纳米技术
材料科学
铋
兴奋剂
小檗碱
病菌
化学
微生物学
生物
光电子学
生物化学
冶金
作者
Xuan Li,Regina Huang,Pugeng Li,Fung Kit Tang,Jing He,Hanyu Sun,Xiaoyu Wang,Miao Wang,Xinmiao Lan,Xinna Wang,Sarah Sze Wah Wong,Lijian Jin,Ken Cham‐Fai Leung,Hai Ming Wong,Sheng Wang,Lanping Guo,Pei‐Hui Ding,Xiaolin Yu
出处
期刊:ACS Nano
[American Chemical Society]
日期:2025-05-02
卷期号:19 (18): 17554-17577
被引量:11
标识
DOI:10.1021/acsnano.5c00561
摘要
Periodontal disease, a global health burden linked to dysbiotic oral polymicrobial communities and disrupted immune-inflammatory responses, is critically mediated byPorphyromonas gingivalis(Pg)─the keystone pathogen that sabotages host immunity, triggers tissue inflammation and destruction, and disrupts microbiota balance. Effective therapies should combine antimicrobial action, immune modulation, virulence suppression, and microbiome restoration. Bismuth ions and berberine, which exhibit antimicrobial and epithelial barrier-protecting effects, show potential effectiveness in treating periodontal diseases but face practical limitations due to poor water solubility and bioavailability. To address this, we developed bismuth-doped carbon dots functionalized with structure-modified berberine (BiCD-Ber) as a multifunctional nanomedicine. BiCD-Ber eradicated Pg in various forms, restored Pg-perturbed immune responses in gingival fibroblasts, and preserved epithelial barrier integrity. The doped bismuth ions neutralized Pg virulence factors by blocking the catalytic sites of gingipains. To facilitate in vivo delivery, BiCD-Ber was encapsulated in a disulfide-modified hyaluronic acid hydrogel that degrades in response to Pg metabolites. This BiCD-Ber hydrogel system modulated subgingival microbiota, alleviated inflammation in gingiva, and thereby prevented alveolar bone loss. This approach to concurrently eliminating Pg, modulating inflammatory responses , suppressing virulence factors, and restoring microbiota showcases great potential in managing periodontitis effectively.
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