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Multiphase mixing characteristics in a microcarrier-based stirred tank bioreactor suitable for human mesenchymal stem cell expansion

机译:适用于人间充质干细胞扩增的基于微载体的搅拌槽生物反应器中的多相混合特性

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摘要

Large-scale human mesenchymal stem cell expansion calls for a bioreaction system, that provides a sufficient growth surface. An alternative to static cultivations systems like cell factories are disposable stirred tank reactors. Here, microcarriers provide the required growth surface, but these make it difficult to achieve a complete homogenization in the bioreactor, while avoiding shear stress. To gain insight into this process, we investigated the impact of different power inputs (0.02-2.6W m(-3)) on the mixing time (t(m)). Whereas tm was inversely proportional to agitation in a one-phase-system, aeration resulted in a constant mixing time at 30-70 rpm. A high microcarrier concentration (30 g L-1) and low stirrer speed (30 rpm) in the liquid-solid system caused a 50-fold increase in t(m) and the formation of a discrete non-mixed upper zone. The effect of the microcarrier concentration on tm became negligible at higher stirrer speeds. In the three-phase system, microcarrier settling was prevented by aeration and a minimal specific power input of 0.6 Wm(-3) was sufficient for complete homogenization. We confirmed that a low power input during stem cell expansion leads to inhomogeneity, which has not been investigated in the three-phase system up to date. (C) 2016 Elsevier Ltd. All rights reserved.
机译:大规模的人类间充质干细胞扩增需要生物反应系统,该系统可提供足够的生长表面。诸如细胞工厂之类的静态培养系统的替代品是一次性搅拌釜反应器。在这里,微载体提供了所需的生长表面,但是它们使得难以在生物反应器中实现完全均质化,同时又避免了剪切应力。为了深入了解此过程,我们研究了不同功率输入(0.02-2.6W m(-3))对混合时间(t(m))的影响。在单相系统中,tm与搅拌成反比,而通气则导致30-70 rpm的混合时间恒定。液-固系统中的高微载体浓度(30 g L-1)和低搅拌器速度(30 rpm)导致t(m)增加50倍,并形成离散的非混合上部区域。在较高的搅拌器速度下,微载体浓度对tm的影响可忽略不计。在三相系统中,通气可防止微载体沉降,并且0.6 Wm(-3)的最小比功率输入足以实现完全均质化。我们证实干细胞扩增过程中的低功率输入会导致不均匀性,迄今为止,尚未在三相系统中对此进行过研究。 (C)2016 Elsevier Ltd.保留所有权利。

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  • 来源
    《Process Biochemistry 》 |2016年第9期| 1109-1119| 共11页
  • 作者单位

    Univ Appl Sci Mittelhessen, Inst Bioproc Engn & Pharmaceut Technol, Giessen, Germany;

    Univ Appl Sci Mittelhessen, Inst Bioproc Engn & Pharmaceut Technol, Giessen, Germany;

    Univ Appl Sci Mittelhessen, Inst Bioproc Engn & Pharmaceut Technol, Giessen, Germany;

    Univ Appl Sci Mittelhessen, Inst Bioproc Engn & Pharmaceut Technol, Giessen, Germany;

    Univ Appl Sci Mittelhessen, Inst Bioproc Engn & Pharmaceut Technol, Giessen, Germany|Fraunhofer Inst Mol Biol & Appl Ecol IME, Project Grp Bioresources, Giessen, Germany;

    Univ Appl Sci Mittelhessen, Inst Bioproc Engn & Pharmaceut Technol, Giessen, Germany;

    Univ Appl Sci Mittelhessen, Inst Bioproc Engn & Pharmaceut Technol, Giessen, Germany|Fraunhofer Inst Mol Biol & Appl Ecol IME, Project Grp Bioresources, Giessen, Germany|Univ Giessen, Fac Biol & Chem, Giessen, Germany|Kansas State Univ, Dept Chem Engn, Durland Hall, Manhattan, KS 66506 USA;

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  • 正文语种 eng
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  • 关键词

    Mesenchymal stem cell; Mixing time; Transition flow regime; Disposable bioreactor; Microcarriers; Power input; Particle suspension;

    机译:间充质干细胞;混合时间;过渡流动方式;一次性生物反应器;微载体;功率输入;颗粒悬浮;

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