细胞生物学
化学
丝素
氧化应激
再生(生物学)
间充质干细胞
自噬
牙周炎
干细胞
免疫系统
再生医学
炎症
伤口愈合
活性氧
组织重塑
平衡
组织工程
生物化学
氧化磷酸化
自愈水凝胶
缺氧(环境)
先天免疫系统
促炎细胞因子
作者
Chengxinyue Ye,Jin Liu,Jinhui Ran,Shoushan Hu,Lei Yang,Jialiang Zhao,Xinyi Fang,Z J Zhang,Xin Xiong,Xueman Zhou,Yating Yi,Xiaolong Zeng,Xiong Lu,Jun Wang,Chaoming Xie
标识
DOI:10.1038/s41467-026-70176-x
摘要
Senescent mesenchymal stem cells residing in an inflammatory, dysbiotic, and hypoxic microenvironment pose a barrier to periodontal regeneration. Here we introduce a hydrocaffeic acid (HCA)-mediated silk fibroin hydrogel incorporating Mn/HCA-modified calcium peroxide (Mn-hCaO₂) and HCA-modified zeolitic imidazolate framework-8 (hZIF8) to rejuvenate this environment. The strategy imbues the hydrogel with enhanced adhesion and adaptability in periodontal pockets. The Mn-HCA complex acts catalytically to reduce oxidative stress and correct hypoxia. Simultaneously, Zn²⁺ and HCA restore microbial balance and mitigate inflammation. This multifunctional hydrogel targets the senescent periodontal niche by normalizing microbiota homeostasis and promoting a regenerative immune profile. Concurrently, it directly alleviates telomere shortening, DNA damage and oxidative stress in stem cells, thereby rejuvenating cellular function. By specifically addressing hypoxia and zinc deficiency, this polyphenol-mediated synergistic strategy offers a pathway to rejuvenate the senescent periodontal microenvironment, thereby overcoming tissue regeneration barriers and offering a translatable pathway for treating periodontitis and other aging-associated inflammatory diseases.
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