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受牙菌斑启发的用于龋齿预防和牙齿修复的多功能纳米系统。

Dental plaque-inspired versatile nanosystem for caries prevention and tooth restoration.

作者信息

Xu Yue, You Yuan, Yi Luyao, Wu Xiaoyi, Zhao Yaning, Yu Jian, Liu He, Shen Ya, Guo Jingmei, Huang Cui

机构信息

The State Key Laboratory Breeding Base of Basic Science of Stomatology (Hubei-MOST) & Key Laboratory for Oral Biomedical Ministry of Education, School & Hospital of Stomatology, Wuhan University, Wuhan, China.

Division of Endodontics, Faculty of Dentistry, The University of British Columbia, Canada.

出版信息

Bioact Mater. 2022 Jun 21;20:418-433. doi: 10.1016/j.bioactmat.2022.06.010. eCollection 2023 Feb.

Abstract

Dental caries is one of the most prevalent human diseases resulting from tooth demineralization caused by acid production of bacteria plaque. It remains challenges for current practice to specifically identify, intervene and interrupt the development of caries while restoring defects. In this study, inspired by natural dental plaque, a stimuli-responsive multidrug delivery system (PMs@NaF-SAP) has been developed to prevent tooth decay and promote enamel restoration. Classic spherical core-shell structures of micelles dual-loaded with antibacterial and restorative agents are self-assembled into bacteria-responsive multidrug delivery system based on the pH-cleavable boronate ester bond, followed by conjugation with salivary-acquired peptide (SAP) to endow the nanoparticle with strong adhesion to tooth enamel. The constructed PMs@NaF-SAP specifically adheres to tooth, identifies cariogenic conditions and intelligently releases drugs at acidic pH, thereby providing antibacterial adhesion and cariogenic biofilm resistance, and restoring the microarchitecture and mechanical properties of demineralized teeth. Topical treatment with PMs@NaF-SAP effectively diminishes the onset and severity of caries without impacting oral microbiota diversity or surrounding mucosal tissues. These findings demonstrate this novel nanotherapy has potential as a promising biomedical application for caries prevention and tooth defect restoration while resisting biofilm-associated diseases in a controlled manner activated by pathological bacteria.

摘要

龋齿是由菌斑产酸导致牙齿脱矿引起的最常见的人类疾病之一。在修复牙体缺损的同时,特异性地识别、干预和阻断龋齿的发展,仍是当前临床面临的挑战。在本研究中,受天然牙菌斑启发,开发了一种刺激响应性多药递送系统(PMs@NaF-SAP)来预防龋齿并促进牙釉质修复。经典的双载抗菌剂和修复剂的球形核壳结构胶束基于pH可裂解的硼酸酯键自组装成细菌响应性多药递送系统,随后与唾液获得性肽(SAP)偶联,赋予纳米颗粒对牙釉质的强粘附性。构建的PMs@NaF-SAP特异性粘附于牙齿,识别致龋情况并在酸性pH下智能释放药物,从而提供抗菌粘附和抗致龋生物膜能力,并恢复脱矿牙齿的微观结构和力学性能。用PMs@NaF-SAP进行局部治疗可有效减少龋齿的发生和严重程度,而不会影响口腔微生物群的多样性或周围的粘膜组织。这些发现表明,这种新型纳米疗法有潜力作为一种有前景的生物医学应用,用于预防龋齿和修复牙齿缺损,同时以可控方式抵抗由病原菌激活的生物膜相关疾病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c355/9233191/8dd73909b1b7/ga1.jpg

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