Selvaraj Madhanraj, Mohaideen Kaja, Sennimalai Karthik, Gothankar Greeshma Shantharam, Arora Garima
Division of Orthodontics and Dentofacial Deformities, Centre for Dental Education and Research, All India Institute of Medical Sciences, New Delhi, India.
Department of Dentistry, All India Institute of Medical Sciences, Bilaspur, Himachal Pradesh, India.
J Orthod Sci. 2023 Mar 18;12:1. doi: 10.4103/jos.jos_73_22. eCollection 2023.
Contemporary orthodontics entails using advanced materials and devices, simplifying the process of tooth movement. It is well documented that orthodontic materials are subjected to various fluctuations and stresses in the oral environment, such as salivary pH, dietary habits, temperature changes, and masticatory loads. These changes reduce bonding materials' longevity, plasticize resin polymers, and reduce elastic properties. In addition, the corrosion of orthodontic appliances in the oral environment has concerned clinicians for some time. This is focused on two principal issues: whether corrosion products are absorbed into the body and cause either localized or systemic effects, and the results of corrosion on the physical properties and the clinical performance of orthodontic appliances. Recently, another major concern is the potential release of bisphenol-A from materials containing polymers such as thermoplastic aligners and resins, which is known to induce xenoestrogenicity and cytotoxicity when the tissue level exceeds the daily recommended intake. However, most of these findings are based on studies that suffer from serious drawbacks such as failure to replicate the exact oral environment and process during orthodontic treatment. Therefore, developing clinically relevant methods should be the goal of future research related to the aging of orthodontic materials. The purpose of this review is to outline the impact of the oral environment on contemporary orthodontic materials.
当代正畸学需要使用先进的材料和装置,从而简化牙齿移动的过程。有充分的文献记载,正畸材料在口腔环境中会受到各种波动和应力的影响,如唾液pH值、饮食习惯、温度变化和咀嚼负荷。这些变化会缩短粘结材料的使用寿命,使树脂聚合物增塑,并降低弹性性能。此外,正畸矫治器在口腔环境中的腐蚀问题已经困扰临床医生一段时间了。这主要集中在两个主要问题上:腐蚀产物是否会被人体吸收并产生局部或全身影响,以及腐蚀对正畸矫治器物理性能和临床性能的影响。最近,另一个主要问题是双酚A从热塑性矫治器和树脂等含聚合物材料中的潜在释放,已知当组织水平超过每日推荐摄入量时,双酚A会诱发外源性雌激素效应和细胞毒性。然而,这些发现大多基于一些存在严重缺陷的研究,比如未能复制正畸治疗过程中确切的口腔环境和过程。因此,开发与临床相关的方法应该是未来正畸材料老化研究的目标。本综述的目的是概述口腔环境对当代正畸材料的影响。