Cai Bianyun, Huang Leizhen, Zhou Xueke, Zhou Xuan, Lei Kun, Han Meng, Zhang Zilin, Li Xiaofang, Li Guangda
College of Medical Technology and Engineering, Henan University of Science and Technology, 263 Kaiyuan Avenue, Luoyang, 471023, China.
Department of Orthopedic Surgery and Orthopedic Research Institute, West China Hospital, Sichuan University, Chengdu, 610041, Sichuan, China.
Biometals. 2024 Feb;37(1):131-142. doi: 10.1007/s10534-023-00533-6. Epub 2023 Sep 8.
The repair and reconstruction of large bone defects after bone tumor resection is still a great clinical challenge. At present, orthopedic implant reconstruction is the mainstream treatment for repairing bone defects. However, according to clinical feedback, local tumor recurrence and nonunion of bone graft are common reasons leading to the failure of bone defect repair and reconstruction after bone tumor resection, which seriously threaten the physical and mental health of patients. On this basis, here the self-developed low modulus Ti-12Mo-10Zr alloy (TMZ) was chosen as substrate material. To improve its biological activity and osteointegration, calcium, oxygen, and phosphorus co-doped microporous coating was prepared on TMZ alloy by microarc oxidation (MAO). Then, black phosphorus (BP) nanosheets were incorporated onto MAO treated TMZ alloy to obtain multifunctional composites. The obtained BP-MAO-TMZ implant exhibited excellent photothermal effects and effective ablation of osteosarcoma cancer cells under the irradiation of 808 nm near infrared laser, while no photothermal or therapeutic effects were observed for TMZ alloy. Meanwhile, the structure/component bionic coating obtained after MAO treatment as well as the P-driven in situ biomineralization performance after incorporation of BP nanosheets endowed BP-MAO-TMZ implant with synergistic promoting effect on MC3T3-E1 osteoblasts' activity, proliferation and differentiation ability. This study is expected to provide effective clinical solutions for problems of difficult bone regeneration and tumor recurrence after tumor resection in patients with bone tumors and to solve a series of medical problems such as poor prognosis and poor postoperative quality of patients life with malignant bone tumors.
骨肿瘤切除术后大骨缺损的修复与重建仍是一项重大的临床挑战。目前,骨科植入物重建是修复骨缺损的主流治疗方法。然而,根据临床反馈,局部肿瘤复发和骨移植不愈合是导致骨肿瘤切除术后骨缺损修复与重建失败的常见原因,严重威胁患者的身心健康。在此基础上,本研究选用自主研发的低模量Ti-12Mo-10Zr合金(TMZ)作为基底材料。为提高其生物活性和骨整合能力,通过微弧氧化(MAO)在TMZ合金表面制备了钙、氧、磷共掺杂的微孔涂层。然后,将黑磷(BP)纳米片引入经MAO处理的TMZ合金中,制备出多功能复合材料。所制备的BP-MAO-TMZ植入物在808 nm近红外激光照射下表现出优异的光热效应,对骨肉瘤癌细胞具有有效的消融作用,而TMZ合金则未观察到光热或治疗效果。同时,MAO处理后获得的结构/成分仿生涂层以及BP纳米片掺入后的P驱动原位生物矿化性能赋予了BP-MAO-TMZ植入物对MC3T3-E1成骨细胞活性、增殖和分化能力的协同促进作用。本研究有望为骨肿瘤患者肿瘤切除术后骨再生困难和肿瘤复发等问题提供有效的临床解决方案,并解决一系列如恶性骨肿瘤患者预后差、术后生活质量不佳等医学问题。