生物材料
生物膜
材料科学
抗菌肽
组织工程
粘附
生物医学工程
纳米地形
纳米技术
细胞生物学
抗菌剂
微生物学
细菌
生物
医学
复合材料
遗传学
作者
Haiyan Zhou,Shi Ye,Mingjian Xu,Lihui Hao,Junjian Chen,Zhou Fang,Kunzhong Guo,Yunhua Chen,Lin Wang
出处
期刊:Biomaterials
[Elsevier]
日期:2023-06-01
卷期号:: 122200-122200
标识
DOI:10.1016/j.biomaterials.2023.122200
摘要
Control over the implant surface functions is highly desirable to enhance tissue healing outcomes but has remained unexplored to adapt to the different service stages. In the present study, we develop a smart titanium surface by orchestrating thermoresponsive polymer and antimicrobial peptide to enable dynamic adaptation to the implantation stage, normal physiological stage and bacterial infection stage. The optimized surface inhibited bacterial adhesion and biofilm formation during surgical implantation, while promoted osteogenesis in the physiological stage. The further temperature increase driven by bacterial infection induced polymer chain collapse to expose antimicrobial peptides by rupturing bacterial membranes, as well as protect the adhered cells from the hostile environment of infection and abnormal temperature. The engineered surface could inhibit infection and promote tissue healing in rabbit subcutaneous and bone defect infection models. This strategy enables the possibility to create a versatile surface platform to balance bacteria/cell-biomaterial interactions at different service stages of implants that has not been achieved before.
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