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Multi-foci laser microfabrication of 3D polymeric scaffolds for stem cell expansion in regenerative medicine

机译:用于再生医学中干细胞扩增的3D聚合物支架的多焦点激光微加工

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摘要

High quality large scale fabrication of cellular scaffolds, with three-dimensional resolution comparable to cell size, is an important task to enable regenerative medicine applications with stem cells. We are using two-photon polymerization to produce our stem cell culture substrate called Nichoid, which we already demonstrated capable of stimulating cell proliferation while maintaining their stemness, without the need of dangerous additives. Parallelization of this technique can be achieved with the use of a spatial light modulator: here we show the results obtained combining this device with fast linear stages to produce Nichoid-covered substrates by two-photon polymerization. The well-polymerized structures confirm that this approach is particularly convenient for porous structures, and allows a significant time saving by a factor of almost five, with minor design adjustments. A Live & Dead assay was performed on mesenchymal stem cells cultured into the Nichoid microstructures in order to verify that no difference in cell viability is present, compared to microstructures fabricated by a single focus. This parallel setup opens the possibility to obtain a much larger number of microstructured substrates, that are essential to test new stem cell-based therapies. This approach can be also used for the fast fabrication of other kinds of cell culture devices.
机译:具有与细胞大小相当的三维分辨率的高质量,大规模的细胞支架制造,是实现干细胞再生医学应用的一项重要任务。我们正在使用双光子聚合来生产称为Nichoid的干细胞培养基质,我们已经证明了该基质能够刺激细胞增殖,同时保持其干性,而无需使用危险的添加剂。可以通过使用空间光调制器来实现此技术的并行化:在这里,我们显示了将该设备与快速线性平台相结合以通过双光子聚合生产Nichoid覆盖的基板所获得的结果。聚合良好的结构证实了该方法对于多孔结构特别方便,并且在进行较小的设计调整的情况下,可以节省大约五倍的时间。对培养到尼古德微结构中的间充质干细胞进行了活死分析,以验证与单焦点制造的微结构相比,细胞存活率没有差异。这种并行设置打开了获得大量微结构化底物的可能性,这对于测试基于新干细胞的疗法至关重要。该方法也可以用于其他种类的细胞培养装置的快速制造。

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