School of Materials Science and Engineering, Xi'an University of Technology, Xi'an 710048, PR China.
State Key Laboratory for Mechanical Behavior of Materials, Xi'an Jiaotong University, Xi'an 710049, PR China.
ACS Appl Mater Interfaces. 2024 Jul 31;16(30):39064-39078. doi: 10.1021/acsami.4c07114. Epub 2024 Jul 19.
The bacterial infection and poor osseointegration of Ti implants could significantly compromise their applications in bone repair and replacement. Based on the carrier separation ability of the heterojunction and the redox reaction of pseudocapacitive metal oxides, we report an electrically responsive TiO-SnO-RuO coating with a multilayered heterostructure on a Ti implant. Owing to the band gap structure of the TiO-SnO-RuO coating, electron carriers are easily enriched at the coating surface, enabling a response to the endogenous electrical stimulation of the bone. With the formation of SnO-RuO pseudocapacitance on the modified surface, the postcharging mode can significantly change the surface chemical state of the coating due to the redox reaction, enhancing the antibacterial ability and osteogenesis-related gene expression of the human bone marrow mesenchymal stem cells. Owing to the attraction for Ca, only the negatively postcharged SnO@RuO can promote apatite deposition. The in vivo experiment reveals that the S-SnO@RuO-NP could effectively kill the bacteria colonized on the surface and promote osseointegration with the synostosis bonding interface. Thus, negatively charging the electrically responsive coating of TiO-SnO-RuO is a good strategy to endow modified Ti implants with excellent antibacterial ability and osseointegration.
细菌感染和 Ti 植入物的骨整合不良会显著影响其在骨修复和置换中的应用。基于异质结的载体分离能力和赝电容金属氧化物的氧化还原反应,我们在 Ti 植入物上报告了一种具有多层异质结构的电响应 TiO-SnO-RuO 涂层。由于 TiO-SnO-RuO 涂层的能带结构,电子载体很容易在涂层表面富集,从而对骨骼的内源性电刺激产生响应。通过在改性表面上形成 SnO-RuO 赝电容,由于氧化还原反应,后充电模式可以显著改变涂层的表面化学状态,从而增强人骨髓间充质干细胞的抗菌能力和骨生成相关基因表达。由于对 Ca 的吸引力,只有带负电荷的 SnO@RuO 才能促进磷灰石的沉积。体内实验表明,S-SnO@RuO-NP 能够有效杀灭表面定植的细菌,并通过骨结合界面促进骨整合。因此,对电响应的 TiO-SnO-RuO 涂层进行负充电是赋予改性 Ti 植入物优异抗菌能力和骨整合能力的一种很好的策略。