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在牙周组织稳态的背景下,对牙龈和牙周韧带成纤维细胞中 DNA 甲基化敏感的细胞过程进行定位。

Mapping of DNA methylation-sensitive cellular processes in gingival and periodontal ligament fibroblasts in the context of periodontal tissue homeostasis.

机构信息

Department of Microbiology, Faculty of Biochemistry, Biophysics and Biotechnology, Jagiellonian University, Kraków, Poland.

Department of Periodontology, Preventive Dentistry and Oral Medicine, Faculty of Medicine, Jagiellonian University Medical College, Kraków, Poland.

出版信息

Front Immunol. 2023 Jan 26;14:1078031. doi: 10.3389/fimmu.2023.1078031. eCollection 2023.

Abstract

Interactions between gingival fibroblasts (GFs) and oral pathogens contribute to the chronicity of inflammation in periodontitis. Epigenetic changes in DNA methylation are involved in periodontitis pathogenesis, and recent studies indicate that DNA methyltransferase (DNMT) inhibitors may protect against epithelial barrier disruption and bone resorption. To assess the impact of DNMT inhibition on GFs, cells were cultured with decitabine (5-aza-2'-deoxycytidine, DAC) for 12 days to induce DNA hypomethylation. We observed several potentially detrimental effects of DAC on GF biological functions. First, extended treatment with DAC reduced GF proliferation and induced necrotic cell death. Second, DAC amplified - and cytokine-induced expression and secretion of the chemokine CCL20 and several matrix metalloproteinases (MMPs), including MMP1, MMP9, and MMP13. Similar pro-inflammatory effects of DAC were observed in periodontal ligament fibroblasts. Third, DAC upregulated intercellular adhesion molecule-1 (ICAM-1), which was associated with increased adherence to GFs and may contribute to bacterial dissemination. Finally, analysis of DAC-induced genes identified by RNA sequencing revealed increased expression of , , , , , , , and , and showed that the most affected processes were related to immune and inflammatory responses. In contrast, the genes downregulated by DAC were associated with extracellular matrix and collagen fibril organization. Our observations demonstrate that studies of DNMT inhibitors provide important insights into the role of DNA methylation in cells involved in periodontitis pathogenesis. However, the therapeutic potential of hypomethylating agents in periodontal disease may be limited due to their cytotoxic effects on fibroblast populations and stimulation of pro-inflammatory pathways.

摘要

牙龈成纤维细胞(GFs)与口腔病原体的相互作用导致牙周炎炎症的慢性化。DNA 甲基化的表观遗传变化与牙周病发病机制有关,最近的研究表明,DNA 甲基转移酶(DNMT)抑制剂可能有助于防止上皮屏障破坏和骨吸收。为了评估 DNMT 抑制对 GFs 的影响,将细胞用地西他滨(5-aza-2'-脱氧胞苷,DAC)培养 12 天以诱导 DNA 低甲基化。我们观察到 DAC 对 GF 生物学功能的几种潜在有害影响。首先,DAC 的延长处理降低了 GF 的增殖并诱导了坏死性细胞死亡。其次,DAC 放大了 - 和细胞因子诱导的趋化因子 CCL20 和几种基质金属蛋白酶(MMPs),包括 MMP1、MMP9 和 MMP13 的表达和分泌。在牙周韧带成纤维细胞中也观察到了 DAC 的类似促炎作用。第三,DAC 上调了细胞间黏附分子-1(ICAM-1),这与 GF 黏附的增加有关,可能有助于细菌传播。最后,通过 RNA 测序分析 DAC 诱导的基因,发现 、 、 、 、 、 、 和 的表达增加,并表明受影响最严重的过程与免疫和炎症反应有关。相比之下,DAC 下调的基因与细胞外基质和胶原纤维组织有关。我们的观察表明,DNMT 抑制剂的研究为 DNA 甲基化在牙周病发病机制中涉及的细胞中的作用提供了重要的见解。然而,由于低甲基化剂对成纤维细胞群体的细胞毒性作用和对促炎途径的刺激,其在牙周病中的治疗潜力可能受到限制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ed2/9909404/c6c17ee1730a/fimmu-14-1078031-g001.jpg

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