骨组织工程中的3d打印高分子生物材料。

Tianyi Xia, Xianglong Zhou, Haoran Zhou, Jiheng Xiao, Jianhui Xiang, Hanhong Fang, Liming Xiong, Fan Ding
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引用次数: 0

摘要

聚合物是由称为单体的重复亚基组成的大分子,可以从自然来源和合成过程中分离出来。聚合物由于其特殊的物理化学性质和功能特性,在生物医学领域,特别是在组织工程领域受到了极大的关注。3D打印技术是一种在数字模型基础上依次添加材料制造三维物体的技术,因其与骨组织工程中的聚合物相结合而得到广泛认可。本文综述了3d打印高分子生物材料在骨组织工程中的应用。它首先讨论了骨再生的基本过程,然后是聚合物和3D打印技术的组件选择。此外,本文还全面介绍了3d打印高分子生物材料的功能特性设计。最后,讨论了3d打印高分子生物材料在骨组织工程中的应用现状、挑战及未来发展方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
3D-printed polymeric biomaterials in bone tissue engineering.

Polymers are large molecules composed of repeating subunits called monomers, which can be de-rived from both natural sources and synthetic processes. Due to their exceptional physicochemical properties and functional characteristics, polymers have garnered significant attention in the bio-medical field, particularly in tissue engineering. 3D printing technology, a process that manufactures three-dimensional objects by sequentially adding material based on digital models, has been widely recognized for its integration with polymers in bone tissue engineering (BTE). This review provides an overview of 3D-printed polymeric biomaterials in BTE. It begins with a discussion of the fundamental process of bone regeneration, followed by a component's selection for polymers and 3D printing technologies. Additionally, this review comprehensively addresses the functional properties design of 3D-printed polymeric biomaterials. Finally, the current status, challenges, and future directions for the application of 3D-printed polymeric biomaterials in BTE are discussed.

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