Wang Ranxu, Wang Yanjiu, Chen Jiayuan, Yin Yue, Zheng Nannan, Li Mengdi, Zhao Shuang, Han Xu, Li Qiwei, Niu Yumei, Zhang Lin, Pan Shuang
The First Affiliated Hospital of Harbin Medical University Harbin Heilongjiang 150001 China
School of Life Science and Technology, Key Laboratory of Micro-systems and Micro-structures Manufacturing Ministry of Education, Micro/Nano Technology Research Center, Harbin Institute of Technology Harbin Heilongjiang Province 150080 China.
RSC Adv. 2025 Apr 28;15(17):13453-13467. doi: 10.1039/d5ra00792e. eCollection 2025 Apr 22.
Early dental caries and tooth staining are prevalent clinical conditions, so it is of great clinical significance to develop a multifunctional material. Photocatalytic therapies play a significant role in the medical field. However, the use of photocatalytic materials in the dental field is relatively limited. In this study, multifunctional titanium dioxide/nanohydroxyapatite (TiO/HAP) nanocomposites were synthesised using a hydrothermal method and investigated for their antibacterial properties, mineralization-promoting effects, tooth whitening capabilities, and biocompatibility. TiO serves as a photocatalyst, facilitating antimicrobial treatment and improving teeth whitening through a photodynamic reaction. HAP, as a mineralization-promoting agent, effectively promotes enamel remineralization following plaque removal. The results of the whitening experiment indicated after treatment by TiO/HAP combined with blue light irradiation, the tooth color improved from C4 to A1. In a rat molar model of early caries, TiO/HAP effectively removed dental plaque and increased the calcium-to-phosphorus ratio to 1.58, further validating the results of the microhardness test. Meanwhile, TiO/HAP nanocomposites demonstrated good biocompatibility and did not significantly alter the oral microbial community. The results indicate that TiO/HAP plays a significant role in antimicrobial activity, remineralization, and tooth whitening, offering a novel strategy for the prevention and treatment of early caries and tooth staining.
早期龋齿和牙齿染色是常见的临床病症,因此开发一种多功能材料具有重要的临床意义。光催化疗法在医学领域发挥着重要作用。然而,光催化材料在牙科领域的应用相对有限。在本研究中,采用水热法合成了多功能二氧化钛/纳米羟基磷灰石(TiO/HAP)纳米复合材料,并对其抗菌性能、矿化促进作用、牙齿美白能力和生物相容性进行了研究。TiO作为光催化剂,通过光动力反应促进抗菌治疗并改善牙齿美白。HAP作为矿化促进剂,在去除牙菌斑后有效地促进牙釉质再矿化。美白实验结果表明,经TiO/HAP结合蓝光照射处理后,牙齿颜色从C4改善到A1。在早期龋齿的大鼠磨牙模型中,TiO/HAP有效地去除了牙菌斑,并将钙磷比提高到1.58,进一步验证了显微硬度测试的结果。同时,TiO/HAP纳米复合材料表现出良好的生物相容性,并且没有显著改变口腔微生物群落。结果表明,TiO/HAP在抗菌活性、再矿化和牙齿美白方面发挥着重要作用,为早期龋齿和牙齿染色的预防和治疗提供了一种新策略。