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搅拌悬浮培养中多能干细胞聚集动力学的反问题分析

Inverse problem analysis of pluripotent stem cell aggregation dynamics in stirred-suspension cultures.

作者信息

Rostami Mahboubeh Rahmati, Wu Jincheng, Tzanakakis Emmanuel S

机构信息

Department of Chemical and Biological Engineering, Tufts University, Medford, MA 02155, USA.

Department of Chemical and Biological Engineering, Tufts University, Medford, MA 02155, USA; Tufts Clinical and Translational Science Institute, Tufts Medical Center, Boston, MA 02111, USA.

出版信息

J Biotechnol. 2015 Aug 20;208:70-9. doi: 10.1016/j.jbiotec.2015.05.018. Epub 2015 May 30.

Abstract

The cultivation of stem cells as aggregates in scalable bioreactor cultures is an appealing modality for the large-scale manufacturing of stem cell products. Aggregation phenomena are central to such bioprocesses affecting the viability, proliferation and differentiation trajectory of stem cells but a quantitative framework is currently lacking. A population balance equation (PBE) model was used to describe the temporal evolution of the embryonic stem cell (ESC) cluster size distribution by considering collision-induced aggregation and cell proliferation in a stirred-suspension vessel. For ESC cultures at different agitation rates, the aggregation kernel representing the aggregation dynamics was successfully recovered as a solution of the inverse problem. The rate of change of the average aggregate size was greater at the intermediate rate tested suggesting a trade-off between increased collisions and agitation-induced shear. Results from forward simulation with obtained aggregation kernels were in agreement with transient aggregate size data from experiments. We conclude that the framework presented here can complement mechanistic studies offering insights into relevant stem cell clustering processes. More importantly from a process development standpoint, this strategy can be employed in the design and control of bioreactors for the generation of stem cell derivatives for drug screening, tissue engineering and regenerative medicine.

摘要

在可扩展的生物反应器培养中,将干细胞培养成聚集体是大规模生产干细胞产品的一种有吸引力的方式。聚集现象是此类生物过程的核心,影响着干细胞的活力、增殖和分化轨迹,但目前缺乏一个定量框架。通过考虑搅拌悬浮容器中碰撞诱导的聚集和细胞增殖,使用群体平衡方程(PBE)模型来描述胚胎干细胞(ESC)聚集体大小分布的时间演变。对于不同搅拌速率下的ESC培养,作为反问题的解成功恢复了代表聚集动力学的聚集核。在测试的中间速率下,平均聚集体大小的变化率更大,这表明在增加碰撞和搅拌诱导的剪切之间存在权衡。使用获得的聚集核进行正向模拟的结果与实验中的瞬态聚集体大小数据一致。我们得出结论,这里提出的框架可以补充机理研究,为相关的干细胞聚集过程提供见解。从工艺开发的角度来看更重要的是,这种策略可用于设计和控制生物反应器,以生成用于药物筛选、组织工程和再生医学的干细胞衍生物。

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