Ran Ying, Shi Jiayi, Ding Yiqin, Li Lujian, Lu Dandan, Zeng Youyun, Qiu Dongchao, Yu Jie, Cai Xiaojun, Pan Yihuai
School and Hospital of Stomatology, Wenzhou Medical University, Wenzhou, 325027, China.
Department of Endodontics, School and Hospital of Stomatology, Wenzhou Medical University, Wenzhou, 325027, China.
Adv Sci (Weinh). 2024 Dec;11(45):e2409155. doi: 10.1002/advs.202409155. Epub 2024 Oct 11.
The main features of early caries are the massive colonization of cariogenic bacteria and demineralization of tooth enamel by the acids that they produce. Owing to the lack of effective treatments, the development of anticaries therapeutics with both antimicrobial and remineralizing properties is urgently required. Black phosphorus nanosheets (BPNs) are ideal therapeutics for the treatment of early caries because they can mediate photothermal antibacterial activity and subsequently promote remineralization by generating PO . However, the dynamic and wet environment of the oral cavity prevents the long-term adhesion of BPNs to the tooth surface. In this study, using catechol-modified chitosan and PLGA-PEG-PLGA as raw materials, a mussel-inspired versatile hydrogel, BP@CP5, is presented that can be used to physically load BPNs. BP@CP5 has exceptional injectability and can firmly adhere to tooth surfaces for up to 24 h. Upon irradiation, BP@CP5 can quickly eliminate ≈99% of Streptococcus mutans and Streptococcus sanguinis; furthermore, the PO generated via degradation also promotes rapid remineralization of enamel slabs. Importantly, the vivo rodent caries modeling results further confirm the excellent caries-prevention properties of BP@CP5. This study demonstrates that BP@CP5 is a promising anticaries material for caries management.
早期龋齿的主要特征是致龋菌的大量定植以及它们所产生的酸对牙釉质的脱矿作用。由于缺乏有效的治疗方法,迫切需要开发具有抗菌和再矿化特性的防龋治疗剂。黑磷纳米片(BPNs)是治疗早期龋齿的理想治疗剂,因为它们可以介导光热抗菌活性,随后通过生成PO促进再矿化。然而,口腔的动态和潮湿环境阻碍了BPNs在牙齿表面的长期附着。在本研究中,以儿茶酚修饰的壳聚糖和PLGA-PEG-PLGA为原料,制备了一种受贻贝启发的多功能水凝胶BP@CP5,可用于物理负载BPNs。BP@CP5具有出色的可注射性,可在牙齿表面牢固附着长达24小时。经照射后,BP@CP5可快速消除约99%的变形链球菌和血链球菌;此外,通过降解产生的PO还促进牙釉质块的快速再矿化。重要的是,体内啮齿动物龋齿建模结果进一步证实了BP@CP5具有出色的防龋性能。本研究表明,BP@CP5是一种有前景的用于龋齿管理的防龋材料。