Department of Orthodontics, Center of Dental Medicine, University Hospital Jena, An Der Alten Post 4, 07743, Jena, Germany.
Electron Microscopy Center, University Hospital Jena, Ziegelmühlenweg 1, 07743, Jena, Germany.
Clin Oral Investig. 2023 May;27(5):1993-2001. doi: 10.1007/s00784-023-04924-4. Epub 2023 Feb 21.
White spot lesions are one of the most common side effects of orthodontic therapy with a multibracket appliance and may indicate a preliminary stage of caries, also known as initial caries. Several approaches may be utilized to prevent these lesions, such as reducing bacterial adhesion in the area surrounding the bracket. This bacterial colonization can be adversely affected by a number of local characteristics. In this context, the effects of excess dental adhesive in the bracket periphery were investigated by comparing a conventional bracket system with the APC flash-free bracket system.
Both bracket systems were applied to 24 extracted human premolars, and bacterial adhesion with Streptoccocus sobrinus (S. sobrinus) was performed for 24 h, 48 h, 7 d, and 14 d. After incubation, bacterial colonization was examined in specific areas by electron microscopy.
Overall, significantly fewer bacterial colonies were found in the adhesive area around the APC flash-free brackets (n = 507 ± 13 bacteria) than the conventionally bonded bracket systems (n = 850 ± 56 bacteria). This is a significant difference (**p = 0.004). However, APC flash-free brackets tend to create marginal gaps with more bacterial adhesion in this area than conventional bracket systems (n = 265 ± 31 bacteria). This bacterial accumulation in the marginal-gap area is also significant (*p = 0.029).
A smooth adhesive surface with minimal adhesive excess is beneficial for reducing bacterial adhesion but also poses a risk of marginal gap formation with subsequent bacterial colonization, which can potentially trigger carious lesions.
To reduce bacterial adhesion, the APC flash-free bracket adhesive system with low adhesive excess might be beneficial. APC flash-free brackets reduce the bacterial colonization in the bracket environment. A lower number of bacteria can minimize white spot lesions in the bracket environment. APC flash-free brackets tend to form marginal gaps between the bracket adhesive and the tooth.
正畸治疗中使用多托槽矫治器后出现的白斑是最常见的副作用之一,这可能表明龋齿的早期阶段,也称为初始龋。有几种方法可用于预防这些病变,例如减少托槽周围区域的细菌黏附。这种细菌定植可能会受到许多局部特征的不利影响。在这种情况下,通过比较传统托槽系统和 APC 无闪光托槽系统,研究了托槽周围多余牙胶对细菌黏附的影响。
将两种托槽系统应用于 24 颗人离体前磨牙,并用变异链球菌(S. sobrinus)进行细菌黏附实验,分别在 24 小时、48 小时、7 天和 14 天进行。孵育后,通过电子显微镜检查特定区域的细菌定植情况。
总体而言,APC 无闪光托槽周围的胶黏剂区域的细菌菌落明显少于传统托槽系统(n=507±13 个细菌)(n=850±56 个细菌)。这是一个显著差异(**p=0.004)。然而,与传统托槽系统相比,APC 无闪光托槽在该区域更容易产生边缘间隙,导致更多的细菌黏附(n=265±31 个细菌)。在边缘间隙区域的这种细菌积累也是显著的(*p=0.029)。
具有最小胶量且表面光滑的胶黏剂有利于减少细菌黏附,但也存在形成边缘间隙和随后的细菌定植的风险,这可能引发龋病病变。
为了减少细菌黏附,低胶量的 APC 无闪光托槽胶黏剂系统可能是有益的。APC 无闪光托槽减少了托槽环境中的细菌定植。细菌数量的减少可以最大限度地减少托槽环境中的白斑病变。APC 无闪光托槽在托槽胶黏剂和牙齿之间容易形成边缘间隙。