School and Hospital of Stomatology, China Medical University, Shenyang, China.
Liaoning Provincial Key Laboratory of Oral Diseases, China Medical University, Shenyang, China.
Biomater Sci. 2023 Oct 24;11(21):7034-7050. doi: 10.1039/d3bm01214j.
Bioceramics have attracted considerable attention in the field of bone repair because of their excellent osteogenic properties, degradability, and biocompatibility. To resolve issues regarding limited formability, recent studies have introduced 3D printing technology for the fabrication of bioceramic bone repair scaffolds. Nevertheless, the mechanisms by which bioceramics promote bone repair and clinical applications of 3D-printed bioceramic scaffolds remain elusive. This review provides an account of the fabrication methods of 3D-printed degradable bioceramic scaffolds. In addition, the types and characteristics of degradable bioceramics used in clinical and preclinical applications are summarized. We have also highlighted the osteogenic molecular mechanisms in biomaterials with the aim of providing a basis and support for future research on the clinical applications of degradable bioceramic scaffolds. Finally, new developments and potential applications of 3D-printed degradable bioceramic scaffolds are discussed with reference to experimental and theoretical studies.
生物陶瓷因其优异的成骨性能、可降解性和生物相容性,在骨修复领域引起了广泛关注。为了解决可成型性有限的问题,最近的研究引入了 3D 打印技术来制造生物陶瓷骨修复支架。然而,生物陶瓷促进骨修复的机制以及 3D 打印生物陶瓷支架的临床应用仍不清楚。本综述介绍了 3D 打印可降解生物陶瓷支架的制造方法。此外,还总结了临床和临床前应用中使用的可降解生物陶瓷的类型和特点。我们还强调了生物材料中的成骨分子机制,以期为可降解生物陶瓷支架的临床应用研究提供基础和支持。最后,参考实验和理论研究讨论了 3D 打印可降解生物陶瓷支架的新进展和潜在应用。