Huang Fangting, Cheng Lei, Li Jiyao, Ren Biao
State Key Laboratory of Oral Diseases & National Clinical Research Center for Oral Diseases, Sichuan University, Chengdu, Sichuan, China.
Department of Preventive Dentistry, Guanghua School of Stomatology, Sun Yat-sen University, Guangzhou, Guangdong, China.
Front Bioeng Biotechnol. 2022 Dec 12;10:1078453. doi: 10.3389/fbioe.2022.1078453. eCollection 2022.
Untreated dental caries, tooth trauma and dental anatomical variations such as dens invaginatus can result in pulpitis. However, standard root canal therapy cannot treat immature permanent teeth due to an open apical foramen and thin dentinal walls. Thus, regenerative endodontics treatment (RET) following a disinfection step with pulp regeneration has been developed. Pulp connective-tissue, dentin formation, revascularization and reinnervation can occur in this procedure which should be supplemented with intelligent biomaterials to improve repeatability and support well-coordinated regeneration. Furthermore, nanofibrous scaffolds, as one of the most commonly used materials, show promise. The purpose of this article is to highlight the advantages of nanofibrous scaffolds and discuss the future modification and application of them.
未经治疗的龋齿、牙齿外伤以及诸如牙内陷等牙齿解剖变异都可能导致牙髓炎。然而,由于根尖孔开放和牙本质壁薄,标准的根管治疗无法治疗未成熟恒牙。因此,在进行牙髓再生的消毒步骤后,再生牙髓治疗(RET)应运而生。在此过程中可发生牙髓结缔组织、牙本质形成、血管再生和神经再支配,应辅以智能生物材料以提高可重复性并支持协调良好的再生。此外,纳米纤维支架作为最常用的材料之一,显示出应用前景。本文旨在突出纳米纤维支架的优势,并探讨其未来的改性和应用。