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Dual-Targeted Biomimetic MoSe2 Nanozymes for Enhancing Peri-Implant Soft Tissue Integration
Minghao Zhou1, Miaomiao Tian1, Jingwei Yu1
1State Key Laboratory of Oral & Maxillofacial Reconstruction and Regeneration, National Clinical Research Center for Oral Diseases, Shaanxi Engineering Research Center for Dental Materials and Advanced Manufacture, Department of Oral Implants, School of Stomatology, The Fourth Military Medical University, Xi'an, Shaanxi, China.
Abstract:
Peri-implant diseases (PID) remain major threats to titanium implant longevity, largely due to insufficient soft tissue integration (STI), which weakens the biological seal and promotes a pathogenic-immunological amplification loop involving early Staphylococcus aureus colonization and oxidative stress-induced macrophage dysfunction. Here, we developed a dual-targeting biomimetic nanozyme platform by camouflaging molybdenum diselenide (MoSe2) nanoflowers with membranes derived from S. aureus-pre-stimulated macrophages (SPMM). This biomimetic design couples S. aureus-targeting of SPMM with the photothermal activity of MoSe2 to achieve targeted contact-enhanced bacterial eradication, while integrating macrophage-targeting of SPMM with reactive oxygen species (ROS)-scavenging activity of MoSe2 to alleviate oxidative stress in macrophages. By disrupting the pathogenic-immunological amplification loop, MoSe2@SPMM reshaped a pro-regenerative peri-implant immune microenvironment. In a rat implantation model, near-infrared (NIR)-triggered MoSe2@SPMM suppressed bacterial colonization, promoted macrophage reprogramming, and preserved endothelial and fibroblast functions, thereby enhancing angiogenesis, matrix remodeling, connective tissue attachment, and integrin-mediated tissue-implant adhesion. This biomimetic nanozyme strategy provides a rational framework for coordinating pathogen control and immune regulation to promote peri-implant STI.

