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Updated: May 2, 2026

Graphene Coatings for Biomedical Implants
Published on: March 1, 2013
Graphene Oxide/Ferroferric Oxide Composite Coating with Synergistic Augmented Chemodynamic Therapy for the
Jinglin Zhang1,2, Lizhen Chen1, Langhuan Huang1
1Guangdong Engineering & Technology Research Centre of Graphene-Like Materials and Products, Department of Chemistry, College of Chemistry and Materials Science, Jinan University, Guangzhou 510632, P. R. China.
Abstract:
Titanium (Ti) stands as a widely used orthopedic implant material, but implant-associated infection remains a formidable and critical contributor to implant failure in clinical practice. To address this intractable challenge, we reported a composite coating comprised of graphene oxide (GO) and ferroferric oxide (Fe3O4) on the Ti matrix surface (denoted as Ti/GO/Fe3O4), which showed synergistically augmented chemodynamic therapy against implant-associated infection. Specifically, the surface hydrophilic and negatively charged coating could physically deter initial bacterial adherence. Moreover, the GO sheet, with sharp-edged architecture, mediated the mechanical nanoknife effect, leading to the physical cleavage of the bacterial membrane. With the help of multienzyme-mimetic activity, GO/Fe3O4 acquired a moderate ROS burst and sustained a relatively high ROS level by glutathione consumption, causing chemical, ferroptosis-like bacterial death. Both in vitro and in vivo assays confirmed that the biocompatible and multifunctional coating was effective in preventing implant-associated infection, which could speed up the implant-tissue integration process. Such work would offer a technical route to design a nonantibiotic, biosafe, and multimodal infection-resistant implant device, which implies considerable potential in clinical application.
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