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Human Mesenchymal Stem Cells Expansion on Three-Dimensional (3D) Printed Poly-Styrene (PS) Scaffolds in a Perfusion Bioreactor

机译:人间充质干细胞在灌注生物反应器中的三维(3D)打印的聚苯乙烯(PS)支架上扩展

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In this study, we present a novel approach of expanding Adipose derived hMSCs (human Mesenchymal Stem Cells) seeded on 3D printed Poly-Styrene (PS) scaffolds within a perfusion based cell expansion bioreactor. 3D printed PS scaffolds inoculated with adipose derived hMSCs were cultured statically for 9 days in 2D for assuring the viability and proliferation expansion of hMSCs on PS scaffolds. Thereafter, a batch of pre-seeded scaffolds were dynamically cultured inside a perfusion based bioreactor system for 8 days to assess the expansion of hMSCs on the PS scaffolds. As compared to static 3D culture (control), the 3D perfusion based system resulted in comparable fold-expansion and viability. Osteogenic and Adipogenic differentiation potential of the harvested cells were evaluated to assess if the stem cells retained their stem cell properties at the end of the expansion step.
机译:在这项研究中,我们提出了一种新颖的方法,可将基于脂肪的hMSCs(人间充质干细胞)播种到基于灌注的细胞扩增生物反应器中的3D打印的聚苯乙烯(PS)支架上。将接种有脂肪来源的hMSC的3D打印PS支架在2D中静态培养9天,以确保hMSC在PS支架上的生存能力和增殖扩展。此后,将一批预接种的支架在基于灌注的生物反应器系统中动态培养8天,以评估hMSC在PS支架上的扩增。与静态3D培养(对照)相比,基于3D灌注的系统产生了相当的折叠扩展和生存能力。评价收获细胞的成骨和成脂分化潜能,以评估干细胞在扩增步骤结束时是否保留了其干细胞特性。

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