Department of Oral and Cranio-Maxillofacial Surgery, Shanghai Ninth People's Hospital, College of Stomatology, National Center for Stomatology, Shanghai Key Laboratory of Stomatology, Shanghai Jiao Tong University School of Medicine, Shanghai Jiao Tong University, National Clinical Research Center for Oral Diseases, No.639 Zhizaoju Road, Shanghai, 200011, China.
The Key Laboratory of Resource Chemistry of Ministry of Education, Shanghai Key College of Chemistry and Materials Science, Shanghai Normal University, Shanghai, 200234, China.
J Nanobiotechnology. 2024 Aug 17;22(1):490. doi: 10.1186/s12951-024-02709-9.
Dental caries is a worldwide public healthcare concern, and is closely related to the acidic environment that caused by bacterial decomposition of food. In this study, a two-step ion exchange liquid-phase stripping method was applied to strip out vermiculite (VMT) nanosheets, then amorphous calcium phosphate (ACP) and dextran were inserted between the VMT nanosheets interlayer to obtain a composite two-dimension nanosheets (VMT/ACP/Dextran). VMT/ACP/Dextran composite nanosheets exhibited excellent biocompatibility and could provide exogenous Caand PO from ACP, provide SiO, Mg, Fe and obtain buffering pH and antibacterial properties from VMT, as well as improve suspension stability and targeting Streptococcus mutans through glucan. The in vitro study showed that the composite materials could promote the mineralization and sealing of dentin tubules by releasing active ions, buffer pH 4.5 (a value close to the pH in the dental plaque environment) to pH 6.6-7.1 (values close to the pH in human saliva) through ion exchange, and exert antibacterial effects by targeting Streptococcus mutans and exerting oxidase like and peroxidase like activities to produce reactive oxygen species (ROS). The in vivo animal study showed that daily cleaning teeth using VMT/ACP/Dextran composite nanosheets could effectively reduce the incidence rate and severity of dental caries in rats. Taking together, the developed VMT/ACP/Dextran composite nanosheets, which integrated the excellent properties of VMT, ACP and dextran, can effectively prevent dental caries through a combination of factors such as buffering acids, antibacterial properties, and promoting calcification, and may be used as an active ingredient for daily oral hygiene or filling materials to prevent and treat dental caries.
龋齿是一个全球性的公共卫生健康问题,与由食物细菌分解引起的酸性环境密切相关。在这项研究中,采用两步离子交换液相剥离法将蛭石(VMT)纳米片剥离出来,然后将无定形磷酸钙(ACP)和葡聚糖插入 VMT 纳米片层间,得到一种复合二维纳米片(VMT/ACP/Dextran)。VMT/ACP/Dextran 复合纳米片表现出优异的生物相容性,能够从 ACP 中提供外源性 Ca 和 PO,从 VMT 中提供 SiO、Mg、Fe,并获得缓冲 pH 值和抗菌性能,同时通过葡聚糖提高悬浮稳定性和靶向变形链球菌。体外研究表明,该复合材料通过释放活性离子可促进牙本质小管的矿化和封闭,通过离子交换将 pH4.5(接近牙菌斑环境中的 pH 值)缓冲至 pH6.6-7.1(接近人唾液中的 pH 值),通过靶向变形链球菌发挥抗菌作用,并发挥氧化酶和过氧化物酶样活性产生活性氧(ROS)。体内动物研究表明,每天使用 VMT/ACP/Dextran 复合纳米片清洁牙齿可以有效降低大鼠龋齿的发生率和严重程度。综上所述,所开发的 VMT/ACP/Dextran 复合纳米片结合了 VMT、ACP 和葡聚糖的优异性能,可通过缓冲酸、抗菌性能和促进钙化等多种因素有效预防龋齿,可能作为日常口腔卫生或填充材料的有效成分,用于预防和治疗龋齿。