Laboratory of Tissue Regeneration and Immunology and Department of Periodontics, Beijing Key Laboratory of Tooth Regeneration and Function Reconstruction, School of Stomatology, Capital Medical University, Beijing, P. R. China.
Immunology Research Center for Oral and Systemic Health, Beijing Friendship Hospital, Capital Medical University, Beijing, P. R. China.
J Periodontal Res. 2024 Jun;59(3):552-564. doi: 10.1111/jre.13233. Epub 2024 Jan 9.
The present study aimed to evaluate the effects of reuterin, a bioactive isolated from the probiotic Lactobacillus reuteri (L. reuteri) on periodontal tissue regeneration, and provide a new strategy for periodontitis treatment in the future.
Data discussing the present state of the field: Probiotics are essential for maintaining oral microecological balance. Our previous study confirmed that probiotic L. reuteri extracts could rescue the function of mesenchymal stem cells (MSCs) and promote soft tissue wound healing by neutralizing inflammatory Porphyromonas gingivalis-LPS. Periodontitis is a chronic inflammatory disease caused by bacteria seriously leading to tooth loss. In this study, we isolated and purified reuterin from an extract of L. reuteri to characterize from the extracts of L. reuteri to characterize its role in promoting periodontal tissue regeneration and controlling inflammation in periodontitis.
Chromatographic analysis was used to isolate and purify reuterin from an extract of L. reuteri, and HNMR was used to characterize its structure. The inflammatory cytokine TNFα was used to simulate the inflammatory environment. Periodontal ligament stem cells (PDLSCs) were treated with TNFα and reuterin after which their effects were characterized using scratch wound cell migration assays to determine the concentration of reuterin, an experimental periodontitis model in rats was used to investigate the function of reuterin in periodontal regeneration and inflammation control in vivo. Real-time PCR, dye transfer experiments, image analysis, alkaline phosphatase activity, Alizarin red staining, cell proliferation, RNA-sequencing and Western Blot assays were used to detect the function of PDLSCs.
In vivo, local injection of reuterin promoted periodontal tissue regeneration of experimental periodontitis in rats and reduced local inflammatory response. Moreover, we found that TNFα stimulation caused endoplasmic reticulum (ER) stress in PDLSCs, which resulted in decreased osteogenic differentiation. Treatment with reuterin inhibited the ER stress state of PDLSCs caused by the inflammatory environment and restored the osteogenic differentiation and cell proliferation functions of inflammatory PDLSCs. Mechanistically, we found that reuterin restored the functions of inflammatory PDLSCs by inhibiting the intercellular transmission of ER stress mediated by Cx43 in inflammatory PDLSCs and regulated osteogenic differentiation capacity.
Our findings identified reuterin isolated from extracts of the probiotic L. reuteri, which improves tissue regeneration and controls inflammation, thus providing a new therapeutic method for treating periodontitis.
本研究旨在评估由益生菌 Lactobacillus reuteri(L. reuteri)分离得到的活性物质雷替曲塞(reuterin)对牙周组织再生的影响,为未来的牙周炎治疗提供新策略。
探讨该领域现状的数据:益生菌对于维持口腔微生态平衡至关重要。我们之前的研究证实,益生菌 L. reuteri 提取物可以通过中和促炎牙龈卟啉单胞菌-LPS 来恢复间充质干细胞(MSCs)的功能,促进软组织伤口愈合。牙周炎是一种由细菌引起的慢性炎症性疾病,严重时可导致牙齿脱落。在这项研究中,我们从 L. reuteri 的提取物中分离和纯化了雷替曲塞,以表征其促进牙周组织再生和控制牙周炎炎症的作用。
采用色谱分析从 L. reuteri 提取物中分离和纯化雷替曲塞,并用 HNMR 对其结构进行表征。采用炎性细胞因子 TNFα 模拟炎症环境。用 TNFα 和雷替曲塞处理牙周韧带干细胞(PDLSCs)后,通过划痕实验检测细胞迁移能力来表征其作用,建立大鼠实验性牙周炎模型,研究雷替曲塞在体内的牙周再生和炎症控制功能。采用实时 PCR、染料传递实验、图像分析、碱性磷酸酶活性、茜素红染色、细胞增殖、RNA 测序和 Western Blot 检测 PDLSCs 的功能。
体内研究结果表明,雷替曲塞局部注射可促进大鼠实验性牙周炎的牙周组织再生,并减轻局部炎症反应。此外,我们发现 TNFα 刺激导致 PDLSCs 内质网(ER)应激,从而降低成骨分化。雷替曲塞处理抑制了炎性环境中 PDLSCs 的 ER 应激状态,恢复了炎性 PDLSCs 的成骨分化和细胞增殖功能。机制上,我们发现雷替曲塞通过抑制炎性 PDLSCs 中 Cx43 介导的 ER 应激的细胞间传递,恢复了炎性 PDLSCs 的功能,并调节成骨分化能力。
本研究从益生菌 L. reuteri 的提取物中分离得到雷替曲塞,该物质可改善组织再生并控制炎症,从而为治疗牙周炎提供了新的治疗方法。