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基于微载体的人骨髓间充质干细胞扩增工艺,可实现高活力及未分化特性。

Microcarrier-based expansion process for hMSCs with high vitality and undifferentiated characteristics.

作者信息

Elseberg Christiane L, Leber Jasmin, Salzig Denise, Wallrapp Christine, Kassem Moustapha, Kraume Matthias, Czermak Peter

机构信息

Institute of Bioprocess Engineering and Pharmaceutical Technology, University of Applied Sciences Mittelhessen, Giessen, Germany.

出版信息

Int J Artif Organs. 2012 Feb;35(2):93-107. doi: 10.5301/ijao.5000077.

Abstract

For cell therapy, a high biomass of human mesenchymal stem cells (hMSCs) is required for clinical applications, such as in the form of encapsulated implants. An easy and reproducible microcarrier-based stirred tank reactor cultivation process for hMSCs in 1.68 L scale is described. To avoid medium changes, studies comparing high-glucose DMEM (DMEM-HG) with low-glucose EMEM were performed showing that high-glucose medium has positive effects on cell proliferation and that cell differentiability remains. Studies on the inoculation strategy and cell density, carrier concentration, volume, and stirrer speed were performed and resulted in a set of optimized parameters, inoculation strategy was found to be 45 minutes of static state and 2 minutes of stirring repeated in 4 cycles. The inoculation density was chosen to be 7×10³ cells/cm2, and the carrier concentration of glass surface carrier was 25 g/L. For the described reactor system, a stirrer speed of 120 rpm for the inoculation process and a daily increase of 10 rpm up to 160 rpm were found to be suitable. Process reproducibility was shown by 3 repeated cultivations at the determined set of parameters allowing high biomass values of up to 7×10⁸ cells per batch. With DMEM-HG, no limitation of glucose was found, and lactate and ammonia remained lower than critical inhibitory concentrations. Comparison of the static (T-flask) and dynamic cultures in the stirred tank reactor showed for both cases, that cells were of high vitality and both maintained differentiability. In both cases, encapsulation of the cells resulted in high bead vitality, a basic requirement for cell therapy application.

摘要

对于细胞治疗,临床应用(如以封装植入物的形式)需要大量的人间充质干细胞(hMSCs)。本文描述了一种在1.68 L规模下用于hMSCs的基于微载体的简单且可重复的搅拌罐反应器培养工艺。为避免更换培养基,进行了比较高糖DMEM(DMEM-HG)和低糖EMEM的研究,结果表明高糖培养基对细胞增殖有积极影响且细胞仍保持分化能力。对接种策略、细胞密度、载体浓度、体积和搅拌器速度进行了研究,得出了一组优化参数,接种策略为45分钟静态和2分钟搅拌,重复4个循环。接种密度选择为7×10³个细胞/cm²,玻璃表面载体的载体浓度为25 g/L。对于所描述的反应器系统,发现接种过程中搅拌器速度为120 rpm,每天增加10 rpm直至160 rpm是合适的。通过在确定的参数集下进行3次重复培养证明了工艺的可重复性,每批可获得高达7×10⁸个细胞的高生物量值。使用DMEM-HG时,未发现葡萄糖限制,乳酸和氨的含量仍低于临界抑制浓度。搅拌罐反应器中静态(T型瓶)和动态培养的比较表明,两种情况下细胞活力都很高,且都保持了分化能力。在两种情况下,细胞封装都导致珠子活力高,这是细胞治疗应用的基本要求。

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