Abstract
AbstractCompared with teenage patients, adult patients generally show a slower rate of tooth movement and more pronounced alveolar bone loss during orthodontic treatment, indicating the maladaptation of alveolar bone homeostasis under orthodontic force. However, this phenomenon is not well-elucidated to date, leading to increased treatment difficulties and unsatisfactory treatment outcomes in adult orthodontics. Aiming to provide a comprehensive knowledge and further inspire insightful understanding towards this issue, this review summarizes the current evidence and underlying mechanisms. The age-related abatements in mechanosensing and mechanotransduction in adult cells and periodontal tissue may contribute to retarded and unbalanced bone metabolism, thus hindering alveolar bone reconstruction during orthodontic treatment. To this end, periodontal surgery, physical and chemical cues are being developed to reactivate or rejuvenate the aging periodontium and restore the dynamic equilibrium of orthodontic-mediated alveolar bone metabolism. We anticipate that this review will present a general overview of the role that aging plays in orthodontic alveolar bone metabolism and shed new light on the prospective ways out of the impasse.
Publisher
Springer Science and Business Media LLC
Reference168 articles.
1. Karkhanechi, M. et al. Periodontal status of adult patients treated with fixed buccal appliances and removable aligners over one year of active orthodontic therapy. Angle Orthod. 83, 146–151 (2013).
2. Zheng, Y., Zhu, C., Zhu, M. & Lei, L. Difference in the alveolar bone remodeling between the adolescents and adults during upper incisor retraction: a retrospective study. Sci. Rep. 12, 9161 (2022).
3. Monje, A. et al. Alveolar bone architecture: a systematic review and meta-analysis. J. Periodontol. 86, 1231–1248 (2015).
4. Jäger, A. Histomorphometric study of age-related changes in remodelling activity of human desmodontal bone. J. Anat. 189, 257–264 (1996).
5. Krieger, E., Hornikel, S. & Wehrbein, H. Age-related changes of fibroblast density in the human periodontal ligament. Head Face Med. 9, 22 (2013).