论文标题
羟基磷灰石增强复合材料的添加剂制造方法
Additive Manufacturing Approaches for Hydroxyapatite-Reinforced Composites
论文作者
论文摘要
增材制造(AM)技术由于其多功能性和具有复杂宏观几何形状和定义模式的构造的独特可能性而引起了组织工程领域的兴趣。最近,已经提出了复合材料 - 被鉴定为连续相(矩阵)和加固(填充剂)的异质生物材料 - 被提议为AM可以处理的墨水,以获得具有改善仿生和生物活性特性的脚手架。由于与天然矿化组织的矿物质成分相对于HA的化学相似性,因此已致力于羟基磷灰石(HA)增强复合材料,尤其是针对骨组织工程的复合材料。在这里,我们回顾了AM技术在处理HA增强复合材料和生物复合材料中的应用,以生产具有生物基质(包括细胞组织)的脚手架。讨论了材料的形态,结构和体外和体内生物学特性方面的主要结果。我们根据用于嵌入HA增强物并产生组织替代品的矩阵的性质对方法进行了分类,并报告了有关所提出的最新状态以及未来观点的批判性讨论,以全面了解这一新兴领域的策略以及挑战。
Additive manufacturing (AM) techniques have gained interest in the tissue engineering field thanks to their versatility and unique possibilities of producing constructs with complex macroscopic geometries and defined patterns. Recently, composite materials - namely heterogeneous biomaterials identified as continuous phase (matrix) and reinforcement (filler) - have been proposed as inks that can be processed by AM to obtain scaffolds with improved biomimetic and bioactive properties. Significant efforts have been dedicated to hydroxyapatite (HA)-reinforced composites, especially targeting bone tissue engineering, thanks to the chemical similarities of HA with respect to mineral components of native mineralized tissues. Here we review applications of AM techniques to process HA-reinforced composites and biocomposites for the production of scaffolds with biological matrices, including cellular tissues. The primary outcomes of recent investigations in terms of morphological, structural, and in vitro and in vivo biological properties of the materials are discussed. We classify the approaches based on the nature of the matrices employed to embed the HA reinforcements and produce the tissue substitutes and report a critical discussion on the presented state of the art as well as the future perspectives, to offer a comprehensive picture of the strategies investigated as well as challenges in this emerging field.