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通过局部施用生物功能分子增强正畸牙齿移动:一项全面的系统评价。

Enhancement of Orthodontic Tooth Movement by Local Administration of Biofunctional Molecules: A Comprehensive Systematic Review.

作者信息

Ciobotaru Cristina Dora, Feștilă Dana, Dinte Elena, Muntean Alexandrina, Boșca Bianca Adina, Ionel Anca, Ilea Aranka

机构信息

Department of Oral Rehabilitation, Faculty of Dentistry, "Iuliu Hațieganu" University of Medicine and Pharmacy, 400012 Cluj-Napoca, Romania.

Department of Orthodontics, Faculty of Dentistry, "Iuliu Hațieganu" University of Medicine and Pharmacy, 400012 Cluj-Napoca, Romania.

出版信息

Pharmaceutics. 2024 Jul 25;16(8):984. doi: 10.3390/pharmaceutics16080984.

Abstract

Enhancement of orthodontic tooth movement (OTM) through local administration of biofunctional molecules has become increasingly significant, particularly for adult patients seeking esthetic and functional improvements. This comprehensive systematic review analyzes the efficacy of various biofunctional molecules in modulating OTM, focusing on the method of administration and its feasibility, especially considering the potential for topical application. A search across multiple databases yielded 36 original articles of experimental human and animal OTM models, which examined biofunctional molecules capable of interfering with the biochemical reactions that cause tooth movement during orthodontic therapy, accelerating the OTM rate through their influence on bone metabolism (Calcitriol, Prostaglandins, Recombinant human Relaxin, RANKL and RANKL expression plasmid, growth factors, PTH, osteocalcin, vitamin C and E, biocompatible reduced graphene oxide, exogenous thyroxine, sclerostin protein, a specific EP4 agonist (ONO-AE1-329), carrageenan, and herbal extracts). The results indicated a variable efficacy in accelerating OTM, with Calcitriol, Prostaglandins (PGE1 and PGE2), RANKL, growth factors, and PTH, among others, showing promising outcomes. PGE1, PGE2, and Calcitriol experiments had statistically significant outcomes in both human and animal studies and, while other molecules underwent only animal testing, they could be validated in the future for human use. Notably, only one of the animal studies explored topical administration, which also suggests a future research direction. This review concluded that while certain biofunctional molecules demonstrated potential for OTM enhancement, the evidence is not definitive. The development of suitable topical formulations for human use could offer a patient-friendly alternative to injections, emphasizing comfort and cost-effectiveness. Future research should focus on overcoming current methodological limitations and advancing translational research to confirm these biomolecules' efficacy and safety in clinical orthodontic practice.

摘要

通过局部施用生物功能分子来增强正畸牙齿移动(OTM)变得越来越重要,特别是对于寻求美观和功能改善的成年患者。这篇全面的系统评价分析了各种生物功能分子在调节OTM方面的功效,重点关注给药方法及其可行性,尤其是考虑局部应用的可能性。对多个数据库进行检索后,得到了36篇关于人类和动物OTM实验模型的原始文章,这些文章研究了能够干扰正畸治疗期间导致牙齿移动的生化反应的生物功能分子,通过它们对骨代谢的影响来加速OTM速率(骨化三醇、前列腺素、重组人松弛素、核因子κB受体活化因子配体(RANKL)和RANKL表达质粒、生长因子、甲状旁腺激素(PTH)、骨钙素、维生素C和E、生物相容性还原氧化石墨烯、外源性甲状腺素、硬化蛋白、一种特定的前列腺素E4(EP4)激动剂(ONO-AE1-329)、角叉菜胶和草药提取物)。结果表明,在加速OTM方面存在不同程度的功效,其中骨化三醇、前列腺素(PGE1和PGE2)、RANKL、生长因子和PTH等显示出有前景的结果。PGE1、PGE2和骨化三醇的实验在人类和动物研究中均有统计学意义的结果,而其他分子仅进行了动物试验,未来可能会验证其在人类中的应用。值得注意的是,只有一项动物研究探索了局部给药,这也提示了未来的研究方向。该综述得出结论,虽然某些生物功能分子显示出增强OTM的潜力,但证据并不确凿。开发适合人类使用的局部制剂可以为注射提供一种患者友好的替代方案,强调舒适性和成本效益。未来的研究应专注于克服当前的方法学局限性,并推进转化研究,以确认这些生物分子在临床正畸实践中的功效和安全性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/994e/11360669/f25d02ce4502/pharmaceutics-16-00984-g001.jpg

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