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首页> 外文期刊>Journal of periodontal research >Chitosan‐triclosan particles modulate inflammatory signaling in gingival fibroblasts
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Chitosan‐triclosan particles modulate inflammatory signaling in gingival fibroblasts

机译:壳聚糖三胞嘧啶颗粒调节牙龈成纤维细胞中的炎症信号

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摘要

Background and Objectives An important goal of periodontal therapy is the modulation of the inflammatory response. To this end, several pharmacological agents have been evaluated. Triclosan corresponds to an antibacterial and anti‐inflammatory agent currently used in periodontal therapy. Chitosan is a natural polymer that may act as a drug delivery agent and exerts antibacterial and anti‐inflammatory activities. Therefore, an association between both molecules might be useful to prevent inflammation and tissue destruction in periodontal tissues. Material and Methods In the present study, we have generated chitosan‐triclosan particles and evaluated their morphology, charge, biocompatibility and gene expression analysis in human gingival fibroblasts. Results The chitosan‐triclosan particles size and Z potential were 129?±?47?nm and 51?±?17? mV respectively. Human gingival fibroblast viability was not affected by chitosan‐triclosan. A total of 1533 genes were upregulated by interleukin ( IL) ‐1β. On the other hand, 943 were downregulated in fibroblasts stimulated with IL ‐1β plus chitosan‐triclosan particles. Fifty‐one genes were identified as molecular targets upregulated by IL ‐1 β and downregulated by the chitosan‐triclosan particles. The gene ontology analysis revealed that these genes were enriched in categories related to biological processes, molecular function and cellular components. Furthermore, using real‐time reverse transcription‐polymerase chain reaction beta‐actin , fibronectin , interleukin‐6 and IL‐1b genes were confirmed as targets upregulated by IL ‐1β and downregulated by chitosan‐triclosan particles. Conclusion Our results show that chitosan‐triclosan particles are able to modulate the inflammatory response in gingival fibroblasts. This effect might be useful in the prevention and/or treatment of inflammation in periodontal diseases.
机译:背景和目标牙周治疗的重要目标是调节炎症反应。为此,已经评估了几种药理学试剂。三胞苷对应于目前用于牙周治疗的抗菌和抗炎剂。壳聚糖是一种天然聚合物,可作为药物递送剂,并施加抗菌和抗炎活动。因此,两种分子之间的关联可能有助于防止牙周组织中的炎症和组织破坏。在本研究中的材料和方法,我们已经产生了壳聚糖 - 三胞嘧啶颗粒,并评估了人牙龈成纤维细胞中的形态,电荷,生物相容性和基因表达分析。结果壳聚糖 - 三胞嘧啶颗粒尺寸和Z电位为129≤x≤47?nm和51?±17?分别为mv。人的牙龈成纤维细胞活力不受壳聚糖 - 三胞苷的影响。白细胞介素(IL)-1β共升高了总共1533个基因。另一方面,在用IL-1β加上壳聚糖 - 三胞嘧啶颗粒刺激的成纤维细胞中下调943。将五十一基因鉴定为通过IL-1β上调的分子靶标,并通过壳聚糖 - 三胞嘧啶颗粒下调。基因本体学分析显示,这些基因富含与生物过程,分子功能和细胞组分相关的类别。此外,使用实时逆转录聚合酶链反应β-肌动蛋白,纤连蛋白,白细胞介素-6和IL-1b基因被证实为通过IL-1β上调的靶标,并通过壳聚糖 - 三氯烷颗粒下调。结论我们的研究结果表明,壳聚糖 - 三氯烷颗粒能够调节牙龈成纤维细胞中的炎症反应。这种效果可能在牙周病中的预防和/或治疗牙周病中的炎症。

著录项

  • 来源
    《Journal of periodontal research》 |2018年第2期|共8页
  • 作者单位

    Laboratory of Molecular Biology Institute of Nutrition and TechnologyUniversity of ChileSantiago;

    Laboratory of Cell Biology Institute of Nutrition and Food TechnologyUniversity of ChileSantiago;

    Laboratory of Molecular Biology Institute of Nutrition and TechnologyUniversity of ChileSantiago;

    Dentistry Faculty of MedicinePontificia Universidad Católica de ChileSantiago RM Chile;

    Dentistry Faculty of MedicinePontificia Universidad Católica de ChileSantiago RM Chile;

    Faculty of Chemical and Pharmaceutical SciencesUniversity of ChileSantiago RM Chile;

    Department of Sciences Chemistry SectionPontificia Universidad Católica del PeruLima Peru;

    Laboratory of Molecular Biology Institute of Nutrition and TechnologyUniversity of ChileSantiago;

    Laboratory of Cell Biology Institute of Nutrition and Food TechnologyUniversity of ChileSantiago;

    Dentistry Faculty of MedicinePontificia Universidad Católica de ChileSantiago RM Chile;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 口腔科学;
  • 关键词

    chitosan; fibroblasts; periodontal diseases; triclosan;

    机译:壳聚糖;成纤维细胞;牙周病;TRICLOSAN;

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