Liu Xingran, Liu Yihao, Qiang Lei, Ren Ya, Lin Yixuan, Li Han, Chen Qiuhan, Gao Shuxin, Yang Xue, Zhang Changru, Fan Minjie, Zheng Pengfei, Li Shuai, Wang Jinwu
Shanghai Key Laboratory of Orthopedic Implant, Department of Orthopedic Surgery, Shanghai Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China.
Shanghai Jiao Tong University School of Medicine, Shanghai, China.
J Tissue Eng. 2023 May 15;14:20417314231170371. doi: 10.1177/20417314231170371. eCollection 2023 Jan-Dec.
Osteosarcoma is the most prevalent bone malignant tumor in children and teenagers. The bone defect, recurrence, and metastasis after surgery severely affect the life quality of patients. Clinically, bone grafts are implanted. Primary bioceramic scaffolds show a monomodal osteogenesis function. With the advances in three-dimensional printing technology and materials science, while maintaining the osteogenesis ability, scaffolds become more patient-specific and obtain additional anti-tumor ability with functional agents being loaded. Anti-tumor therapies include photothermal, magnetothermal, old and novel chemo-, gas, and photodynamic therapy. These strategies kill tumors through novel mechanisms to treat refractory osteosarcoma due to drug resistance, and some have shown the potential to reverse drug resistance and inhibit metastasis. Therefore, multifunctional three-dimensional printed bioceramic scaffolds hold excellent promise for osteosarcoma treatments. To better understand, we review the background of osteosarcoma, primary 3D-printed bioceramic scaffolds, and different therapies and have a prospect for the future.
骨肉瘤是儿童和青少年中最常见的骨恶性肿瘤。手术后的骨缺损、复发和转移严重影响患者的生活质量。临床上会植入骨移植材料。第一代生物陶瓷支架具有单一的成骨功能。随着三维打印技术和材料科学的进步,在保持成骨能力的同时,支架变得更加个性化,并通过负载功能剂获得了额外的抗肿瘤能力。抗肿瘤治疗包括光热、磁热、传统和新型化疗、气体和光动力疗法。这些策略通过新的机制杀死肿瘤,以治疗因耐药性导致的难治性骨肉瘤,一些策略已显示出逆转耐药性和抑制转移的潜力。因此,多功能三维打印生物陶瓷支架在骨肉瘤治疗方面具有广阔前景。为了更好地理解,我们回顾了骨肉瘤的背景、第一代三维打印生物陶瓷支架以及不同的治疗方法,并对未来进行了展望。