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未分化的小鼠胚胎干细胞在悬浮培养生物反应器中聚集成团进行扩增。

Expansion of undifferentiated murine embryonic stem cells as aggregates in suspension culture bioreactors.

作者信息

Cormier Jaymi T, zur Nieden Nicole I, Rancourt Derrick E, Kallos Michael S

机构信息

Pharmaceutical Production Research Facility, Schulich School of Engineering, University of Calgary, Calgary, Alberta, Canada.

出版信息

Tissue Eng. 2006 Nov;12(11):3233-45. doi: 10.1089/ten.2006.12.3233.

Abstract

Pluripotent embryonic stem cells (ESCs) have recently been considered as a primary material for regenerating tissues lost to injuries and degenerative diseases. For clinical implementation of this technology, a quality controlled, reproducible culture system is necessary for the expansion and differentiation of the cells. Used in many bioprocess applications, suspension bioreactors have gained considerable attention for the regulated large-scale expansion of cells. The current study presents a bioreactor process for the large-scale expansion of undifferentiated murine ESCs as aggregates. In this system, the level of ESC aggregation and differentiation was effectively controlled by adjusting shear forces and inoculation density, achieving a 31-fold expansion in 5 days. Pluripotency markers Oct-4, Nanog, SSEA-1, ALP, and rex-1 were assessed using flow cytometry analysis and gene expression profiles and showed that the undifferentiated nature of the cells within the ESC aggregates was maintained. Colony-forming efficiencies and embryoid body formation tests of the expanded cultures demonstrated that characteristic functional attributes of undifferentiated cells were not lost. Overcoming a major impediment in the area of ESC expansion, this study describes a successful process for the controlled and reproducible largescale expansion of ESCs using suspension culture bioreactors.

摘要

多能胚胎干细胞(ESCs)最近被视为再生因损伤和退行性疾病而丧失的组织的主要材料。对于该技术的临床应用,需要一个质量可控、可重复的培养系统来扩增和分化细胞。悬浮生物反应器在许多生物过程应用中使用,因其可调控的细胞大规模扩增而备受关注。当前研究提出了一种用于大规模扩增未分化小鼠胚胎干细胞聚集体的生物反应器工艺。在该系统中,通过调节剪切力和接种密度有效地控制了胚胎干细胞的聚集和分化水平,在5天内实现了31倍的扩增。使用流式细胞术分析和基因表达谱评估了多能性标志物Oct-4、Nanog、SSEA-1、碱性磷酸酶(ALP)和rex-1,结果表明胚胎干细胞聚集体内的细胞未分化特性得以维持。对扩增培养物进行的集落形成效率和胚状体形成测试表明,未分化细胞的特征性功能属性没有丧失。本研究克服了胚胎干细胞扩增领域的一个主要障碍,描述了一种使用悬浮培养生物反应器对胚胎干细胞进行可控且可重复的大规模扩增的成功工艺。

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