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Centrifugal Seeding of Mammalian Cells in Nonwoven Fibrous Matrices

机译:非织造纤维基质中哺乳动物细胞的离心接种

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Three-dimensional (3D) cell cultures have many advantages over two-dimensional cultures. However, seeding cells in 3D scaffolds such as nonwoven fibrous polyethylene tereph-thalate (PET) matrices has been a challenge task in tissue engineering and cell culture bioprocessing. In this study, a centrifugal seeding method was investigated to improve the cell seeding efficiency in PET matrices with two different porosities (93% and 88%). Both the centrifugal force and centrifugation time were found to affect the seeding efficiency. With an appropriate centrifugation speed, a high 80-90% cell seeding efficiency was achieved and the time to reach this high seeding efficiency was less than 5 min. The seeding efficiency was similar for matrices with different porosities, although the optimal seeding time was significantly shorter for the low-porosity scaffold. Post seeding cell viability was demonstrated by culturing colon cancer cells seeded in PET matrices for over 5 days. The centrifugal seeding method developed in this work can be used to efficiently and uniformly seed small fibrous scaffolds for applications in 3D cell-based assays for high-throughput screening.
机译:三维(3D)细胞培养比二维培养具有许多优势。但是,在3D支架(例如非织造纤维状聚对苯二甲酸乙二醇酯(PET)基质)中植入细胞已成为组织工程和细胞培养生物处理中的一项挑战性任务。在这项研究中,研究了一种离心接种方法,以提高两种不同孔隙率(93%和88%)的PET基质中的细胞接种效率。发现离心力和离心时间都影响播种效率。在适当的离心速度下,可以达到80-90%的高细胞接种效率,达到这种高接种效率的时间少于5分钟。对于不同孔隙率的基质,播种效率相似,尽管对于低孔隙率支架,最佳播种时间明显较短。通过将接种在PET基质中的结肠癌细胞培养5天以上,可以证明接种后细胞的活力。这项工作中开发的离心播种方法可用于高效,均匀地播种小的纤维状支架,以用于基于3D细胞的高通量筛选分析。

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