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Simplified three-dimensional culture system for long-term expansion of embryonic stem cells

机译:简化的三维培养系统可长期扩增胚胎干细胞

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摘要

AIM: To devise a simplified and efficient method for long-term culture and maintenance of embryonic stem cells requiring less frequent passaging.METHODS: Mouse embryonic stem cells (ESCs) labeled with enhanced yellow fluorescent protein were cultured in three-dimensional (3-D) self-assembling scaffolds and compared with traditional two-dimentional (2-D) culture techniques requiring mouse embryonic fibroblast feeder layers or leukemia inhibitory factor. 3-D scaffolds encapsulating ESCs were prepared by mixing ESCs with polyethylene glycol tetra-acrylate (PEG-4-Acr) and thiol-functionalized dextran (Dex-SH). Distribution of ESCs in 3-D was monitored by confocal microscopy. Viability and proliferation of encapsulated cells during long-term culture were determined by propidium iodide as well as direct cell counts and PrestoBlue (PB) assays. Genetic expression of pluripotency markers (Oct4, Nanog, Klf4, and Sox2) in ESCs grown under 2-D and 3-D culture conditions was examined by quantitative real-time polymerase chain reaction. Protein expression of selected stemness markers was determined by two different methods, immunofluorescence staining (Oct4 and Nanog) and western blot analysis (Oct4, Nanog, and Klf4). Pluripotency of 3-D scaffold grown ESCs was analyzed by in vivo teratoma assay and in vitro differentiation via embryoid bodies into cells of all three germ layers.RESULTS: Self-assembling scaffolds encapsulating ESCs for 3-D culture without the loss of cell viability were prepared by mixing PEG-4-Acr and Dex-SH (1:1 v/v) to a final concentration of 5% (w/v). Scaffold integrity was dependent on the degree of thiol substitution of Dex-SH and cell concentration. Scaffolds prepared using Dex-SH with 7.5% and 33% thiol substitution and incubated in culture medium maintained their integrity for 11 and 13 d without cells and 22 ± 5 d and 37 ± 5 d with cells, respectively. ESCs formed compact colonies, which progressively increased in size over time due to cell proliferation as determined by confocal microscopy and PB staining. 3-D scaffold cultured ESCs expressed significantly higher levels (P < 0.01) of Oct4, Nanog, and Kl4, showing a 2.8, 3.0 and 1.8 fold increase, respectively, in comparison to 2-D grown cells. A similar increase in the protein expression levels of Oct4, Nanog, and Klf4 was observed in 3-D grown ESCs. However, when 3-D cultured ESCs were subsequently passaged in 2-D culture conditions, the level of these pluripotent markers was reduced to normal levels. 3-D grown ESCs produced teratomas and yielded cells of all three germ layers, expressing brachyury (mesoderm), NCAM (ectoderm), and GATA4 (endoderm) markers. Furthermore, these cells differentiated into osteogenic, chondrogenic, myogenic, and neural lineages expressing Col1, Col2, Myog, and Nestin, respectively.CONCLUSION: This novel 3-D culture system demonstrated long-term maintenance of mouse ESCs without the routine passaging and manipulation necessary for traditional 2-D cell propagation.
机译:目的:设计一种简便,有效的方法,用于长期培养和维持需要较少传代的胚胎干细胞。方法:以增强的黄色荧光蛋白标记的小鼠胚胎干细胞(ESC)在三维(3-D)中培养)自组装支架,并与需要小鼠胚胎成纤维细胞饲养层或白血病抑制因子的传统二维(2-D)培养技术进行比较。通过将ESC与聚乙二醇四丙烯酸酯(PEG-4-Acr)和巯基官能化的右旋糖酐(Dex-SH)混合来制备包裹ESC的3-D支架。通过共聚焦显微镜监测ESC在3-D中的分布。通过碘化丙锭以及直接细胞计数和PrestoBlue(PB)分析来确定长期培养过程中被包封细胞的活力和增殖。通过定量实时聚合酶链反应检测多能性标记(Oct4,Nanog,Klf4和Sox2)在2-D和3-D培养条件下生长的ESC中的遗传表达。通过两种不同的方法,即免疫荧光染色(Oct4和Nanog)和蛋白质印迹分析(Oct4,Nanog和Klf4)来确定所选茎标记的蛋白质表达。通过体内畸胎瘤分析和通过胚状体体外分化为所有三个胚层的细胞来分析3-D支架生长的ESC的多能性。结果:自组装支架封装了用于3-D培养的ESC,而没有丧失细胞活力。通过将PEG-4-Acr和Dex-SH(1:1 v / v)混合至最终浓度为5%(w / v)来制备。支架完整性取决于Dex-SH的巯基取代程度和细胞浓度。使用具有7.5%和33%巯基取代的Dex-SH制备并在培养基中孵育的支架分别在无细胞的情况下保持11和13 d的完整性,在有细胞的情况下保持22±5 d和37±5 d的完整性。 ESC形成紧凑的菌落,通过共聚焦显微镜和PB染色确定,由于细胞增殖,随着时间的推移,这些菌落的大小逐渐增加。 3-D支架培养的ESC与2-D生长的细胞相比,Oct4,Nanog和Kl4的表达水平明显更高(P <0.01),分别显示出2.8、3.0和1.8倍的增长。在3-D生长的ESC中观察到Oct4,Nanog和Klf4蛋白质表达水平的相似增加。然而,当随后将3-D培养的ESC在2-D培养条件下传代时,这些多能标记的水平降低至正常水平。 3-D生长的ESC产生畸胎瘤并产生所有三个胚层的细胞,表达短毛象(中胚层),NCAM(外胚层)和GATA4(内胚层)标记。此外,这些细胞分化为分别表达Col1,Col2,Myog和Nestin的成骨,成软骨,成肌和神经谱系。结论:这种新颖的3-D培养系统可长期维持小鼠ESC,无需常规传代和操作。传统二维细胞传播所必需的。

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