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3D Printing of Micro- and Nanoscale Bone Substitutes: A Review on Technical and Translational Perspectives

机译:微型和纳米级骨替代的3D印刷:技术和翻译观点综述

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摘要

Recent developments in three-dimensional (3D) printing technology offer immense potential in fabricating scaffolds and implants for various biomedical applications, especially for bone repair and regeneration. As the availability of autologous bone sources and commercial products is limited and surgical methods do not help in complete regeneration, it is necessary to develop alternative approaches for repairing large segmental bone defects. The 3D printing technology can effectively integrate different types of living cells within a 3D construct made up of conventional micro- or nanoscale biomaterials to create an artificial bone graft capable of regenerating the damaged tissues. This article reviews the developments and applications of 3D printing in bone tissue engineering and highlights the numerous conventional biomaterials and nanomaterials that have been used in the production of 3D-printed scaffolds. A comprehensive overview of the 3D printing methods such as stereolithography (SLA), selective laser sintering (SLS), fused deposition modeling (FDM), and ink-jet 3D printing, and their technical and clinical applications in bone repair and regeneration has been provided. The review is expected to be useful for readers to gain an insight into the state-of-the-art of 3D printing of bone substitutes and their translational perspectives.
机译:最近三维(3D)印刷技术的发展为各种生物医学应用制造支架和植入物提供了巨大的潜力,特别是对于骨修复和再生。由于自体骨头源和商业产品的可用性有限,手术方法没有帮助完全再生,因此有必要开发修复大型细分骨缺损的替代方法。 3D打印技术可以有效地将不同类型的活细胞整合在由常规微型或纳米级生物材料组成的3D构建体内以产生能够再生受损组织的人造骨移植物。本文综述了3D印刷在骨组织工程中的开发和应用,并突出了在3D印刷支架生产中使用的许多常规生物材料和纳米材料。提供了全面的3D打印方法,如立体光刻(SLA),选择性激光烧结(SLS),融合沉积建模(FDM)和喷墨3D打印,以及它们的骨修复和再生中的技术和临床应用。预计读者将有助于读者深入了解骨替代品的3D印刷的最新版本及其翻译观点。

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