Proff Peter, Schröder Agnes, Seyler Lisa, Wolf Franziska, Korkmaz Yüksel, Bäuerle Tobias, Gölz Lina, Kirschneck Christian
Department of Orthodontics, University Hospital Regensburg, 93053 Regensburg, Germany.
Department of Radiology, University Clinic, Friedrich-Alexander-University Erlangen-Nuremberg, 91054 Erlangen, Germany.
Biomedicines. 2020 Dec 19;8(12):632. doi: 10.3390/biomedicines8120632.
Orthodontic tooth movement to therapeutically align malpositioned teeth is supposed to impact blood flow in the surrounding tissues. Here, we evaluated actual vascularization in the tension area of the periodontal ligament during experimental tooth movement in rats ( = 8) with magnetic resonance imaging (MRI). We inserted an elastic band between the left upper first and the second rat molar; the right side was not treated and served as control. After four days of tooth movement, we recorded T1-weighted morphologic and dynamic-contrast-enhanced MRI sequences with an animal-specific 7 Tesla MRI to assess of local vascularization. Furthermore, we quantified osteoclasts and monocytes in the periodontal ligament, which are crucial for orthodontic tooth movement, root resorptions as undesirable side effects, as well as the extent of tooth movement using paraffine histology and micro-CT analysis. Data were tested for normal distribution with Shapiro-Wilk tests followed by either a two-tailed paired -test or a Wilcoxon matched-pairs signed rank test. Significant orthodontic tooth movement was induced within the four days of treatment, as evidenced by increased osteoclast and monocyte activity in the periodontal ligament as well as by µCT analysis. Contrast enhancement was increased at the orthodontically-treated side distally of the moved upper first left molar, indicating increased vascularization at the tension side of the periodontal ligament. Accordingly, we detected reduced time-to-peak and washout rates. Our study using MRI to directly assess local vascularization thus seems to confirm the hypothesis that perfusion is enhanced in tension zones of the periodontal ligament during orthodontic tooth movement.
正畸牙齿移动以治疗性地排齐错位牙齿被认为会影响周围组织的血流。在此,我们利用磁共振成像(MRI)评估了大鼠(n = 8)实验性牙齿移动过程中牙周膜张力区的实际血管形成情况。我们在大鼠左上第一磨牙和第二磨牙之间插入一条弹性带;右侧未作处理作为对照。牙齿移动四天后,我们使用动物专用的7特斯拉MRI记录T1加权形态学和动态对比增强MRI序列,以评估局部血管形成情况。此外,我们通过石蜡组织学和显微CT分析对牙周膜中的破骨细胞和单核细胞进行定量,这些细胞对正畸牙齿移动、作为不良副作用的牙根吸收以及牙齿移动程度至关重要。数据经Shapiro-Wilk检验进行正态分布检验,随后进行双尾配对t检验或Wilcoxon配对符号秩检验。治疗四天内诱导出了显著的正畸牙齿移动,这通过牙周膜中破骨细胞和单核细胞活性增加以及显微CT分析得以证实。在正畸治疗侧,即移动的左上第一磨牙远侧,对比增强增加,表明牙周膜张力侧血管形成增加。相应地,我们检测到峰值时间和洗脱率降低。因此,我们使用MRI直接评估局部血管形成的研究似乎证实了这样一个假设,即在正畸牙齿移动过程中,牙周膜张力区的灌注会增强。