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首页> 外文期刊>Journal of Materials Research >Fabrication of thermoplastic polyurethane tissue engineering scaffold by combining microcellular injection molding and particle leaching
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Fabrication of thermoplastic polyurethane tissue engineering scaffold by combining microcellular injection molding and particle leaching

机译:结合微孔注射成型和颗粒浸出制备热塑性聚氨酯组织工程支架

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摘要

Microcellular injection molding, a process capable of mass-producing complex plastic parts, and particle leaching methods were combined to fabricate porous thermoplastic polyurethane tissue engineering scaffolds. Water soluble polyvinyl alcohol (PVOH) and sodium chloride (NaCl) were used as porogens to improve the porosity and interconnectivity as well as the hydrophilicity of the scaffolds. It was found in the study that the microcellular injection molding process was effective at producing high pore density and porosity. The addition of PVOH decreased the pore diameter and increased the pore density. Furthermore, scaffolds with NaCl and PVOH porogens showed more interconnected pores. The 3T3 fibroblast cell culture was used to confirm the biocompatibility of the scaffolds. Residual PVOH content after leaching increased the hydrophilicity of the scaffolds and further improved cell adhesion and proliferation. The resulting scaffolds offer an alternative scalable tissue scaffold fabrication method for soft tissue scaffold production.
机译:微孔注射成型,能够大量生产复杂塑料零件的工艺和颗粒浸出方法相结合,以制造多孔热塑性聚氨酯组织工程支架。水溶性聚乙烯醇(PVOH)和氯化钠(NaCl)被用作致孔剂,以改善支架的孔隙率和互连性以及亲水性。在研究中发现,微孔注射成型工艺可有效地产生高孔隙密度和孔隙率。 PVOH的加入减小了孔径并增加了孔密度。此外,具有NaCl和PVOH致孔剂的支架显示出更多的互连孔。 3T3成纤维细胞培养用于确认支架的生物相容性。浸出后残留的PVOH含量增加了支架的亲水性,并进一步改善了细胞的粘附和增殖。所得的支架为软组织支架的生产提供了另一种可扩展的组织支架制造方法。

著录项

  • 来源
    《Journal of Materials Research》 |2014年第8期|911-922|共12页
  • 作者单位

    School of Mechanical and Automotive Engineering, South China University of Technology, Guangzhou 510640, China and Department of Mechanical Engineering, University of Wisconsin-Madison, Madison, Wisconsin 53706;

    National Engineering Research Center of Novel Equipment for Polymer Processing, South China University of Technology, Guangzhou 510640, China and Department of Mechanical Engineering, University of Wisconsin-Madison, Madison, Wisconsin 53706;

    Department of Engineering Physics, University of Wisconsin-Madison, Madison, Wisconsin 53706;

    Department of Mechanical Engineering, University of Wisconsin-Madison, Madison, Wisconsin 53706;

    National Engineering Research Center of Novel Equipment for Polymer Processing, South China University of Technology, Guangzhou 510640, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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