Department of Biomedical, Odontostomatological Sciences and of Morphological and Functional Images, School of Dentistry, University of Messina, Italy.
School of Dentistry, Department of Orthodontics, Vita-Salute San Raffaele University, Milan, Italy.
J Biol Regul Homeost Agents. 2019;33(5):1465-1470. doi: 10.23812/19-136-A.
Orthodontic tooth movement determines a biological response of all the tissues surrounding the teeth to which force is applied. The aim of this study is to evaluate which ideal orthodontic force, at the biological level, arouses an acute inflammatory response on periodontal tissues, and the duration of the force in order to establish an ideal experimental model of dental movement. The periodontal ligament and the alveolar bone change abruptly due to the biochemical adaptive response, resulting in a re-organization of the intracellular and the extracellular matrix. There is a modification of the local vascularization which stimulates a cascade production, synthesis and the release of arachidonic acid, metabolites, proteins, such as cytokines, and growth factors. Every dentist can control and should know the above-mentioned mechanism. Moreover, the production of proteins by modulating the direction and the intensity of the force can be changed but, above all, the duration.
正畸牙齿移动决定了牙齿周围所有组织对施加力的生物学反应。本研究旨在评估在生物学水平上,哪种理想的正畸力会在牙周组织中引起急性炎症反应,以及力的持续时间,以便建立一个理想的牙齿移动实验模型。牙周韧带和牙槽骨由于生化适应反应而突然发生变化,导致细胞内和细胞外基质的重新组织。局部血管生成的改变刺激了花生四烯酸、代谢物、细胞因子和生长因子等蛋白质的级联产生、合成和释放。每个牙医都可以控制并应该了解上述机制。此外,通过调节力的方向和强度来产生蛋白质可以改变,但最重要的是持续时间。