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Differential Efficacy of 2 Vibrating Orthodontic Devices to Alter the Cellular Response in Osteoblasts, Fibroblasts, and Osteoclasts

机译:2振动正畸设备改变成骨细胞,成纤维细胞和破骨细胞的细胞反应的差异功效。

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Modalities that increase the rate of tooth movement have received considerable attention, but direct comparisons between devices are rare. Here, we contrasted 2 mechanical vibratory devices designed to directly transfer vibrations into alveolar bone as a means to influence bone remodeling. To this end, 3 cells types intimately involved in modulating tooth movements—osteoblasts, periodontal ligament fibroblasts, and osteoclasts—were subjected to in vitro vibrations at bout durations prescribed by the manufacturers. As quantified by an accelerometer, vibration frequency and peak accelerations were 400% and 70% greater in the VPro5 (Propel Orthodontics) than in the AcceleDent (OrthoAccel Technologies) device. Both devices caused increased cell proliferation and gene expression in osteoblasts and fibroblasts, but the response to VPro5 treatment was greater than for the AcceleDent. In contrast, the ability to increase osteoclast activity was device independent. These data present an important first step in determining how specific cell types important for facilitating tooth movement respond to different vibration profiles. The device that engendered a higher vibration frequency and larger acceleration (VPro5) was superior in stimulating osteoblast and fibroblast cell proliferation/gene expression, although the duration of each treatment bout was 75% shorter than for the AcceleDent.
机译:增加牙齿运动速度的方法已经引起了广泛的关注,但是很少进行设备之间的直接比较。在这里,我们对比了2种机械振动设备,这些设备旨在将振动直接传递到牙槽骨中,以作为影响骨骼重塑的一种手段。为此,在制造商规定的回合持续时间内,对三种与调节牙齿运动密切相关的细胞类型(成骨细胞,牙周膜成纤维细胞和破骨细胞)进行了体外振动。如由加速度计所量化,与Pro AccelDent(OrthoAccel Technologies)设备相比,VPro5(Propel口腔正畸学)的振动频率和峰值加速度分别高出400%和70%。两种设备均导致成骨细胞和成纤维细胞中细胞增殖和基因表达增加,但对VPro5处理的反应大于对AcceleDent的反应。相反,增加破骨细胞活性的能力与装置无关。这些数据代表了重要的第一步,即确定对促进牙齿运动重要的特定细胞类型如何响应不同的振动曲线。产生更高振动频率和更大加速度的装置(VPro5)在刺激成骨细胞和成纤维细胞增殖/基因表达方面表现优异,尽管每次治疗的持续时间比AcceleDent短75%。

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