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The Role of Hypoxia in Orthodontic Tooth Movement

机译:低氧在正畸牙齿运动中的作用

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摘要

Orthodontic forces are known to have various effects on the alveolar process, such as cell deformation, inflammation, and circulatory disturbances. Each of these conditions affecting cell differentiation, cell repair, and cell migration, is driven by numerous molecular and inflammatory mediators. As a result, bone remodeling is induced, facilitating orthodontic tooth movement. However, orthodontic forces not only have cellular effects but also induce vascular changes. Orthodontic forces are known to occlude periodontal ligament vessels on the pressure side of the dental root, decreasing the blood perfusion of the tissue. This condition is accompanied by hypoxia, which is known to either affect cell proliferation or induce apoptosis, depending on the oxygen gradient. Because upregulated tissue proliferation rates are often accompanied by angiogenesis, hypoxia may be assumed to fundamentally contribute to bone remodeling processes during orthodontic treatment.
机译:正畸力对肺泡过程有多种影响,例如细胞变形,炎症和循环障碍。这些影响细胞分化,细胞修复和细胞迁移的条件均受众多分子和炎症介质的驱动。结果,引起了骨骼重塑,从而促进了牙齿正畸运动。然而,正畸力不仅具有细胞作用,而且还引起血管变化。已知正畸力会阻塞牙根压力侧的牙周膜血管,从而降低组织的血液灌注。这种情况伴有缺氧,根据氧梯度,缺氧会影响细胞增殖或诱导细胞凋亡。由于上调的组织增殖速率通常伴随着血管生成,因此可以认为缺氧在正畸治疗过程中从根本上促进了骨重塑过程。

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