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OSTEOARTHRITIC HUMAN CHONDROCYTES PROLIFERATE IN 3D CO-CULTURE WITH MESENCHYMAL STEM CELLS IN SUSPENSION BIOREACTORS

机译:悬浮生物反应器中的3D共培养中的骨关节炎人类软骨细胞与间充质干细胞增殖

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摘要

Osteoarthritis (OA) is a painful disease, characterized by progressive surface erosion of articular cartilage. The use of human articular chondrocytes (hACs) sourced from OA patients has been proposed as a potential therapy for cartilage repair, but this approach is limited by the lack of scalable methods to produce clinically relevant quantities of cartilage-generating cells. Previous studies in static culture have shown that hACs co-cultured with human mesenchymal stem cells (hMSCs) as 3D pellets can upregulate proliferation and generate neocartilage with enhanced functional matrix formation relative to that produced from either cell type alone. However, since static culture flasks are not readily amenable to scale-up, scalable suspension bioreactors were investigated to determine if they could support the co-culture of hMSCs and OA hACs under serum-free conditions to facilitate clinical translation of this approach. When hACs and hMSCs (1:3 ratio) were inoculated at 20,000 cells/mL into 125 mL suspension bioreactors and fed weekly, they spontaneously formed 3D aggregates and proliferated, resulting in a 4.75-fold increase over 16 days. Whereas the apparent growth rate was lower than that achieved during co-culture as a 2D monolayer in static culture flasks, bioreactor co-culture as 3D aggregates resulted in a significantly lower collagen I to II mRNA expression ratio, and more than double the GAG/DNA content (5.8 versus 2.5 μg/μg). The proliferation of hMSCs and hACs as 3D aggregates in serum-free suspension culture demonstrates that scalable bioreactors represent an accessible platform capable of supporting the generation of clinical quantities of cells for use in cell-based cartilage repair.
机译:骨关节炎(OA)是一种痛苦的疾病,其特征在于关节软骨的进行性表面侵蚀。已经提出使用来自OA患者的人类关节软骨细胞(hAC)作为软骨修复的潜在疗法,但是由于缺乏可扩展的方法来生产临床上相关数量的软骨生成细胞,这种方法受到了限制。先前在静态培养中的研究表明,与3CM沉淀物一起与人间充质干细胞(hMSCs)共培养的hAC可以上调增殖并产生新软骨,其功能性基质形成相对于单独使用任一细胞类型产生的新基质。但是,由于静态培养瓶不易按比例放大,因此对可扩展的悬浮生物反应器进行了研究,以确定它们是否可以在无血清条件下支持hMSC和OA hAC的共培养,以促进该方法的临床翻译。将hAC和hMSC(比例为1:3)以20,000个细胞/ mL的浓度接种到125 mL悬浮生物反应器中并每周进料时,它们会自发形成3D聚集体并增殖,从而在16天内增加4.75倍。尽管表观生长速率低于静态培养瓶中2D单层共培养期间的表观生长速率,但生物反应器共培养为3D聚集体导致胶原蛋白I至II mRNA表达比例明显降低,并且GAG / DNA含量(5.8对2.5μg/μg)。 hMSC和hAC作为3D聚集体在无血清悬浮培养物中的增殖表明,可扩展的生物反应器代表了一种可访问的平台,能够支持临床数量的细胞生成,用于基于细胞的软骨修复。

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