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Development of 3D printed biomimetic scaffold for tissue engineering

机译:用于组织工程的3D打印仿生支架的开发

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One of the major challenges in tissue engineering is to mimic nanoarchitecture of native collagen fibrils in human body, as well as to fabricate three-dimensional outer shape to be regenerated. Here, we introduced a novel three-dimensional (3D) fabrication method for biomimetic scaffold by combining 3D printing and electrospinning process with using biocompatible polymers. Electrospun nanofiber construct has been believed to be a promising candidate for the simulation of natural extracellular matrix (ECM) structure. The random and aligned nanofiber mats were prepared for mimicking the nanofibril ECM structure respectively in cartilage and skeletal muscle. Then, they were packed by the 3D printing process. Microscopic pore morphology and macroscopic framework could be finely tuned by 3D printing process. By culturing chondrocyte and C2C12 myoblasts on the developed scaffolds, the each scaffold showed its feasibility for the application to tissue engineering. The hybrid scaffolds containing 3D microscale framework and nanofiber mats entailed both features of mechanical support and nanofibrous topographical guide, and thus could potentially meet the requirements for practical use of tissue engineering scaffolds.
机译:组织工程学中的主要挑战之一是模拟人体中天然胶原纤维的纳米结构,以及制造要再生的三维外形。在这里,我们通过结合3D打印和静电纺丝工艺以及使用生物相容性聚合物,介绍了一种新型的仿生支架三维(3D)制造方法。人们认为电纺纳米纤维构造物是模拟天然细胞外基质(ECM)结构的有前途的候选者。制备随机和对齐的纳米纤维垫,以分别模拟软骨和骨骼肌中的纳米原纤维ECM结构。然后,它们通过3D打印过程进行包装。微观孔的形态和宏观框架可以通过3D打印过程进行微调。通过在发达的支架上培养软骨细胞和C2C12成肌细胞,每个支架都显示出其在组织工程中应用的可行性。包含3D微型框架和纳米纤维垫的混合支架同时具有机械支撑和纳米纤维形貌导向的功能,因此有可能满足组织工程支架实际使用的要求。

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