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用于脐血来源CD34(+)细胞体外扩增的藻酸盐珠包封饲养细胞。

Encapsulated feeder cells within alginate beads for ex vivo expansion of cord blood-derived CD34(+) cells.

作者信息

Pan Xiuwei, Sun Qiong, Cai Haibo, Gao Yun, Tan Wensong, Zhang Weian

机构信息

State Key Laboratory of Bioreactor Engineering, Shanghai Key Laboratory of Functional Materials Chemistry, School of Materials Science and Engineering, East China University of Science and Technology, 130 Meilong Road, Shanghai 200237, P. R. China.

出版信息

Biomater Sci. 2016 Oct 20;4(10):1441-53. doi: 10.1039/c6bm00191b. Epub 2016 Aug 10.

Abstract

A co-culture system based on encapsulated feeder cells within alginate beads was developed through optimizing the detailed aspects of the cell culture system to expand CD34-positive (CD34(+)) cells ex vivo. Mesenchymal stem cells isolated from different sources (human amniotic (hAMSCs) and umbilical cord (UCMSCs)), and human fibroblast cells (HFs) have been respectively chosen as feeder cells and the results showed that the hAMSCs were superior to UCMSCs and HFs in conventional two-dimensional (2D) co-cultures regarding the promotion of total nucleated cell (TNCs) expansion and the maintenance of the CD34(+) phenotype. Alginate beads were employed to limit the growth of hAMSCs, which could effectively restrict the proliferation of the encapsulated hAMSCs, while the cell viability of hAMSCs was still highly maintained. Intriguingly, only a few hAMSCs migrated out of the alginate beads, whereas secreted growth factors and cytokines could be easily released. Furthermore, the alginate beads supported CD34(+) cells/hAMSCs 2D indirect co-culture exhibited increased TNCs expansion, higher percentages of CD34(+) and CD34(+)CD38(-) cells, and better cell vitality when compared to the 2D co-culture. Therefore, the co-culture system based on encapsulated hAMSCs within alginate beads can effectively promote CD34(+) cells to expand ex vivo.

摘要

通过优化细胞培养系统的详细方面,开发了一种基于藻酸盐珠内封装饲养细胞的共培养系统,用于在体外扩增CD34阳性(CD34(+))细胞。分别选择从不同来源分离的间充质干细胞(人羊膜间充质干细胞(hAMSCs)和脐带间充质干细胞(UCMSCs))以及人成纤维细胞(HFs)作为饲养细胞,结果表明,在传统的二维(2D)共培养中,hAMSCs在促进总核细胞(TNCs)扩增和维持CD34(+)表型方面优于UCMSCs和HFs。采用藻酸盐珠来限制hAMSCs的生长,这可以有效限制封装的hAMSCs的增殖,同时hAMSCs的细胞活力仍能得到高度维持。有趣的是,只有少数hAMSCs从藻酸盐珠中迁移出来,而分泌的生长因子和细胞因子可以很容易地释放出来。此外,与2D共培养相比,藻酸盐珠支持的CD34(+)细胞/hAMSCs 2D间接共培养表现出TNCs扩增增加、CD34(+)和CD34(+)CD38(-)细胞百分比更高以及细胞活力更好。因此,基于藻酸盐珠内封装hAMSCs的共培养系统可以有效地促进CD34(+)细胞在体外扩增。

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