材料科学
脚手架
炎症
基质金属蛋白酶
骨愈合
生物医学工程
基质(化学分析)
免疫系统
再生(生物学)
再生医学
肽
纳米技术
生物物理学
细胞生物学
谷胱甘肽
伤口愈合
控制释放
自愈水凝胶
表面改性
抗菌肽
化学
组织修复
细胞外基质
作者
Yu Wang,R G Chen,Yuehua Chen,Haowen Lu,Yuchen Qian,Gao Z,Zheming Shen,Xiaofei Zheng,Huilin Yang,Jun Zou,Yusen Qiao
摘要
Diabetic bone repair is impaired by a microenvironment characterized by heightened susceptibility to infection and persistent inflammation. This study presents a dissolvable, dual-responsive (to glutathione and gelatinase) microneedle patch (CGF/PP@MN) for spatiotemporally controlled therapy. The system features a GelMA hydrogel matrix encapsulating Concentrated Growth Factors (CGF) within its core, while its surface is functionalized with a glutathione-reactive anti-inflammatory peptide (pro-AIP) and a gelatinase-cleavable antimicrobial peptide (pro-AMP). This spatial design enables a sequential, pathology-triggered release cascade: upon insertion, pro-AMPs are first cleaved in the presence of bacterial gelatinase to eradicate biofilms; subsequently, the elevated glutathione concentration activates pro-AIPs to mitigate inflammation and promote M2 macrophage polarization, thereby remodeling the hostile immune niche. Finally, the sustained release of CGF from the hydrogel core drives vascularization and osteogenesis. This platform demonstrates precise temporal alignment with endogenous healing, excellent biocompatibility, and robust bioactivity in vitro. In a diabetic bone defect model, it significantly enhanced wound healing, attenuated inflammation, promoted robust bone regeneration, and improved overall repair outcomes. This work provides a novel combinatorial strategy for immunomodulation and regenerative repair of diabetic bone defects.
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