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黄腐酚:对机械刺激的牙周膜干细胞的抗炎作用

Xanthohumol: Anti-Inflammatory Effects in Mechanically Stimulated Periodontal Ligament Stem Cells.

作者信息

Niederau Christian, Tolba René H, Jankowski Joachim, Marx Nikolaus, Wolf Michael, Craveiro Rogerio Bastos

机构信息

Department of Orthodontics, Medical Faculty, RWTH-Aachen University, 52074 Aachen, Germany.

Institute for Laboratory Animal Science and Experimental Surgery, Medical Faculty, RWTH-Aachen University, 52074 Aachen, Germany.

出版信息

Biomedicines. 2024 Nov 25;12(12):2688. doi: 10.3390/biomedicines12122688.

Abstract

BACKGROUND/OBJECTIVES: Initial sterile inflammation is an essential molecular process in the periodontium during orthodontic tooth movement. A better understanding and possible modulations of these processes are of great interest to develop individual therapies for special patient groups. The prenylated plant polyphenol xanthohumol (XN) could have modulating effects as it has shown anti-inflammatory and angiogenesis-inhibiting effects in various cell lines. This study investigated the anti-inflammatory properties of XN in an in vitro model of compressively stimulated human periodontal ligament stem cells (hPDLSCs), which have a different function in the periodontium than the previously used cementoblasts.

METHODS

The expression of inflammatory markers at the mRNA and protein levels and the regulation of central kinases were investigated.

RESULTS

XN showed a dose-dependent influence on cell viability. Low concentrations between 0.2 and 4 µM showed positive effects, while 8 µM caused a significant decrease in viability after 24 h. Mechanical stimulation induced an upregulation of pro-inflammatory gene (IL-6, COX2) and protein (IL-6) expression. Here, XN significantly reduced stimulation-related IL-6 mRNA and gene expression. Furthermore, the phosphorylation of AKT and ERK was upregulated by mechanical stimulation, and XN re-established phosphorylation at a level similar to the control.

CONCLUSIONS

We demonstrated a selective anti-inflammatory effect of XN in hPDLSCs. These findings provide the basis for further investigation of XN in the modulation of inflammatory responses in orthodontic therapy and the treatment of periodontal inflammation.

摘要

背景/目的:初始无菌性炎症是正畸牙齿移动过程中牙周组织的一个重要分子过程。更好地理解和可能调控这些过程对于为特殊患者群体开发个性化治疗方法具有重要意义。异戊烯基化植物多酚黄腐酚(XN)可能具有调节作用,因为它在多种细胞系中已显示出抗炎和抑制血管生成的作用。本研究在体外压缩刺激人牙周膜干细胞(hPDLSCs)模型中研究了XN的抗炎特性,hPDLSCs在牙周组织中的功能与先前使用的成牙骨质细胞不同。

方法

研究了炎症标志物在mRNA和蛋白质水平的表达以及中心激酶的调控。

结果

XN对细胞活力有剂量依赖性影响。0.2至4μM的低浓度显示出积极作用,而8μM在24小时后导致活力显著下降。机械刺激诱导促炎基因(IL-6、COX2)和蛋白质(IL-6)表达上调。在此,XN显著降低了刺激相关的IL-6 mRNA和基因表达。此外,机械刺激上调了AKT和ERK的磷酸化,XN将磷酸化水平恢复到与对照相似的水平。

结论

我们证明了XN在hPDLSCs中具有选择性抗炎作用。这些发现为进一步研究XN在正畸治疗中炎症反应的调节和牙周炎治疗中的应用提供了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d107/11727643/f96dfb5cafac/biomedicines-12-02688-g001.jpg

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