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Microcarrier suspension cultures for high-density expansion and differentiation of human pluripotent stem cells to neural progenitor cells

机译:微载体悬浮培养物用于人多能干细胞向神经祖细胞的高密度扩增和分化

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Neural progenitor cells (NPCs) derived from human induced pluripotent stem cells (hiPSCs) can be differentiated to neural cells that model neurodegenerative diseases and be used in the screening of potential drugs to ameliorate the disease phenotype. Traditionally, NPCs are produced in 2D cultures, in low yields, using a laborious process that includes generation of embryonic bodies, plating, and colony selections. To simplify the process and generate large numbers of hiPSC-derived NPCs, we introduce a microcarrier (MC) system for the expansion of a hiPSC line and its subsequent differentiation to NPC, using iPS (IMR90) as a model cell line. In the expansion stage, a process of cell propagation in serum-free MC culture was developed first in static culture, which is then scaled up in stirred spinner flasks. A 7.7-fold expansion of iPS (IMR90) and cell yield of 1.3??106 cells/mL in 7 days of static MC culture were achieved. These cells maintained expression of OCT 3/4 and TRA-1-60 and possessed a normal karyotype over 10 passages. A higher cell yield of 6.1??106 cells/mL and 20-fold hiPSC expansion were attained using stirred spinner flasks (seeded from MC static cultures) and changing the medium-exchange regimen from once to twice a day. In the differentiation stage, NPCs were generated with 78%-85% efficiency from hiPSCs using a simple serum-free differentiation protocol. Finally, the integrated process of cell expansion and differentiation of hiPSCs into NPCs using an MC in spinner flasks yielded 333 NPCs per seeded hiPSC as compared to 53 in the classical 2D tissue culture protocol. Similar results were obtained with the HES-3 human embryonic stem cell line. These NPCs were further differentiated into ??III-tubulin+ neurons, GFAP+ astrocytes, and O4+ oligodendrocytes, showing that cells maintained their multilineage differentiation potential. ? 2013, Mary Ann Liebert, Inc.
机译:可以将源自人诱导的多能干细胞(hiPSC)的神经祖细胞(NPC)分化为对神经退行性疾病建模的神经细胞,并将其用于筛选可改善疾病表型的潜在药物。传统上,NPC是使用费力的过程(包括生成胚胎体,接种和选择菌落)以低产量在2D培养物中生产的。为了简化过程并生成大量源自hiPSC的NPC,我们使用iPS(IMR90)作为模型细胞系,引入了微载体(MC)系统,用于扩展hiPSC系并随后将其分化为NPC。在扩增阶段,首先在静态培养中开发了无血清MC培养中细胞增殖的过程,然后在搅拌的旋转烧瓶中进行放大。在静态MC培养7天后,iPS(IMR90)扩增了7.7倍,细胞产量达到了1.3×106个细胞/ mL。这些细胞保持OCT 3/4和TRA-1-60的表达,并在10代以上具有正常的核型。使用搅拌的旋转瓶(从MC静态培养物中接种),将培养基交换方案从每天一次更改为每天两次,可获得更高的细胞产量(6.1?106个细胞/ mL)和20倍的hiPSC扩增。在分化阶段,使用简单的无血清分化方案从hiPSC产生NPC的效率为78%-85%。最后,在旋转摇瓶中使用MC将细胞扩增和将hiPSC分化为NPC的整合过程,每个播种的hiPSC产生333个NPC,而经典2D组织培养方案中则为53个。用HES-3人胚胎干细胞系获得了相似的结果。这些NPC进一步分化为βIII-微管蛋白+神经元,GFAP +星形胶质细胞和O4 +少突胶质细胞,表明细胞保持了其多系分化潜能。 ? 2013年,玛丽·安·利伯特(Mary Ann Liebert,Inc.)

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