Wolf Michael, Marciniak Jana, Lossdörfer Stefan, Kirschneck Christian, Brauner Isabel, Götz Werner, Jäger Andreas
Department of Orthodontics, University Hospital of the RWTH Aachen, Germany.
Department of Orthodontics, University Hospital of the RWTH Aachen, Germany; Department of Orthodontics, Dental Clinic, University of Bonn, Germany.
Ann Anat. 2019 Jan;221:76-83. doi: 10.1016/j.aanat.2018.09.006. Epub 2018 Sep 22.
Heat pre-treatment of mechanically loaded human periodontal ligament cells (hPDL) dampens the inflammatory cellular response, as evidenced by a reduced expression of pro-inflammatory cytokines, inhibition of monocyte adhesion and osteoclastic differentiation. These findings imply heat shock proteins (HSP) as cell protective molecules acting in the PDL that are up-regulated upon ischemia caused by mechanical loading. HSP70 and its inhibition by VER155008 as the active agent in several pharmaceuticals are established targets and strategies, respectively, in the treatment of neoproliferative diseases. However, the effect of both players on periodontal remodeling in unknown. Therefore, we analyzed the role of HSP70 and its frequently used inhibitor VER155008 in the regulation of physiological hPDL cell functions and immune cell interaction.
Fifth passage hPDL cells were cultured in the presence of 25μm HSP70 inactivating agent VER155008. At harvest, HSP70 expression, cell proliferation, and parameters of cell interaction, colony formation and wound healing were analyzed by means of real-time PCR, immunohistochemistry, Western blot, biochemical MTS assay, microscopy, and functional assays for monocyte adhesion and differentiation.
Basal HSP70 expression and hPDL cell morphology were not affected by HSP70 inhibitor VER155008. In contrast, cell proliferation, tissue defect healing, and colony formation were reduced significantly following HSP70 inhibition, whereas apoptosis and necrosis, monocyte adhesion and osteoclastic differentiation were markedly increased.
The present data indicate a regulatory role for HSP70 protein in hPDL cell biology.
These findings identify HSP70 as a promising target in the attempt to modify periodontal remodeling and point to potential periodontal side effects of HSP70 pharmaceutical usage.
对机械加载的人牙周膜细胞(hPDL)进行热预处理可抑制炎症细胞反应,这表现为促炎细胞因子表达降低、单核细胞黏附受抑制以及破骨细胞分化受抑制。这些发现表明热休克蛋白(HSP)作为在牙周膜中起作用的细胞保护分子,在机械加载导致的缺血时会上调。HSP70及其被VER155008抑制(VER155008是几种药物中的活性剂)分别是治疗增殖性疾病既定的靶点和策略。然而,二者对牙周组织重塑的影响尚不清楚。因此,我们分析了HSP70及其常用抑制剂VER155008在调节hPDL细胞生理功能和免疫细胞相互作用中的作用。
将第5代hPDL细胞在25μm HSP70失活剂VER155008存在的情况下进行培养。收获时,通过实时PCR、免疫组织化学、蛋白质印迹、生化MTS测定、显微镜检查以及单核细胞黏附与分化功能测定,分析HSP70表达、细胞增殖以及细胞相互作用、集落形成和伤口愈合的参数。
HSP70抑制剂VER155008不影响基础HSP70表达和hPDL细胞形态。相反,HSP70受抑制后,细胞增殖、组织缺损愈合和集落形成显著降低,而细胞凋亡与坏死、单核细胞黏附以及破骨细胞分化则明显增加。
目前的数据表明HSP70蛋白在hPDL细胞生物学中具有调节作用。
这些发现确定HSP70是试图改变牙周组织重塑的一个有前景的靶点,并指出了使用HSP70药物可能产生的牙周副作用。