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A digital micro-mirror device-based system for the microfabrication of complex, spatially patterned list

机译:基于数字微镜设备的系统,用于微细制造复杂的空间图案清单

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摘要

Our ability to create precise, pre-designed, spatially patterned biochemical and physical microenvironments inside polymer scaffolds could provide a powerful tool in studying progenitor cell behavior and differentiation under biomimetic, three-dimensional (3D) culture conditions. We have developed a simple and fast, layer-by-layer microstereolithography system consisting of an ultra-violet light source, a digital micro-mirror masking device, and a conventional computer projector, that allows fabrication of complex internal features along with precise spatial distribution of biological factors inside a single scaffold. Photocrosslinkable poly(ethylene glycol) diacrylates were used as the scaffold material, and murine bone marrow-derived cells were successfully encapsulated or seeded on fibronectin-functionalized scaffolds. Fluorescently-labeled polystyrene microparticles were used to show the capability of this system to create scaffolds with complex internal architectures and spatial patterns. We demonstrate that precisely controlled pore size and shapes can be easily fabricated using a simple, computer-aided process. Our results further indicate that multi-layered scaffolds with spatially distributed factors in the same layer or across different layers can be efficiently manufactured using this technique. These micro-fabricated scaffolds are conducive for osteogenic differentiation of marrow-derived stem cells, as indicated by efficient matrix mineralization.
机译:我们在聚合物支架内部创建精确的,预先设计的,空间格局的生化和物理微环境的能力可以为研究祖细胞在仿生,三维(3D)培养条件下的行为和分化提供强大的工具。我们已经开发了一种简单,快速的逐层微立体光刻系统,该系统由紫外光源,数字微镜掩膜设备和传统的计算机投影仪组成,可以制造复杂的内部特征以及精确的空间分布单个支架内的生物学因素将可光交联的聚(乙二醇)二丙烯酸酯用作支架材料,并将鼠骨髓源性细胞成功封装或接种在纤连蛋白功能化支架上。荧光标记的聚苯乙烯微粒用于显示该系统创建具有复杂内部结构和空间图案的支架的能力。我们证明,可以使用简单的计算机辅助过程轻松制造精确控制的孔径和形状。我们的结果进一步表明,使用这种技术可以有效地制造在同一层或不同层中具有空间分布因素的多层支架。如有效基质矿化所表明的那样,这些微型制造的支架有利于骨髓来源的干细胞的成骨分化。

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