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Preparing for cell culture scale-out: establishing parity of bioreactor- and flask-expanded mesenchymal stromal cell cultures

机译:准备进行细胞培养横向扩增:建立生物反应器和烧瓶扩增的间充质基质细胞培养的均等

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Cell-based therapies have the potential to become treatment options for many diseases, but efficient scale-out of these therapies has proven to be a major hurdle. Bioreactors can be used to overcome this hurdle, but changing the culture method can introduce unwanted changes to the cell product. Therefore, it is important to establish parity between products generated using traditional methods versus those generated using a bioreactor. Mesenchymal stromal cells (MSCs) are cultured in parallel using either traditional culture flasks, spinner vessels or a new bioreactor system. To investigate parity between the cells obtained from different methods, harvested cells are compared in terms of yield, phenotype and functionality. Bioreactor-based expansion yielded high cell numbers (222–510 million cells). Highest cell expansion was observed upon culture in flasks [average 5.0 population doublings (PDL)], followed by bioreactor (4.0 PDL) and spinner flasks (3.3 PDL). Flow cytometry confirmed MSC identity (CD73+, CD90+ and CD105+) and lack of contaminating hematopoietic cell populations. Cultured MSCs did not display genetic aberrations and no difference in differentiation and immunomodulatory capacity was observed between culture conditions. The response to IFNγ stimulation was similar for cells obtained from all culture conditions, as was the capacity to inhibit T cell proliferation. The new bioreactor technology can be used to culture large amounts of cells with characteristics equivalent to those cultured using traditional, flask based, methods.
机译:基于细胞的疗法有可能成为许多疾病的治疗选择,但是有效地扩展这些疗法已成为主要障碍。可以使用生物反应器克服这一障碍,但是改变培养方法会给细胞产物带来不必要的变化。因此,重要的是要在使用传统方法生成的产品与使用生物反应器生成的产品之间建立均等。间质基质细胞(MSCs)使用传统的培养瓶,旋转容器或新的生物反应器系统并行培养。为了研究从不同方法获得的细胞之间的均等性,比较了收获细胞的产量,表型和功能性。基于生物反应器的扩增产生高细胞数(222–5.1亿个细胞)。在烧瓶中培养时观察到最高的细胞扩增[平均5.0种群倍增(PDL)],然后是生物反应器(4.0 PDL)和旋转瓶(3.3 PDL)。流式细胞仪证实了MSC身份(CD73 +,CD90 +和CD105 +)以及缺乏污染的造血细胞群。培养的MSC没有显示遗传畸变,并且在培养条件之间没有观察到分化和免疫调节能力的差异。从所有培养条件获得的细胞对IFNγ刺激的反应相似,抑制T细胞增殖的能力也相似。新的生物反应器技术可用于培养大量细胞,其特性与使用传统的基于烧瓶的方法培养的细胞相同。

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