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The combination of three-dimensional and rotary cell culture system promotes the proliferation and maintains the differentiation potential of rat BMSCs

机译:三维和旋转细胞培养系统的结合促进了大鼠骨髓间充质干细胞的增殖并保持了其分化潜能

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摘要

Bone marrow mesenchymal stem cells (BMSCs) are a good candidate for tissue engineering and clinical application. One of the challenges in its cell therapy is how to quickly obtain an adequate number of seed cells and meanwhile maintain suitable differentiation potential. In this study we combined three-dimensional (3D) collagen porous scaffolds with rotary cell culture system (RCCS) (RCCS-3D) to create a stereoscopic dynamic environment for the amplification of rat BMSCs in vitro. The results revealed that this RCCS-3D system could enhance BMSCs’ proliferation and colony formation, as well as maintain the differentiation potential compared with conventional static two-dimensional (2D) and 3D cell culture conditions. In addition, high-throughput microarray analysis showed that gene expressions of RCCS-3D system displayed significant differences in cell proliferation and differentiation compared with static-2D conditions. Thus, RCCS-3D system could provide an effective means for BMSCs cell proliferation in vitro and meanwhile maintain differentiation potential in tissue engineering.
机译:骨髓间充质干细胞(BMSCs)是组织工程和临床应用的良好候选者。其细胞疗法的挑战之一是如何快速获得足够数量的种子细胞并同时保持合适的分化潜能。在这项研究中,我们将三维(3D)胶原蛋白多孔支架与旋转细胞培养系统(RCCS)(RCCS-3D)结合在一起,创造了一个立体动态环境,用于体外扩增大鼠BMSC。结果表明,与常规静态二维(2D)和3D细胞培养条件相比,该RCCS-3D系统可以增强BMSC的增殖和集落形成,并保持分化潜能。此外,高通量微阵列分析表明,与静态2D条件相比,RCCS-3D系统的基因表达在细胞增殖和分化方面显示出显着差异。因此,RCCS-3D系统可以为BMSCs的体外细胞增殖提供有效的手段,并在组织工程中保持分化潜能。

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