牙周炎
体内
纳米医学
清创术(牙科)
靶向给药
姜黄素
医学
粘液
靶向治疗
生物医学工程
纳米技术
牙槽
磁性纳米粒子
材料科学
炎症
纳米生物技术
组织重塑
巨噬细胞
纳米毒理学
作者
Dongqing He,Zhaolei Zou,Dongdong Jin,Zichang Guo,Yinuo Song,Hu Qiannan,Muqiao Yu,Jingyi Lu,Juan Fang,Qianqian Wang,Chengqi Xu,Wenjun Chen,Zhi Wang,Xing Ma
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2026-08-05
卷期号:12 (32): eaeb6882-eaeb6882
标识
DOI:10.1126/sciadv.aeb6882
摘要
Periodontitis necessitates targeted therapy due to its high prevalence, progressive tissue destruction, and systemic disease links. Conventional mechanical debridement and pharmacological treatments are limited by complex periodontal barriers, including viscous crevicular fluid and resilient biofilms, which impede bacterial eradication and drug delivery. Here, we engineered magnetically actuated microrobots with gold nanothorns for disrupting biofilms and penetrating mucus barriers. Fabricated by encapsulating curcumin in antibacterial ionogel microspheres with asymmetric magnetic deposition and nanothorn functionalization, these microrobots enabled precise magnetic navigation in viscous media, while penetrating a biomimetic mucus analog, enhancing periodontal retention, and mechanically dislodging biofilms. Furthermore, ethanol-responsive release of curcumin enhanced its bioavailability, thereby scavenging free radicals and modulating macrophage phenotypes to alleviate inflammation. Guided by a toothbrushing-inspired handheld magnetic controller, microrobots evaluated using in vivo murine models demonstrated reduced inflammation, inhibited bone resorption, improved tissue health, and oral microbiota remodeling toward ecological balance, showing promise for targeted periodontitis therapy.
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