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Periodontal Stem Cells Synthesize Maresin Conjugate in Tissue Regeneration 3

机译:牙周干细胞在组织再生中合成 Maresin 偶联物 3

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摘要

Periodontal disease is a significant public health problem worldwide. Excess unresolved chronic inflammation destroys the periodontal tissues that surround and support the teeth, and efforts to control inflammation by removal of bacterial deposits on the teeth have limited long-term impact. Likewise, procedures aimed at regeneration of the periodontal tissues have shown limited success. Recent advances in stem cell research have shown promising novel prospects for the use of periodontal ligament stem cells (PDLSCs) in tissue regeneration; however, control of inflammation remains a barrier. Human PDLSCs have been shown to release specialized proresolving lipid mediators (SPMs) that modulate the immune response and promote resolution of inflammation, tissue repair, and regeneration. Studies on stem cell biology in periodontology have also been limited by the lack of a good large animal model. Herein, we describe PDLSC biology of the Yorkshire pig (pPDLSCs). pPDLSCs were isolated and characterized. Using lipid mediator profiling, we demonstrate for the first time that pPDLSCs biosynthesize cysteinyl-containing SPMs (cys-SPMs), specifically, maresin conjugates in tissue regeneration 3 (MCTR3) and its authentication using liquid chromatography/tandem mass spectrometry. The exogenous addition of the n-3 precursor docosahexaenoic acid enhances MCTR3 biosynthesis. Using immunocytochemistry, we show that pPDLSCs express 4 of the SPM biosynthetic pathway enzymes necessary for SPM biosynthesis, including 5-lipoxygenase, 12-lipoxygenase, and 15-lipoxygenase-1. In addition, we identified and quantified the cytokine/chemokine profile of pPDLSCs using a 13-plex immunology multiplex assay and found that the pretreatment of pPDLSCs with MCTR3 in an inflammatory environment reduced the production of acute and chronic proinflammatory cytokines/chemokines. Together, these results suggest that enhancing resolution of inflammation pathways and mediators may be a possible key early event in predictable periodontal regeneration.
机译:牙周病是世界范围内的一个重大公共卫生问题。过度未解决的慢性炎症会破坏围绕和支撑牙齿的牙周组织,通过清除牙齿上的细菌沉积物来控制炎症的努力对长期影响有限。同样,旨在牙周组织再生的手术也显示出有限的成功。干细胞研究的最新进展表明,牙周韧带干细胞 (PDLSC) 在组织再生中的应用前景广阔;然而,控制炎症仍然是一个障碍。人 PDLSCs 已被证明可以释放专门的促分解脂质介质 (SPM),调节免疫反应并促进炎症消退、组织修复和再生。牙周病学中干细胞生物学的研究也因缺乏良好的大型动物模型而受到限制。在此,我们描述了约克夏猪 (pPDLSCs) 的 PDLSC 生物学。分离并表征 pPDLSCs。使用脂质介质分析,我们首次证明 pPDLSCs 生物合成含半胱氨酰的 SPM (cys-SPM),特别是组织再生 3 (MCTR3) 中的浆树脂偶联物及其使用液相色谱/串联质谱法进行鉴定。n-3 前体二十二碳六烯酸的外源添加增强了 MCTR3 的生物合成。使用免疫细胞化学,我们表明 pPDLSCs 表达 SPM 生物合成所需的 4 种 SPM 生物合成途径酶,包括 5-脂氧合酶、12-脂氧合酶和 15-脂氧合酶-1。此外,我们使用 13 重免疫学多重测定鉴定并量化了 pPDLSCs 的细胞因子/趋化因子谱,发现在炎症环境中用 MCTR3 预处理 pPDLSCs 减少了急性和慢性促炎细胞因子/趋化因子的产生。总之,这些结果表明,增强炎症途径和介质的消退可能是可预测牙周再生的一个可能的关键早期事件。

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