Antibacterial and Bone Ingrowth Properties of Iodine Ion-Releasing Titanium Implant With Gradient Pores: An in Vivo Study.

Honda, Shintaro; Fujibayashi, Shunsuke; Okuzu, Yaichiro; Yamaguchi, Seiji; Shintani, Seine A; Matsushita, Tomiharu; Takadama, Hiroaki; Orita, Kazuki et al. · J Biomed Mater Res B Appl Biomater · 2026

basic_science · Level V

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Abstract

Titanium implants are widely used in orthopedics and spinal surgery, but implant-associated infections remain a major clinical challenge that often necessitates implant removal. To address this issue, we evaluated whether an iodine-loaded porous titanium implant with a gradient pore design could balance antibacterial activity and bone formation. The structure transitions from large outer pores to smaller inner pores, enhancing osseointegration while providing a greater surface area for iodine ion loading. Implants were fabricated by selective laser melting and surface-modified to incorporate iodine ions. In vivo experiments using rabbit femoral condyles demonstrated that gradient implants (Ti-D) showed bone ingrowth comparable to larger pore implants at 4 weeks. Iodine-treated implants (ITi-D) exhibited sustained ion release, strong antibacterial activity against Staphylococcus aureus and Escherichia coli, and no clear cytotoxicity in vitro. In vivo subcutaneous infection models confirmed significant antibacterial efficacy of ITi-D, while blood tests showed no systemic toxicity up to 90 days. Compared with uniformly porous implants, ITi-D achieved an optimal balance between antimicrobial performance and biocompatibility. This dual-functional approach addresses the longstanding tradeoff between infection control and osseointegration in porous titanium implants.

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