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Binary colloidal crystals (BCCs) as a feeder-free system to generate human induced pluripotent stem cells (hiPSCs)

机译:二进制胶体晶体(BCC)作为无饲养系统可产生人诱导的多能干细胞(hiPSC)

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摘要

Human induced pluripotent stem cells (hiPSCs) are capable of differentiating into any cell type and provide significant advances to cell therapy and regenerative medicine. However, the current protocol for hiPSC generation is relatively inefficient and often results in many partially reprogrammed colonies, which increases the cost and reduces the applicability of hiPSCs. Biophysical stimulation, in particular from tuning cell-surface interactions, can trigger specific cellular responses that could in turn promote the reprogramming process. In this study, human fibroblasts were reprogrammed into hiPSCs using a feeder-free system and episomal vectors using novel substrates based on binary colloidal crystals (BCCs). BCCs are made from two different spherical particle materials (Si and PMMA) ranging in size from nanometers to micrometers that self-assemble into hexagonal close-packed arrays. Our results show that the BCCs, particularly those made from a crystal of 2 μm Si and 0.11 μm PMMA particles (2SiPM) facilitate the reprogramming process and increase the proportion of fully reprogrammed hiPSC colonies, even without a vitronectin coating. Subsequent isolation of clonal hiPSC lines demonstrates that they express pluripotent markers (OCT4 and TRA-1-60). This proof-of-concept study demonstrates that cell reprogramming can be improved on substrates where surface properties are tailored to the application.
机译:人诱导的多能干细胞(hiPSC)能够分化为任何细胞类型,并为细胞疗法和再生医学提供了重要进展。但是,当前用于hiPSC生成的协议效率相对较低,通常会导致许多部分重新编程的菌落,这会增加成本并降低hiPSC的适用性。生物物理刺激,特别是来自调节细胞表面相互作用的生物物理刺激,可以触发特定的细胞反应,进而促进重新编程过程。在这项研究中,使用无饲养层系统将人类成纤维细胞重编程为hiPSC,并使用基于二元胶体晶体(BCC)的新型底物将游离型载体重编程为附加体载体。 BCC由两种不同的球形颗粒材料(Si和PMMA)制成,尺寸从纳米到微米不等,它们可以自组装成六方密排阵列。我们的研究结果表明,即使没有玻连蛋白涂层,BCC,特别是由2μmSi和0.11μmPMMA颗粒(2SiPM)晶体制成的BCC,也有助于重编程过程并增加了完全重编程的hiPSC菌落的比例。随后分离出克隆的hiPSC系表明它们表达了多能标记(OCT4和TRA-1-60)。这项概念验证研究表明,可以在根据应用定制表面特性的基材上改善细胞重编程。

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