Yang Qian, Wu Tianli, Wu Xianghao, Ren Mingxing, Liu Fengyi, Yang Sheng
College of Stomatology, Chongqing Medical University, 426 Songshibei Road, Yubei District, Chongqing 401147, China.
Chongqing Key Laboratory of Oral Diseases, Chongqing 401147, China.
ACS Biomater Sci Eng. 2025 Apr 14;11(4):2353-2366. doi: 10.1021/acsbiomaterials.5c00172. Epub 2025 Mar 12.
Infected bone defects show a significant reduction in neovascularization during the healing process, primarily due to persistent bacterial infection and immune microenvironmental disorders. Existing treatments are difficult to simultaneously meet the requirements of antibacterial and anti-inflammatory treatments for infected bone defects, which is a key clinical therapeutic challenge that needs to be addressed. In this study, a conductive hydrogel based on copper nanoparticles was developed for controlling bacterial infection and remodeling the immune microenvironment. The hydrogel not only effectively eliminates bacteria that exist in the infected bone defect region but also transmits electrical signals to restore the disordered immune microenvironment. In vitro studies have shown that the hydrogel has excellent biocompatibility and can modulate macrophage polarization by transmitting electrical signals to reduce inflammation and promote neovascularization. In vivo studies further confirmed that the hydrogel scaffold not only rapidly cleared clinical bacterial infections but also significantly induced the formation of vascularized new bone tissue within 4 weeks. This work provides a simple and innovative strategy to fabricate copper-containing conductive hydrogels that show great potential for application in the field of therapeutics for infected bone regeneration.
感染性骨缺损在愈合过程中新生血管形成显著减少,主要是由于持续性细菌感染和免疫微环境紊乱。现有治疗方法难以同时满足感染性骨缺损抗菌和抗炎治疗的要求,这是一个需要解决的关键临床治疗挑战。在本研究中,开发了一种基于铜纳米颗粒的导电水凝胶,用于控制细菌感染和重塑免疫微环境。该水凝胶不仅能有效消除感染性骨缺损区域存在的细菌,还能传递电信号以恢复紊乱的免疫微环境。体外研究表明,该水凝胶具有优异的生物相容性,可通过传递电信号调节巨噬细胞极化,以减轻炎症并促进新生血管形成。体内研究进一步证实,该水凝胶支架不仅能迅速清除临床细菌感染,还能在4周内显著诱导血管化新骨组织的形成。这项工作提供了一种简单且创新的策略来制备含铜导电水凝胶,其在感染性骨再生治疗领域显示出巨大的应用潜力。