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新型双晶纳米片通过多模式策略用 MnO 修饰来对抗牙周感染的细菌生物膜

Novel Twin-Crystal Nanosheets with MnO Modification to Combat Bacterial Biofilm against Periodontal Infections via Multipattern Strategies.

机构信息

Department of Prosthodontics, Jilin Provincial Key Laboratory of Tooth Development and Bone Remodeling, School and Hospital of Stomatology, Jilin University, Changchun, 130021, China.

Department of Oral Implantology, Jilin Provincial Key Laboratory of Sciences and Technology for Stomatology Nanoengineering, School and Hospital of Stomatology, Jilin University, Changchun, 130021, China.

出版信息

Adv Healthc Mater. 2023 Jul;12(19):e2300313. doi: 10.1002/adhm.202300313. Epub 2023 Mar 31.

Abstract

Nowadays the multifunctional approaches to kill oral bacteria based on various nanocomposites have made great progress against periodontal infections, while the material structure and its functional integration are still insufficient. Herein, this work proposes a therapeutic strategy of chemodynamical therapy (CDT) and photothermal therapy (PTT) in monocrystals to effectively enhance the synergistic treatment. The CuS/MnS@MnO consisting of hexagonal CuS/MnS nano-twin-crystal with a shell layer of MnO is developed. In this nanosystem, the purpose of synergistic treatment of periodontitis by combining PTT/CDT is achieved within a CuS/MnS monocrystal, where CuS serves to achieve photothermal conversion, dissipate the biofilm and transfer the heat in situ to the integrated MnS, thus promoting the Mn -mediated CDT process. Meanwhile, the CDT process can generate the highly toxic hydroxyl radical to destroy extracellular DNA by utilization of endogenous H O produced by Streptococci in the oral biofilm, cooperating with PTT to dissipate the bacterial biofilm. With the design of the outer shell of MnO , the selective bacteria-killing can be realized by producing oxygen which can protect the periodontal non-pathogenic aerobic bacteria and threaten the survival of anaerobic pathogens. Therefore, such design via multipattern strategies to combat microorganisms would provide a bright prospect for the clinical treatment of bacterial infections.

摘要

如今,基于各种纳米复合材料的多功能方法在对抗牙周感染方面取得了很大进展,然而材料结构及其功能集成仍然不足。在本文中,我们提出了一种单晶体内化学动力学治疗(CDT)和光热治疗(PTT)的治疗策略,以有效地增强协同治疗效果。我们开发了由具有 MnO 壳层的六方 CuS/MnS 纳米双晶组成的 CuS/MnS@MnO。在这个纳米系统中,通过 PTT/CDT 的联合治疗来实现牙周炎的协同治疗目的,其中 CuS 用于实现光热转换、消解生物膜并将热量原位传递到集成的 MnS,从而促进 Mn 介导的 CDT 过程。同时,CDT 过程可以产生高毒性的羟基自由基,通过利用口腔生物膜中链球菌产生的内源性 H 2 O 2 来破坏细胞外 DNA,与 PTT 一起消解细菌生物膜。通过 MnO 外壳的设计,可以产生氧气来实现选择性杀菌,从而保护牙周非致病性需氧菌并威胁厌氧病原体的生存。因此,这种通过多模式策略来对抗微生物的设计为细菌感染的临床治疗提供了广阔的前景。

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