光热治疗
材料科学
涂层
单线态氧
骨整合
表面改性
纳米技术
植入
化学工程
化学
氧气
有机化学
医学
工程类
外科
作者
Yi Deng,Jiacheng Shi,Yau Kei Chan,Ding Bai,Rui Shu,Xiuyuan Shi,Yunfei Li,Limei Li,Xiao Yang,Weizhong Yang
标识
DOI:10.1002/adhm.202200641
摘要
Abstract Clinically, bacteria‐induced contagion and insufficient osseointegrative property inevitably elicit the failure of orthopedic implants. Herein, a heterostructured coating consisting of simvastatin (SIM)‐laden metal–organic frameworks and polydopamine nanolayers is created on a porous bioinert polyetheretherketone implant. The heterostructured coating significantly promotes cytocompatibility and osteogenic differentiation through multimodal osteogenicity mechanisms of zinc ion (Zn 2+ ) therapy, SIM drug therapy, and surface micro‐/nano‐topological stimulation. Under the illumination of near‐infrared (NIR) light, singlet oxygen ( 1 O 2 ) and local hyperthermia are produced; besides, NIR light dramatically accelerates the release of Zn 2+ ions from heterostructured coatings. Gram‐positive and ‐negative bacteria are effectively eradicated by the synergy of photothermal/photodynamic effects and photo‐induced accelerated delivery of Zn 2+ ions. The superior osteogenicity and osseointegration, as well as photoswitchable disinfection controlled by NIR light are corroborated via in vivo results. This work highlights the great potential of photoresponsive heterostructured orthopedic implants in treatment of the noninvasive bone reconstruction of bacteria‐associated infectious tissues through multimodal phototherapy and photoswitchable ion‐therapy.
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