Xu Xingchen, Wang Pei, Tong Fei, Liu Yifan, Hu Xinyang, Yang Jian, Guo Jun
School of Stomatology, Jiangxi Medical College, Nanchang University, Nanchang 330006, China.
Jiangxi Provincial Key Laboratory of Oral Diseases, Nanchang 330006, China.
Polymers (Basel). 2025 May 10;17(10):1305. doi: 10.3390/polym17101305.
Clinical root canal therapy which takes place through mechanical and chemical strategies is faced with challenges in eliminating bacteria owing to the intricate and curved nature of the root canal system. Moreover, the plaque biofilm within the root canal hinders drug penetration and limits treatment efficacy. Hence, efficient root canal therapy hinges on penetrating into the root canal and overcoming the barriers presented by the plaque biofilms. To penetrate and eradicate biofilms effectively at the root canal, we designed a novel magnetic nanoparticle (MN)-based nanoplatform which was synthesized by the self-polymerization of dopamine on the surface of FeO MNs, and then loaded minocycline through the electrostatic interaction. The therapeutic efficacy of minocycline-loaded magnetic nanoparticles (FDM MNs) under a magnetostatic field was observed by various antibacterial experiments. The synthesized FDM MNs exhibited favorable biocompatibility and robust anti-biofilm efficacy. The designed nanoparticles could effectively navigate biofilms to eradicate bacteria residing deep with the assistance of magnetic force. Furthermore, FDM MNs penetrated into dentin tubules under a magnetic field, effectively disrupting biofilms for deep sterilization. The significant results offered valuable experimental evidence to support the potential clinical utility of magnetic nanoparticles for managing pulpitis and periapical inflammation.
通过机械和化学策略进行的临床根管治疗,由于根管系统复杂且弯曲的性质,在消除细菌方面面临挑战。此外,根管内的菌斑生物膜阻碍药物渗透并限制治疗效果。因此,有效的根管治疗取决于穿透根管并克服菌斑生物膜带来的障碍。为了在根管中有效穿透和根除生物膜,我们设计了一种新型的基于磁性纳米颗粒(MN)的纳米平台,该平台通过多巴胺在FeO MNs表面的自聚合反应合成,然后通过静电相互作用负载米诺环素。通过各种抗菌实验观察了载米诺环素磁性纳米颗粒(FDM MNs)在静磁场下的治疗效果。合成的FDM MNs表现出良好的生物相容性和强大的抗生物膜功效。所设计的纳米颗粒能够在磁力的辅助下有效地穿透生物膜,根除深处的细菌。此外,FDM MNs在磁场作用下能够穿透牙本质小管,有效破坏生物膜以进行深度消毒。这些重要结果为支持磁性纳米颗粒在治疗牙髓炎和根尖周炎方面的潜在临床应用提供了有价值的实验证据。