Wu Minhao, Zhang Yufeng, Zhao Yanfang, Chu Liuxi, Meng Xiaolei, Ye Luyang, Li Xiaokun, Wang Zhouguang, Wu Ping
National Key laboratory of macromolecular drug development and manufacturing, School of Pharmaceutical Science, Wenzhou Medical University, Wenzhou, 325035, China.
Department of Spine Surgery and Musculoskeletal Tumor, Zhongnan Hospital of Wuhan University, 168 Donghu Street, Wuchang District, Wuhan, 430071, China.
Small. 2024 Dec;20(51):e2403003. doi: 10.1002/smll.202403003. Epub 2024 Oct 8.
The repair and reconstruction of large-scale bone defects face enormous challenges because of the failure to reconstruct the osteo-vascularization network. Herein, a near-infrared (NIR) light-responsive hydrogel system is reported to achieve programmed tissue repair and regeneration through the synergetic effects of on-demand drug delivery and mild heat stimulation. The spatiotemporal hydrogel system (HG/MPa) composed of polydopamine-coated TiCT MXene (MP) nanosheets decorated with acidic fibroblast growth factor (aFGF, a potent angiogenic drug) and hydroxypropyl chitosan/gelatin (HG) hydrogel is developed to orchestrate the reconstruction of the osteo-vascularization network and boost bone regeneration. Upon exposure to NIR light irradiation, the engineered HG/MPa hydrogel can achieve the initial complete release of aFGF to induce rapid angiogenesis and provide sufficient blood supply, maximizing its biofunction in the defect area. This integrated hydrogel system demonstrated good therapeutic efficacy in promoting cell adhesion, proliferation, migration, angiogenesis, and osteogenic differentiation through periodic NIR irradiation. In vivo, animal experiments further revealed that the spatiotemporalized hydrogel platform synergized with mild photothermal treatment significantly accelerated critical-sized bone defect healing by increasing the osteo-vascularization network density, recruiting endogenous stem cells, and facilitating the production of osteogenesis/angiogenesis-related factors. Overall, smart-responsive hydrogel could enhance the reconstruction of the osteo-vascularization network in bone regeneration.
由于无法重建骨血管化网络,大规模骨缺损的修复和重建面临着巨大挑战。在此,报道了一种近红外(NIR)光响应水凝胶系统,通过按需药物递送和温和热刺激的协同作用实现程序性组织修复和再生。开发了由涂有聚多巴胺的TiCT MXene(MP)纳米片(用酸性成纤维细胞生长因子(aFGF,一种有效的血管生成药物)修饰)和羟丙基壳聚糖/明胶(HG)水凝胶组成的时空水凝胶系统(HG/MPa),以协调骨血管化网络的重建并促进骨再生。在近红外光照射下,工程化的HG/MPa水凝胶可以实现aFGF的初始完全释放,以诱导快速血管生成并提供充足的血液供应,从而在缺损区域最大化其生物功能。通过周期性近红外照射,这种集成水凝胶系统在促进细胞粘附、增殖、迁移、血管生成和成骨分化方面表现出良好的治疗效果。在体内,动物实验进一步表明,时空水凝胶平台与温和的光热治疗协同作用,通过增加骨血管化网络密度、招募内源性干细胞和促进成骨/血管生成相关因子的产生,显著加速了临界尺寸骨缺损的愈合。总体而言,智能响应水凝胶可以增强骨再生中骨血管化网络的重建。