Panahipour Layla, Botta Sara, Abbasabadi Azarakhsh Oladzad, Afradi Zohreh, Gruber Reinhard
Department of Oral Biology, University Clinic of Dentistry, Medical University of Vienna, Sensengasse 2a, 1090 Vienna, Austria.
Department of Periodontology, School of Dental Medicine, University of Bern, 3010 Bern, Switzerland.
Int J Mol Sci. 2023 Sep 12;24(18):13991. doi: 10.3390/ijms241813991.
Epithelial cells in periodontitis patients increasingly express chemokines, suggesting their active involvement in the inflammatory process. Enamel matrix derivative (EMD) is an extract of porcine fetal tooth germs clinically applied to support the regrowth of periodontal tissues. Periodontal regeneration might benefit from the potential anti-inflammatory activity of EMD for epithelial cells. Our aim was, therefore, to set up a bioassay where chemokine expression is initiated in the HSC2 oral squamous carcinoma cell line and then test EMD for its capacity to lower the inflammatory response. To establish the bioassay, HSC2 cells being exposed to TNFα and LPS from () or () were subjected to RNAseq. Here, TNFα but not LPS caused a robust increase of chemokines, including CXCL1, CXCL2, CXCL8, CCL5, and CCL20 in HSC2 cells. Polymerase chain reaction confirmed the increased expression of the respective chemokines in cells exposed to TNFα and IL-1β. Under these conditions, EMD reduced the expression of all chemokines at the transcriptional level and CXCL8 by immunoassay. The TGF-β receptor type I kinase-inhibitor SB431542 reversed the anti-inflammatory activity. Moreover, EMD-activated TGF-β-canonical signaling was visualized by phosphorylation of smad3 and nuclear translocation of smad2/3 in HSC2 cells and blocked by SB431542. This observation was confirmed with primary oral epithelial cells where EMD significantly lowered the SB431542-dependent expression of CXCL8. In summary, our findings suggest that TGF-β signaling mediates the effects of EMD to lower the forced expression of chemokines in oral epithelial cells.
牙周炎患者的上皮细胞越来越多地表达趋化因子,表明它们积极参与炎症过程。釉基质衍生物(EMD)是一种从猪胎儿牙胚中提取的物质,临床上用于支持牙周组织的再生。牙周组织再生可能受益于EMD对上皮细胞潜在的抗炎活性。因此,我们的目标是建立一种生物测定法,在HSC2口腔鳞状癌细胞系中引发趋化因子表达,然后测试EMD降低炎症反应的能力。为建立该生物测定法,将暴露于()或()的TNFα和LPS的HSC2细胞进行RNA测序。在这里,TNFα而非LPS导致HSC2细胞中趋化因子(包括CXCL1、CXCL2、CXCL8、CCL5和CCL20)的大量增加。聚合酶链反应证实了暴露于TNFα和IL-1β的细胞中相应趋化因子的表达增加。在这些条件下,EMD在转录水平降低了所有趋化因子的表达,并通过免疫测定降低了CXCL8的表达。I型TGF-β受体激酶抑制剂SB431542逆转了抗炎活性。此外,通过HSC2细胞中smad3的磷酸化和smad2/3的核转位可视化了EMD激活的TGF-β经典信号传导,并被SB431542阻断。在原代口腔上皮细胞中也证实了这一观察结果,其中EMD显著降低了CXCL8的SB431542依赖性表达。总之,我们的研究结果表明,TGF-β信号传导介导了EMD降低口腔上皮细胞中趋化因子强制表达的作用。