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Human periosteal-derived cell expansion in a perfusion bioreactor system: proliferation, differentiation and extracellular matrix formation

机译:灌注生物反应器系统中人骨膜来源的细胞扩增:增殖,分化和细胞外基质形成

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Perfusion bioreactor systems have shown to be a valuable tool for the in vitro development of three-dimensional (3D) cell-carrier constructs. Their use for cell expansion, however, has been much less explored. Since maintenance of the initial cell phenotype is essential in this process, it is imperative to obtain insight into the bioreactor-related variables determining cell fate. Therefore, this study investigated the influence of fluid flow-induced shear stress on the proliferation, differentiation and matrix deposition of human periosteal-derived cells in the absence of additional differentiation-inducing stimuli; 120 000 cells were seeded on additive manufactured 3D Ti6Al4V scaffolds and cultured for up to 28 days at different flow rates in the range 0.04-6 ml/min. DNA measurements showed, on average, a three-fold increase in cell content for all perfused conditions in comparison to static controls, whereas the magnitude of the flow rate did not have an influence. Contrast-enhanced nanofocus X-ray computed tomography showed substantial formation of an engineered neotissue in all perfused conditions, resulting in a filling (up to 70%) of the total internal void volume, and no flow rate-dependent differences were observed. The expression of key osteogenic markers, such as RunX2, OCN, OPN and Col1, did not show any significant changes in comparison to static controls after 28 days of culture, with the exception of OSX at high flow rates. We therefore concluded that, in the absence of additional osteogenic stimuli, the investigated perfusion conditions increased cell proliferation but did not significantly enhance osteogenic differentiation, thus allowing for this process to be used for cell expansion. Copyright © 2014 John Wiley & Sons, Ltd.
机译:灌注生物反应器系统已被证明是体外开发三维(3D)细胞载体构建体的有价值的工具。然而,很少将其用于细胞扩增。由于维持初始细胞表型在此过程中至关重要,因此必须深入了解决定细胞命运的生物反应器相关变量。因此,本研究研究了在没有其他诱导分化刺激的情况下,流体流动引起的剪切应力对人骨膜来源细胞增殖,分化和基质沉积的影响。将120000个细胞接种在加成制造的3D Ti6Al4V支架上,并以0.04-6?ml / min的不同流速培养28天。 DNA测量表明,与静态对照相比,所有灌注条件下的细胞含量平均增加了三倍,而流速的大小没有影响。对比增强的纳米聚焦X射线计算机断层扫描显示,在所有灌注条件下都大量形成了工程新组织,导致内部空隙总体积的填充(高达70%),并且未观察到流速依赖性差异。培养28天后,与静态对照相比,关键成骨标记物(如RunX2,OCN,OPN和Col1)的表达未显示任何显着变化,但高流速下的OSX除外。因此,我们得出的结论是,在没有其他成骨刺激的情况下,所研究的灌注条件会增加细胞增殖,但不会显着增强成骨分化,因此可以将该过程用于细胞扩增。版权所有©2014 John Wiley&Sons,Ltd.

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