Osteoimmunometabolic modulation via hydrogen-self-supplying magnesium-reinforced collagen membrane for enhanced guided bone regeneration

生物材料 再生(生物学) 细胞生物学 重编程 材料科学 生物物理学 骨组织 组织工程 细胞内 间充质干细胞 骨愈合 生物医学工程 体内 成骨细胞 化学 糖酵解 结构完整性 生长因子 细胞外 壳聚糖 活性氧
作者
Yuqing Mu,Zhibin Du,Wendong Gao,Ze He,Lan Xiao,Yinghong Zhou,Imaan Ahmed,Huan Dai,Ming Liu,Jiaying Liu,Xin Wang,Sheng Yu,Yin Xiao
出处
期刊:Biomaterials [Elsevier BV]
卷期号:329: 123928-123928 被引量:3
标识
DOI:10.1016/j.biomaterials.2025.123928
摘要

Localized delivery of molecular hydrogen (H 2 ) in bone tissue engineering remains largely unexplored, despite its potent antioxidative and anti-inflammatory properties. In this study, we present a multifunctional collagen membrane reinforced with micro-magnesium wires coated with metal-phenolic networks (Col-MMW), designed for guided bone regeneration (GBR). The embedded magnesium wires provide mechanical reinforcement, enhancing the membrane’s structural integrity and space-maintaining capability during early healing. Concurrently, magnesium degradation enables sustained, site-specific release of H 2 and magnesium ions (Mg 2+ ), offering a synergistic strategy to modulate the osteoimmune environment. Col-MMW attenuates intracellular reactive oxygen species (ROS) and reprograms cellular metabolism from glycolysis toward oxidative phosphorylation, thereby activating the nuclear factor erythroid 2-related factor 2 (NRF-2)-mediated redox balance pathway and suppressing nuclear factor kappa B (NF-κB) pathway-driven inflammation. This osteoimmunometabolic reprogramming leads to a significant reduction in inflammatory responses. In vivo studies, including rat subcutaneous implantation and calvarial defect models, demonstrated that the immunoregulatory effects of Col-MMW significantly promoted osteogenesis. By integrating mechanical reinforcement with localized metabolic and immune modulation, Col-MMW redefines the design paradigm of GBR membranes. These findings highlight Col-MMW as a next-generation biomaterial that combines structural integrity with targeted osteoimmunomodulation, addressing the unmet need for intelligent biomaterials for bone repair. • Innovative GBR membrane with localized H 2 delivery for bone regeneration • Dual release of H 2 and Mg 2+ modulates inflammation and enhances osteogenesis • Mg wire reinforcement improves the GBR membrane’s mechanical stability • Col-MMW benefits bone regeneration via osteoimmunometabolic modulation • Multifunctional membrane advances biomaterial design for regenerative medicine
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