Photothermal-Immunomodulatory Nanohydrogel Eradicates Infection and Accelerates Bone Regeneration in Infected Defects.

Zhan, Tiantian; Fang, Zhurun; Xu, Jiayi; Zhu, Xiaolong; Yang, Qifei; Ma, Junqing; Zhang, Ming; Wu, Yufan · Adv Healthc Mater · 2026

basic_science · Level V

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Abstract

The management of infected bone defects remains difficult due to the dual challenges of stubborn infection and impaired regeneration. To overcome these issues, a multifunctional nanocomposite hydrogel (PNPs@RuO<sub>2</sub>@HAP@Gel) is created by combining photothermal/antioxidant-responsive polymer nanoparticles (PNPs@RuO<sub>2</sub>) with bioactive nano-hydroxyapatite (HAP). When exposed to a second near-infrared (NIR-II) laser, the hydrogel showed strong photothermal antibacterial effects by damaging bacterial membranes and disrupting metabolic functions. The ruthenium oxide (RuO<sub>2</sub>) component scavenged reactive oxygen species, helping to modulate the immune microenvironment, while the hydrogel matrix acted as a bioactive scaffold, encouraging osteoblast adhesion and growth. In a rat model with infected bone defects, the hydrogel proved to be highly antimicrobial, lowered pro-inflammatory cytokines, and supported osteogenic differentiation, aiding in the formation of new bone and blood vessels. This dual-function system combines targeted antibacterial action with support for regeneration, offering a promising treatment strategy for infected bone defects.

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