Orthodontic Department, Faculty of Dental Medicine (Cairo-Boys), Al-Azhar University, Cairo, Egypt.
Department of Clinical Dental Sciences, College of Dentistry, Ibnsina University of Medical and Pharmaceutical Sciences, Baghdad, Iraq.
Int Orthod. 2024 Mar;22(1):100823. doi: 10.1016/j.ortho.2023.100823. Epub 2023 Nov 21.
Temporarily installed titanium orthodontic miniscrews are usually used for many orthodontic applications, especially those cases that need high force, such as skeletally anchored orthodontic appliance cases. Surface modification of titanium miniscrews has proved success in preventing failure and overcoming their limitations.
The present study aims at the assessment of the quality of osseointegration of surface modified titanium miniscrews installed in the maxilla of albino rabbits with cone-beam computed tomography (CBCT) imaging as well as histomorphometric investigations.
The orthodontic titanium miniscrews (TMSs) were coated with silver/hydroxyapatite (Ag/HA) nanoparticles (NPs) or zinc oxide (ZnO) NPs via electrochemical deposition. The coating nanomaterials were then characterized with X-ray diffractometry (XRD) and scanning electron microscopy (SEM) imaging. Moreover, the antimicrobial activity of the coated titanium miniscrews were evaluated in the rabbits' oral cavity to investigate their ability to prevent biofilm formation.
It was found that the Ag/HA-coated TMSs demonstrated the highest antimicrobial activity and bone area fill, followed by the ZnO NPs-coated TMSs when compared to their uncoated counterparts. In the anterior area surrounding the installed TMSs, the highest osseointegration was demonstrated by ZnO NPs-coated TMSs. However, Ag/HA-coated TMSs showed the highest osseointegration values in the posterior peri-implant area.
Ag/HA- and ZnO NPs-coated TMSs may provide a promising solution to overcome the 30% probable failure in temporarily installed orthodontic miniscrews, as they can enhance the osseointegration process and prevent biofilm formation.
暂时植入的钛正畸微螺钉通常用于许多正畸应用,特别是那些需要高强度的情况,如骨骼锚固正畸器械病例。钛微螺钉的表面改性已被证明在防止失败和克服其局限性方面取得了成功。
本研究旨在通过锥形束计算机断层扫描(CBCT)成像以及组织形态计量学研究评估表面改性钛微螺钉在白化兔上颌骨中的骨整合质量。
通过电化学沉积将正畸钛微螺钉(TMS)涂覆有银/羟基磷灰石(Ag/HA)纳米颗粒(NPs)或氧化锌(ZnO)NPs。然后用 X 射线衍射(XRD)和扫描电子显微镜(SEM)成像对涂覆的纳米材料进行了表征。此外,还评估了涂覆钛微螺钉在兔子口腔中的抗菌活性,以研究它们预防生物膜形成的能力。
发现与未涂覆的 TMS 相比,Ag/HA 涂层 TMS 表现出最高的抗菌活性和骨面积填充,其次是 ZnO NPs 涂层 TMS。在安装 TMS 周围的前区域,ZnO NPs 涂层 TMS 表现出最高的骨整合。然而,Ag/HA 涂层 TMS 在植入后周围区域表现出最高的骨整合值。
Ag/HA 和 ZnO NPs 涂层 TMS 可能为克服暂时植入的正畸微螺钉 30%的可能失败提供了一种有前途的解决方案,因为它们可以增强骨整合过程并防止生物膜形成。