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首页> 外文期刊>Acta biomaterialia >Effects of the architecture of tissue engineering scaffolds on cell seeding and culturing.
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Effects of the architecture of tissue engineering scaffolds on cell seeding and culturing.

机译:组织工程支架的结构对细胞播种和培养的影响。

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The advance of rapid prototyping techniques has significantly improved control over the pore network architecture of tissue engineering scaffolds. In this work, we have assessed the influence of scaffold pore architecture on cell seeding and static culturing, by comparing a computer designed gyroid architecture fabricated by stereolithography with a random pore architecture resulting from salt leaching. The scaffold types showed comparable porosity and pore size values, but the gyroid type showed a more than 10-fold higher permeability due to the absence of size-limiting pore interconnections. The higher permeability significantly improved the wetting properties of the hydrophobic scaffolds and increased the settling speed of cells upon static seeding of immortalised mesenchymal stem cells. After dynamic seeding followed by 5 days of static culture gyroid scaffolds showed large cell populations in the centre of the scaffold, while salt-leached scaffolds were covered with a cell sheet on the outside and no cells were found in the scaffold centre. It was shown that interconnectivity of the pores and permeability of the scaffold prolonged the time of static culture before overgrowth of cells at the scaffold periphery occurred. Furthermore, novel scaffold designs are proposed to further improve the transport of oxygen and nutrients throughout the scaffolds and to create tissue engineering grafts with a designed, pre-fabricated vasculature.
机译:快速原型技术的发展已大大改善了对组织工程支架的孔网络架构的控制。在这项工作中,我们通过比较由立体平版印刷术制造的计算机设计的回旋结构与盐浸出产生的随机孔结构,评估了支架孔结构对细胞播种和静态培养的影响。支架类型显示出可比的孔隙率和孔径值,但由于不存在尺寸限制的孔互连,螺旋型显示出更高的渗透率10倍以上。在永生化的间充质干细胞静态接种后,较高的渗透性显着改善了疏水性支架的润湿性并提高了细胞的沉降速度。动态播种后,再进行5天的静态培养,回旋型支架在支架中心显示大量细胞,而盐浸式支架在外部覆盖有细胞片,在支架中心未发现任何细胞。结果表明,在支架周围细胞过度生长之前,孔的互连性和支架的渗透性延长了静态培养的时间。此外,提出了新颖的支架设计,以进一步改善氧气和营养物在整个支架中的运输,并创建具有设计好的预制脉管系统的组织工程移植物。

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