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Three-dimensional Microfabrication System for Scaffolds in Tissue Engineering

机译:组织工程支架的三维微细加工系统

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摘要

Understanding chondrocyte behavior inside complex, three-dimensional environments with controlled patterning of geometrical factors would provide significant insights into the basic biology of tissue regenerations. One of the fundamental limitations in studying such behavior has been the inability to fabricate controlled 3D structures. To overcome this problem, we have developed a three-dimensional microfabrication system. This system allows fabrication of predesigned internal architectures and pore size by stacking up the photopolymerized materials. Photopolymer SL5180 was used as the 3D microfabricated scaffolds. The results demonstrate that controllable and reproducible inner-architecture can be fabricated. Chondrocytes from human nasal septum were cultured in 3D scaffolds for cell adhesion behavior. Such 3D scaffolds might provide effective key factors to study cell behavior in complex environments and could eventually lead to optimum design of scaffolds in various tissue regenerations such as cartilage, bone, etc. in a near future.
机译:通过几何因素的受控模式了解复杂的三维环境中的软骨细胞行为,将为组织再生的基本生物学提供重要的见识。研究此类行为的基本限制之一是无法制造受控的3D结构。为了克服这个问题,我们开发了三维微细加工系统。该系统可以通过堆叠光聚合材料来制造预先设计的内部结构和孔径。光敏聚合物SL5180用作3D微型支架。结果表明可以制造可控且可复制的内部体系结构。将来自人鼻中隔的软骨细胞在3D支架中进行培养,以观察细胞的粘附行为。这样的3D支架可能会提供有效的关键因素来研究复杂环境中的细胞行为,并可能最终在不久的将来导致各种组织再生(例如软骨,骨骼等)中支架的最佳设计。

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