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Fabrication and In Vitro Evaluation of 3D Printed Porous Polyetherimide Scaffolds for Bone Tissue Engineering

机译:3D印刷多孔聚醚酰亚胺支架对骨组织工程的制造和体外评价

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摘要

For bone tissue engineering, the porous scaffold should provide a biocompatible environment for cell adhesion, proliferation, and differentiation and match the mechanical properties of native bone tissue. In this work, we fabricated porous polyetherimide (PEI) scaffolds using a three-dimensional (3D) printing system, and the pore size was set as 800 μm. The morphology of 3D PEI scaffolds was characterized by the scanning electron microscope. To investigate the mechanical properties of the 3D PEI scaffold, the compressive mechanical test was performed via an electronic universal testing system. For the in vitro cell experiment, bone marrow stromal cells (BMSCs) were cultured on the surface of the 3D PEI scaffold and PEI slice, and cytotoxicity, cell adhesion, and cell proliferation were detected to verify their biocompatibility. Besides, the alkaline phosphatase staining and Alizarin Red staining were performed on the BMSCs of different samples to evaluate the osteogenic differentiation. Through these studies, we found that the 3D PEI scaffold showed an interconnected porous structure, which was consistent with the design. The elastic modulus of the 3D PEI scaffold (941.33 ± 65.26 MPa) falls in the range of modulus for the native cancellous bone. Moreover, the cell proliferation and morphology on the 3D PEI scaffold were better than those on the PEI slice, which revealed that the porous scaffold has good biocompatibility and that no toxic substances were produced during the progress of high-temperature 3D printing. The osteogenic differentiation level of the 3D PEI scaffold and PEI slice was equal and ordinary. All of these results suggest the 3D printed PEI scaffold would be a potential strategy for bone tissue engineering.
机译:对于骨组织工程,多孔支架应提供用于细胞粘附,增殖和分化的生物相容性环境,并匹配天然骨组织的机械性能。在这项工作中,我们使用三维(3D)印刷系统制造多孔聚醚酰亚胺(PEI)支架,孔径设定为800μm。扫描电子显微镜的特征在于3D PEI支架的形态。为了研究3D PEI支架的机械性能,通过电子通用测试系统进行压缩机械测试。对于体外细胞实验,在3D PEI支架和PEI切片的表面上培养骨髓基质细胞(BMSC),并检测细胞毒性,细胞粘附和细胞增殖以验证它们的生物相容性。此外,对不同样品的BMSC进行碱性磷酸酶染色和茜素红染色,以评估骨质发生分化。通过这些研究,我们发现3D PEI支架显示出互连的多孔结构,这与设计一致。 3D PEI支架(941.33±65.26MPa)的弹性模量落入原生质子骨的模量范围内。此外,3D PEI支架上的细胞增殖和形态比PEI切片的细胞增殖和形态更好,这揭示了多孔支架具有良好的生物相容性,并且在高温3D印刷过程中没有产生有毒物质。 3D PEI支架和PEI切片的成骨分化水平相等且普通。所有这些结果表明3D印刷PEI脚手架将是骨组织工程的潜在策略。

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