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Engineering large cartilage tissues using dynamic bioreactor culture at defined oxygen conditions

机译:在确定的氧气条件下使用动态生物反应器培养工程化大型软骨组织

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摘要

Mesenchymal stem cells maintained in appropriate culture conditions are capable of producing robust cartilage tissue. However, gradients in nutrient availability that arise during three-dimensional culture can result in the development of spatially inhomogeneous cartilage tissues with core regions devoid of matrix. Previous attempts at developing dynamic culture systems to overcome these limitations have reported suppression of mesenchymal stem cell chondrogenesis compared to static conditions. We hypothesize that by modulating oxygen availability during bioreactor culture, it is possible to engineer cartilage tissues of scale. The objective of this study was to determine whether dynamic bioreactor culture, at defined oxygen conditions, could facilitate the development of large, spatially homogeneous cartilage tissues using mesenchymal stem cell laden hydrogels. A dynamic culture regime was directly compared to static conditions for its capacity to support chondrogenesis of mesenchymal stem cells in both small and large alginate hydrogels. The influence of external oxygen tension on the response to the dynamic culture conditions was explored by performing the experiment at 20% O2 and 3% O2. At 20% O2, dynamic culture significantly suppressed chondrogenesis in engineered tissues of all sizes. In contrast, at 3% O2 dynamic culture significantly enhanced the distribution and amount of cartilage matrix components (sulphated glycosaminoglycan and collagen II) in larger constructs compared to static conditions. Taken together, these results demonstrate that dynamic culture regimes that provide adequate nutrient availability and a low oxygen environment can be employed to engineer large homogeneous cartilage tissues. Such culture systems could facilitate the scaling up of cartilage tissue engineering strategies towards clinically relevant dimensions.
机译:维持在适当培养条件下的间充质干细胞能够产生坚固的软骨组织。但是,在三维培养过程中出现的养分利用率梯度可能会导致具有核心区域而无基质的空间不均匀软骨组织的发展。先前开发动态培养系统以克服这些限制的尝试已经报道了与静态条件相比抑制了间充质干细胞的软骨形成。我们假设通过调节生物反应器培养过程中的氧气供应量,可以工程化规模的软骨组织。这项研究的目的是确定动态的生物反应器培养,在确定的氧气条件下,是否可以使用间充质干细胞载有水凝胶来促进大型,空间均匀的软骨组织的发育。将动态培养方案与静态条件直接比较,以支持大小藻酸盐水凝胶中的间充质干细胞的软骨形成。通过在20%O2和3%O2下进行实验,探索了外部氧气张力对动态培养条件响应的影响。在20%的氧气下,动态培养显着抑制了各种尺寸的工程组织中的软骨形成。相反,与静态条件相比,在3%的O2下,动态培养显着提高了较大结构中软骨基质成分(硫酸化的糖胺聚糖和胶原蛋白II)的分布和数量。综上所述,这些结果表明可以采用提供足够养分利用率和低氧环境的动态培养方案来改造大型均质软骨组织。这种培养系统可以促进将软骨组织工程策略扩大到临床上相关的尺寸。

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