New generation of orthodontic devices and materials with bioactive capacities to improve enamel demineralization

J Dent. 2024 Mar:142:104844. doi: 10.1016/j.jdent.2024.104844. Epub 2024 Jan 20.

Abstract

Objective: The article reviewed novel orthodontic devices and materials with bioactive capacities in recent years and elaborated on their properties, aiming to provide guidance and reference for future scientific research and clinical applications.

Data, sources and study selection: Researches on remineralization, protein repellent, antimicrobial activity and multifunctional novel bioactive orthodontic devices and materials were included. The search of articles was carried out in Web of Science, PubMed, Medline and Scopus.

Conclusions: The new generation of orthodontic devices and materials with bioactive capacities has broad application prospects. However, most of the current studies are limited to in vitro studies and cannot explore the true effects of various bioactive devices and materials applied in oral environments. More research, especially in vivo researches, is needed to assist in clinical application.

Clinical significance: Enamel demineralization (ED) is a common complication in orthodontic treatments. Prolonged ED can lead to dental caries, impacting both the aesthetics and health of teeth. It is of great significance to develop antibacterial orthodontic devices and materials that can inhibit bacterial accumulation and prevent ED. However, materials with only preventive effect may fall short of addressing actual needs. Hence, the development of novel bioactive orthodontic materials with remineralizing abilities is imperative. The article reviewed the recent advancements in bioactive orthodontic devices and materials, offering guidance and serving as a reference for future scientific research and clinical applications.

Keywords: Antibacterial properties; Bioactive nano-materials; Enamel demineralization; Orthodontics; Remineralizing performance.

Publication types

  • Review

MeSH terms

  • Dental Caries* / prevention & control
  • Dental Enamel
  • Esthetics, Dental
  • Humans
  • Orthodontic Brackets*
  • Tooth Demineralization* / prevention & control