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Fabrication and characterization of electrospinning/3D printing bone tissue engineering scaffold

机译:静电纺丝/ 3D印刷骨组织工程支架的制造与表征

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摘要

Electrospinning and three-dimensional (3D) printing is widely used to fabricate bone tissue engineering scaffolds. However, cells are difficult to infiltrate into the nanoporous structure of traditional electrospun scaffolds by electrospinning, and also 3D printing techniques have the disadvantage of low print resolution. In order to solve these problems, we fabricated a 3D composite scaffold by infusing PCL/gelatin dispersed nanofibers into the meshes of PCL printing scaffold. The morphology of the composite scaffold was evaluated by a scanning electron microscope (SEM), which shows the micro-scale (100300 mm) porous structure. The porosity of the composite scaffold is as high as 79.32 +/- 8.32%. Mechanical testing results indicated that the compressive modulus of the 3D composite scaffold (30.50 +/- 0.82 MPa) is significantly higher than that of the lyophilized electrospun scaffold (18.55 +/- 0.56 MPa), which is attributed to the 3D printing scaffold. An in vitro study indicated that the 3D composite scaffolds have good biocompatibility. Through CCK-8 assay and fluoresce staining characterization, MC3T3-E1 cells exhibit a better proliferation and infiltration on the composite scaffold than on the PCL printing scaffold, which is due to the microporous structure of the electrospun scaffold. Altogether, these results confirm the good potential of an electrospun/3D printing composite scaffold applied to bone tissue repair.
机译:静电纺丝和三维(3D)印刷广泛用于制造骨组织工程支架。然而,通过静电纺丝难以渗入传统电纺支架的纳米多孔结构中的细胞,并且3D印刷技术也具有低印刷分辨率的缺点。为了解决这些问题,我们通过将PCl /明胶分散的纳米纤维输注到PCL印刷支架的网眼中,用PCl /明胶分散的纳米纤维制成3D复合支架。通过扫描电子显微镜(SEM)评估复合支架的形态,其显示微级(100300mm)多孔结构。复合支架的孔隙率高达79.32 +/- 8.32%。机械测试结果表明,3D复合支架(30.50 +/- 0.82MPa)的压缩模量显着高于冻干的电纺支架(18.55 +/- 0.56MPa),其归因于3D打印支架。体外研究表明,3D复合支架具有良好的生物相容性。通过CCK-8测定和荧光染色表征,MC3T3-E1细胞在复合支架上表现出比PCL印刷支架上的更好的增殖和渗透,这是由于电纺支架的微孔结构。完全,这些结果证实了施加到骨组织修复的电纺/ 3D印刷复合支架的良好潜力。

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  • 来源
    《RSC Advances》 |2016年第112期|共9页
  • 作者单位

    Shanghai Jiao Tong Univ Shanghai Gen Hosp Dept Orthopaed Surg Sch Med Shanghai 200080 Peoples R China;

    Shanghai Jiao Tong Univ Ruijin Hosp Dept Cardiovasc Med Luwan Branch Shanghai 200080 Peoples R China;

    Shanghai Jiao Tong Univ Shanghai Gen Hosp Dept Orthopaed Surg Sch Med Shanghai 200080 Peoples R China;

    Shanghai Jiao Tong Univ Shanghai Gen Hosp Dept Orthopaed Surg Sch Med Shanghai 200080 Peoples R China;

    Shanghai Jiao Tong Univ Shanghai Gen Hosp Dept Orthopaed Surg Sch Med Shanghai 200080 Peoples R China;

    Shanghai Jiao Tong Univ Shanghai Gen Hosp Dept Orthopaed Surg Sch Med Shanghai 200080 Peoples R China;

    Shanghai Jiao Tong Univ Shanghai Gen Hosp Dept Orthopaed Surg Sch Med Shanghai 200080 Peoples R China;

    Shanghai Jiao Tong Univ Shanghai Gen Hosp Dept Orthopaed Surg Sch Med Shanghai 200080 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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