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首页> 外文期刊>Biomedical Microdevices >Ex vivo expansion of a hematopoietic stem cell on a murine stromal cell by 3D micro-pillar device
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Ex vivo expansion of a hematopoietic stem cell on a murine stromal cell by 3D micro-pillar device

机译:通过3D微柱装置在小鼠基质细胞上进行造血干细胞的体外扩增

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摘要

Stromal cells alter their mode of attachment, cellular shape, and protein expression when placed on square arrays of micro-pillars. All the pillars we studied had 50 μm diameters, 85 urn pillar heights, were separated by 50 μm, and had an identical surface chemistry. We found that these micro-pillars provided many opportunities for mechanical interlocking and were more suitable attachment matrixes for cell adhesion and stretching of the overlying biomaterials. When the feeder layer cells of hematopoietic stem cells (HSCs) were cultured into the micro-pillar device, they could screen more hematopoietic cytokines, such as interleukin-3 (IL-3), and laminin into the medium. Consequently, the micro-pillar device provides a greater degree of HSCs expansion relative to the 25 T flask. The maximal expansion of the HSCs and the colony-forming unit (CFU) on the micro-pillar device increased 62.72-fold and 16.95-fold for 28 day culture, but there were only 58.08-fold and 6.8-fold expansion on the 25 T flask. The results showed a significantly higher expansion in the pillar device compared to the 25 T flask; moreover, the sternness was maintained. Therefore, the 3D micro-pillar device appears to be a more suitable culture substrate for HSCs expansion ex vivo.
机译:当将基质细胞置于方形微柱阵列上时,它们会改变其附着模式,细胞形状和蛋白质表达。我们研究的所有柱子直径均为50μm,柱高为85,相隔50μm,并且具有相同的表面化学性质。我们发现,这些微柱为机械互锁提供了许多机会,并且是细胞粘附和上层生物材料拉伸的更合适的附着基质。将造血干细胞(HSC)的饲养层细胞培养到微柱装置中后,它们可以筛选更多的造血细胞因子,例如白介素3(IL-3)和层粘连蛋白。因此,相对于25 T烧瓶,微柱装置提供了更大程度的HSC膨胀。在28天的培养中,微柱装置上的HSC和菌落形成单位(CFU)的最大扩增分别增加了62.72倍和16.95倍,但在25 T时仅扩展了58.08倍和6.8倍烧瓶。结果表明,与25 T烧瓶相比,立柱装置的膨胀明显更高;而且,保持了严厉性。因此,3D微型支柱设备似乎是离体扩增HSC的更合适的培养基质。

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