Feller L, Khammissa R A G, Schechter I, Thomadakis G, Fourie J, Lemmer J
Department of Periodontology and Oral Medicine, Sefako Makgatho Health Sciences University, Pretoria 0204, South Africa.
Schulich Faculty of Chemistry, Technion-Israel Institute of Technology, 32000 Haifa, Israel.
ScientificWorldJournal. 2015;2015:876509. doi: 10.1155/2015/876509. Epub 2015 Sep 2.
Orthodontic force-induced stresses cause dynamic alterations within the extracellular matrix and within the cytoskeleton of cells in the periodontal ligament and alveolar bone, mediating bone remodelling, ultimately enabling orthodontic tooth movement. In the periodontal ligament and alveolar bone, the mechanically induced tensile strains upregulate the expression of osteogenic genes resulting in bone formation, while mechanically induced compressive strains mediate predominantly catabolic tissue changes and bone resorption. In this review article we summarize some of the currently known biological events occurring in the periodontal ligament and in the alveolar bone in response to application of orthodontic forces and how these facilitate tooth movement.
正畸力引起的应力会导致牙周韧带和牙槽骨中细胞外基质及细胞骨架内发生动态变化,介导骨重塑,最终实现正畸牙齿移动。在牙周韧带和牙槽骨中,机械诱导的拉伸应变会上调成骨基因的表达,从而导致骨形成,而机械诱导的压缩应变主要介导分解代谢组织变化和骨吸收。在这篇综述文章中,我们总结了一些目前已知的在正畸力作用下牙周韧带和牙槽骨中发生的生物学事件,以及这些事件如何促进牙齿移动。