The combination of dextran sulphate and polyvinyl alcohol prevents excess aggregation and promotes proliferation of pluripotent stem cells in suspension culture

葡聚糖硫酸盐和聚乙烯醇的组合可防止过度聚集并促进悬浮培养中的多能干细胞增殖

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作者:Xianglian Tang, Haibin Wu, Jinghe Xie, Ning Wang, Qicong Chen, Zhiyong Zhong, Yaqi Qiu, Jue Wang, Xiajing Li, Ping Situ, Liangxue Lai, Mark A Zern, Honglin Chen, Yuyou Duan

Conclusions

Our results represent a significant step towards developing a simple and robust approach for the expansion of hPSCs in large scale.

Methods

hPSCs were expanded in suspension culture supplemented with polyvinyl alcohol (PVA) and dextran sulphate (DS), and 3D suspension culture of hPSCs formed cell aggregates under static or dynamic conditions. The sizes of cell aggregates and the cell proliferation as well as the pluripotency of hPSCs after expansion were assessed using cell counting, size analysis, real-time quantitative polymerase chain reaction, flow cytometry analysis, immunofluorescence staining, embryoid body formation, teratoma formation and transcriptome sequencing.

Results

Our results demonstrated that the addition of DS alone effectively prevented hPSC aggregation, while the addition of PVA significantly enhanced hPSC proliferation. The combination of PVA and DS not only promoted cell proliferation of hPSCs but also produced uniform and size-controlled cell aggregates. Moreover, hPSCs treated with PVA, or DS or a combination, maintained the pluripotency and were capable of differentiating into all three germ layers. mRNA-seq analysis demonstrated that the combination of PVA and DS significantly promoted hPSC proliferation and prevented cell aggregation through improving energy metabolism-related processes, regulating cell growth, cell proliferation and cell division, as well as reducing the adhesion among hPSC aggregates by affecting expression of genes related to cell adhesion. Conclusions: Our results represent a significant step towards developing a simple and robust approach for the expansion of hPSCs in large scale.

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