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Expansion of Human Mesenchymal Stromal Cells from Fresh Bone Marrow in a 3D Scaffold-Based System under Direct Perfusion

机译:在直接灌注的3D支架为基础的系统中从新鲜骨髓中扩增人间质基质细胞。

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摘要

Mesenchymal stromal/stem cell (MSC) expansion in conventional monolayer culture on plastic dishes (2D) leads to progressive loss of functionality and thus challenges fundamental studies on the physiology of skeletal progenitors, as well as translational applications for cellular therapy and molecular medicine. Here we demonstrate that 2D MSC expansion can be entirely bypassed by culturing freshly isolated bone marrow nucleated cells within 3D porous scaffolds in a perfusion-based bioreactor system. The 3D-perfusion system generated a stromal tissue that could be enzymatically treated to yield CD45- MSC. As compared to 2D-expanded MSC (control), those derived from 3D-perfusion culture after the same time (3 weeks) or a similar extent of proliferation (7–8 doublings) better maintained their progenitor properties, as assessed by a 4.3-fold higher clonogenicity and the superior differentiation capacity towards all typical mesenchymal lineages. Transcriptomic analysis of MSC from 5 donors validated the robustness of the process and indicated a reduced inter-donor variability and a significant upregulation of multipotency-related gene clusters following 3D-perfusion- as compared to 2D-expansion. Interestingly, the differences in functionality and transcriptomics between MSC expanded in 2D or under 3D-perfusion were only partially captured by cytofluorimetric analysis using conventional surface markers. The described system offers a multidisciplinary approach to study how factors of a 3D engineered niche regulate MSC function and, by streamlining conventional labor-intensive processes, is prone to automation and scalability within closed bioreactor systems.
机译:间质基质/干细胞(MSC)在塑料培养皿(2D)上的常规单层培养中的扩增导致功能的逐步丧失,因此对骨骼祖细胞的生理学基础研究以及细胞治疗和分子医学的翻译应用提出了挑战。在这里,我们证明了通过在基于灌注的生物反应器系统中的3D多孔支架内培养新鲜分离的骨髓有核细胞,可以完全绕过2D MSC扩展。 3D灌注系统生成了一个基质组织,可以对其进行酶处理以产生CD45-MSC。与2D扩增的MSC(对照)相比,在相同时间(3周)或相似程度的增殖(7-8倍)后衍生自3D灌注培养的细胞,可以更好地保持其祖细胞特性,这一点由4.3-对所有典型的间充质谱系具有更高的克隆形成能力和卓越的分化能力。对来自5个供体的MSC进行的转录组学分析证实了该过程的稳健性,并表明与2D扩展相比,3D灌注后供体间变异性降低,且多能性相关基因簇的显着上调。有趣的是,在2D或3D灌注下扩展的MSC之间的功能和转录组学差异仅通过使用常规表面标记的细胞荧光分析法得以部分捕获。所描述的系统提供了一种多学科的方法来研究3D工程位的因素如何调节MSC功能,并且通过简化常规的劳动密集型过程,倾向于在封闭的生物反应器系统中实现自动化和可扩展性。

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