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3D 打印骨支架优化面临的挑战。

Challenges on optimization of 3D-printed bone scaffolds.

机构信息

Nervous System Stem Cells Research Center, Semnan University of Medical Sciences, Semnan, Iran.

Department of Tissue Engineering and Applied Cell Sciences, School of Medicine, Semnan University of Medical Sciences, Semnan, Iran.

出版信息

Biomed Eng Online. 2020 Sep 3;19(1):69. doi: 10.1186/s12938-020-00810-2.

Abstract

Advances in biomaterials and the need for patient-specific bone scaffolds require modern manufacturing approaches in addition to a design strategy. Hybrid materials such as those with functionally graded properties are highly needed in tissue replacement and repair. However, their constituents, proportions, sizes, configurations and their connection to each other are a challenge to manufacturing. On the other hand, various bone defect sizes and sites require a cost-effective readily adaptive manufacturing technique to provide components (scaffolds) matching with the anatomical shape of the bone defect. Additive manufacturing or three-dimensional (3D) printing is capable of fabricating functional physical components with or without porosity by depositing the materials layer-by-layer using 3D computer models. Therefore, it facilitates the production of advanced bone scaffolds with the feasibility of making changes to the model. This review paper first discusses the development of a computer-aided-design (CAD) approach for the manufacture of bone scaffolds, from the anatomical data acquisition to the final model. It also provides information on the optimization of scaffold's internal architecture, advanced materials, and process parameters to achieve the best biomimetic performance. Furthermore, the review paper describes the advantages and limitations of 3D printing technologies applied to the production of bone tissue scaffolds.

摘要

生物材料的进步和对患者特异性骨支架的需求除了设计策略外,还需要现代制造方法。在组织替代和修复中,非常需要具有功能梯度性能的混合材料。然而,它们的组成、比例、大小、结构及其相互连接对制造来说是一个挑战。另一方面,各种骨缺损的大小和部位需要一种具有成本效益的、易于适应的制造技术,以提供与骨缺损解剖形状相匹配的组件(支架)。增材制造或三维(3D)打印能够通过使用 3D 计算机模型逐层沉积材料来制造具有或不具有多孔性的功能物理组件。因此,它有利于生产具有改变模型可行性的先进骨支架。本文首先讨论了从解剖数据采集到最终模型的骨支架制造的计算机辅助设计(CAD)方法的发展。它还提供了有关支架内部结构、先进材料和工艺参数优化的信息,以实现最佳的仿生性能。此外,本文还描述了 3D 打印技术在骨组织支架生产中的优点和局限性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3842/7469110/5fcd93358fe3/12938_2020_810_Fig1_HTML.jpg

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