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Meta-biomaterials

机译:荟萃生物材料

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摘要

Meta-biomaterials are designer biomaterials with unusual and even unprecedented properties that primarily originate from their geometrical designs at different (usually smaller) length scales. This concept has been primarily used in the context of orthopedic biomaterials with the ultimate aim of improving the bone tissue regeneration performance of implants and decreasing the risk of implant-associated infections. In this paper, we review the ways though which geometrical design at the macro-, micro-, and nanoscales combined with advanced additive manufacturing techniques (3D printing) could be used to create the unusual properties of meta-biomaterials. Due to their intended applications in orthopedics, metallic and hard polymeric biomaterials have received the most attention in the literature. However, the reviewed concepts are, at least in principle, applicable to a wide range of biomaterials including ceramics and soft polymers. At the macroscale, we discuss the concepts of patient-specific implants, deployable meta-implants, and shape-morphing implants. At the microscale, we introduce the concept of multi-physics meta-biomaterials while also covering the applications of auxetic meta-biomaterials for improving the longevity of orthopedic implants. At the nanoscale, the different aspects of the geometrical design of surface nanopatterns that simultaneously stimulate the osteogenic differentiation of stem cells and kill bacteria are presented. The concept of origami-based meta-biomaterials and the applications of self-folding mechanisms in the fabrication of meta-biomaterials are addressed next. We conclude with a discussion on the available evidence regarding the superior performance of meta-biomaterials and suggest some possible avenues for future research.
机译:Meta-生物材料是设计者生物材料,具有不寻常的甚至前所未有的属性,主要来自他们的几何设计,以不同(通常是较小的)长度尺度。该概念主要用于骨科生物材料的背景下,具有改善植入物的骨组织再生性能并降低植入物相关感染的风险的终点。在本文中,我们回顾了与先进的添加剂制造技术(3D打印)结合的宏观,微观和纳米级的几何设计的方式,以产生荟萃生物材料的不寻常性质。由于其在骨科的预期应用,金属和硬质聚合物生物材料在文献中得到了最多的关注。然而,至少原则上,审查的概念适用于各种生物材料,包括陶瓷和软聚合物。在Macroscale,我们讨论了患者特异性植入物,可展开的荟萃植入物和形状变形植入物的概念。在Micross阶层,我们介绍了多物理元 - 生物材料的概念,同时还涵盖了辅助荟萃生物材料的应用来改善整形外科植入物的寿命。在纳米级,呈现了同时刺激干细胞的骨质发生分化和杀死细菌的表面纳米图的几何设计的不同方面。接下来,解决了基于折纸的荟萃生物材料的概念和自折叠机制的制造中的自折叠机制的概念。我们讨论了有关荟萃生物材料卓越性能的可用证据,并为未来的研究表明了一些可能的途径。

著录项

  • 来源
    《Biomaterials Science》 |2020年第1期|共21页
  • 作者

    Zadpoor Amir A.;

  • 作者单位

    Delft Univ Technol TU Delft Dept Biomech Engn Addit Mfg Lab Mekelweg 2 NL-2628 CD Delft Netherlands;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

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