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Improved expansion of equine cord blood derived mesenchymal stromal cells by using microcarriers in stirred suspension bioreactors

机译:通过在搅拌的悬浮生物反应器中使用微载体改善了马脐血来源的间充质基质细胞的扩增

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摘要

Equine mesenchymal stromal cells (MSCs) are increasingly investigated for their clinical therapeutic utility. Such cell-based treatments can require cell numbers in the millions or billions, with conventional expansion methods using static T-flasks typically inefficient in achieving these cell numbers. Equine cord blood-derived MSCs (eCB-MSCs), are promising cell candidates owing to their capacity for chondrogenic differentiation and immunomodulation. Expansion of eCB-MSCs in stirred suspension bioreactors with microcarriers as an attachment surface has the potential to generate clinically relevant numbers of cells while decreasing cost, time and labour requirements and increasing reproducibility and yield when compared to static expansion. As eCB-MSCs have not yet been expanded in stirred suspension bioreactors, a robust protocol was required to expand these cells using this method. This study outlines the development of an expansion bioprocess, detailing the inoculation phase, expansion phase, and harvesting phase, followed by phenotypic and trilineage differentiation characterization of two eCB-MSC donors. The process achieved maximum cell densities up to 75,000 cells/cm2 corresponding to 40 million cells in a 100 mL bioreactor, with a harvesting efficiency of up to 80%, corresponding to a yield of 32 million cells from a 100 mL bioreactor. When compared to cells grown in static T-flasks, bioreactor-expanded eCB-MSC cultures did not change in surface marker expression or trilineage differentiation capacity. This indicates that the bioreactor expansion process yields large quantities of eCB-MSCs with similar characteristics to conventionally grown eCB-MSCs.
机译:马间充质基质细胞(MSCs)的临床治疗用途越来越受到研究。这种基于细胞的治疗可能需要数百万或数十亿的细胞数,而使用静态T瓶的常规扩增方法通常无法有效地获得这些细胞数。马脐血来源的MSC(eCB-MSC),由于其软骨分化和免疫调节的能力,是有希望的细胞候选物。与静态扩展相比,在以微载体为附着表面的搅拌悬浮生物反应器中扩展eCB-MSC具有产生临床上相关数量的细胞的潜力,同时降低了成本,时间和人工需求,并提高了重现性和产量。由于eCB-MSC尚未在搅拌的悬浮生物反应器中扩增,因此需要鲁棒的方案才能使用此方法扩增这些细胞。这项研究概述了扩展生物过程的发展,详细介绍了接种阶段,扩展阶段和收获阶段,然后是两个eCB-MSC供体的表型和三系分化特征。该过程实现了最高细胞密度,最高可达75,000个细胞/ cm 2 ,相当于100µmL生物反应器中的4,000万个细胞,收获效率高达80%,相当于从中获得了3200万个细胞的产量。 100 mL生物反应器。与在静态T瓶中生长的细胞相比,生物反应器扩展的eCB-MSC培养物的表面标志物表达或三系分化能力没有变化。这表明生物反应器扩展过程产生了大量的eCB-MSC,其特性与常规生长的eCB-MSC相似。

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