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Coaxial electrospray of liquid core-hydrogel shell microcapsules for encapsulation and miniaturized 3D culture of pluripotent stem cells

机译:液体核心-水凝胶壳微胶囊的同轴电喷雾用于多能干细胞的封装和微型3D培养

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摘要

A novel coaxial electrospray technology is developed to generate microcapsules with a hydrogel shell of alginate and an aqueous liquid core of living cells using two aqueous fluids in one step. Approximately 50 murine embryonic stem (ES) cells encapsulated in the core with high viability (92.3 ± 2.9%) can proliferate to form a single ES cell aggregate of 128.9 ± 17.4 μm in each microcapsule within 7 days. Quantitative analyses of gene and protein expression indicate that ES cells cultured in the miniaturized 3D liquid core of the core-shell microcapsules have significantly higher pluripotency on average than the cells cultured on 2D substrate or in the conventional 3D alginate hydrogel microbeads without a core-shell architecture. The higher pluripotency is further suggested by their significantly higher capability of differentiation into beating cardiomyocytes and higher expression of cardiomyocyte specific gene markers on average after directed differentiation under the same conditions. Considering its wide availability, easiness to set up and operate, reusability, and high production rate, the novel coaxial electrospray technology together with the microcapsule system is of importance for mass production of ES cells with high pluripotency to facilitate translation of the emerging pluripotent stem cell-based regenerative medicine into the clinic.
机译:开发了一种新颖的同轴电喷雾技术,可在一步中使用两种水性液体生成具有藻酸盐水凝胶壳和活细胞的水性液体核心的微胶囊。封装在核心中的高存活力(92.3±2.9%)的大约50个鼠胚胎干(ES)细胞可以在7天内在每个微胶囊中增殖形成128.9±17.4μm的单个ES细胞聚集体。基因和蛋白质表达的定量分析表明,在核壳微胶囊的微型3D液体核中培养的ES细胞平均比在2D基质或不带核壳的常规3D藻酸盐水凝胶微珠中培养的细胞具有更高的平均多能性建筑。在相同条件下定向分化后,它们平均具有更高的分化为搏动的心肌细胞的能力和平均更高的心肌细胞特异性基因标志物的表达,进一步表明了更高的多能性。考虑到它的广泛可用性,易于设置和操作,可重复使用性以及高生产率,新颖的同轴电喷雾技术与微胶囊系统一起对于大规模生产具有高多能性的ES细胞以促进新兴多能干细胞的翻译非常重要。基础的再生医学进入临床。

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