Department of Orthodontics, Dental Clinic, University Hospital RWTH Aachen, 52074 Aachen, Germany.
Institute of Molecular Pathobiochemistry, Experimental Gene Therapy and Clinical Chemistry, University Hospital RWTH Aachen, 52074 Aachen, Germany.
Biomolecules. 2021 Jun 23;11(7):932. doi: 10.3390/biom11070932.
Human Periodontal Ligament Fibroblasts (hPDLF), as part of the periodontal apparatus, modulate inflammation, regeneration and bone remodeling. Interferences are clinically manifested as attachment loss, tooth loosening and root resorption. During orthodontic tooth movement (OTM), remodeling and adaptation of the periodontium is required in order to enable tooth movement. hPDLF involvement in the early phase-OTM compression side was investigated for a 72-h period through a well-studied in vitro model. Changes in the morphology, cell proliferation and cell death were analyzed. Specific markers of the cell cycle were investigated by RT-qPCR and Western blot. The study showed that the morphology of hPDLF changes towards more unstructured, unsorted filaments under mechanical compression. The total cell numbers were significantly reduced with a higher cell death rate over the whole observation period. hPDLF started to recover to pretreatment conditions after 48 h. Furthermore, key molecules involved in the cell cycle were significantly reduced under compressive force at the gene expression and protein levels. These findings revealed important information for a better understanding of the preservation and remodeling processes within the periodontium through Periodontal Ligament Fibroblasts during orthodontic tooth movement. OTM initially decelerates the hPDLF cell cycle and proliferation. After adapting to environmental changes, human Periodontal Ligament Fibroblasts can regain homeostasis of the periodontium, affecting its reorganization.
人牙周韧带成纤维细胞(hPDLF)作为牙周组织的一部分,调节炎症、再生和骨重塑。干扰在临床上表现为附着丧失、牙齿松动和牙根吸收。在正畸牙齿移动(OTM)期间,为了实现牙齿移动,需要对牙周组织进行重塑和适应。通过一个经过充分研究的体外模型,研究了 hPDLF 在 OTM 早期压缩侧的早期参与情况,持续 72 小时。分析了细胞形态、细胞增殖和细胞死亡的变化。通过 RT-qPCR 和 Western blot 研究了细胞周期的特定标志物。研究表明,在机械压缩下,hPDLF 的形态向更无结构、更无序的丝状结构变化。在整个观察期内,总细胞数量显著减少,细胞死亡率更高。hPDLF 在 48 小时后开始恢复到预处理状态。此外,在基因表达和蛋白质水平上,细胞周期中的关键分子在压缩力下显著减少。这些发现为更好地理解正畸牙齿移动过程中牙周韧带成纤维细胞在牙周组织中的保存和重塑过程提供了重要信息。OTM 最初会减缓 hPDLF 的细胞周期和增殖。适应环境变化后,人牙周韧带成纤维细胞可以恢复牙周组织的内稳态,影响其重组。