长的细胞相比也是如此。这表明基质的三维形貌与化学(层粘连蛋白)和生物学(星形胶质细胞)引导线索协同作用,促进了AHPCs的神经元分化。通过多维度的细胞间相互作用,这种环境提供了空间控制,选择性地增强了同一基质上地形不同区域的神经元分化和神经突排列。整合这些线索对于理解和控制神经干细胞分化以及设计用于引导神经再生的支架至关重要。

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