Yu Honghao, Liu Haifeng, Shen Yuan, Ao Qiang
Departments of Spine Surgery, Shengjing Hospital of China Medical University, Shenyang, China.
Department of Tissue Engineering, China Medical University, Shenyang, China.
Front Bioeng Biotechnol. 2023 Feb 16;11:1096525. doi: 10.3389/fbioe.2023.1096525. eCollection 2023.
The repair and reconstruction of bone defects and the inhibition of local tumor recurrence are two common problems in bone surgery. The rapid development of biomedicine, clinical medicine, and material science has promoted the research and development of synthetic degradable polymer anti-tumor bone repair materials. Compared with natural polymer materials, synthetic polymer materials have machinable mechanical properties, highly controllable degradation properties, and uniform structure, which has attracted more attention from researchers. In addition, adopting new technologies is an effective strategy for developing new bone repair materials. The application of nanotechnology, 3D printing technology, and genetic engineering technology is beneficial to modify the performance of materials. Photothermal therapy, magnetothermal therapy, and anti-tumor drug delivery may provide new directions for the research and development of anti-tumor bone repair materials. This review focuses on recent advances in synthetic biodegradable polymer bone repair materials and their antitumor properties.
骨缺损的修复与重建以及局部肿瘤复发的抑制是骨外科中两个常见的问题。生物医学、临床医学和材料科学的快速发展推动了合成可降解聚合物抗肿瘤骨修复材料的研发。与天然聚合物材料相比,合成聚合物材料具有可加工的机械性能、高度可控的降解性能和均匀的结构,这吸引了研究人员更多的关注。此外,采用新技术是开发新型骨修复材料的有效策略。纳米技术、3D打印技术和基因工程技术的应用有利于改善材料的性能。光热疗法、磁热疗法和抗肿瘤药物递送可能为抗肿瘤骨修复材料的研发提供新的方向。本综述重点介绍了合成可生物降解聚合物骨修复材料及其抗肿瘤特性的最新进展。