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牙髓内感觉神经元 NOD1 对牙本质细胞固有免疫的功能作用。

Functional Roles of NOD1 in Odontoblasts on Dental Pulp Innate Immunity.

机构信息

Department of Conservative Dentistry, Institute of Biomedical Sciences, Tokushima University Graduate School, 3-18-15 Kuramoto-cho, Tokushima 770-8504, Japan.

Division of Endodontics and Restorative Dentistry, Department of Oral Functions, Kyushu Dental University, 2-6-1 Manazuru, Kokura-kita, Kitakyushu, Fukuoka 803-8580, Japan.

出版信息

Biomed Res Int. 2016;2016:9325436. doi: 10.1155/2016/9325436. Epub 2016 Sep 25.

Abstract

Caries-related pathogens are first recognized by odontoblasts and induce inflammatory events that develop to pulpitis. Generally, initial sensing of microbial pathogens is mediated by pattern recognition receptors, such as Toll-like receptor and nucleotide-binding oligomerization domain (NOD); however, little is known about NODs in odontoblasts. In this study, the levels of NODs expressed in rat odontoblastic cell line, KN-3, were assessed by flow cytometry and the levels of chemokines in NOD-specific ligand-stimulated KN-3 cells were analyzed by real-time PCR and ELISA. The signal transduction pathway activated with NOD-specific ligand was assessed by blocking assay with specific inhibitors and reporter assay. In KN-3 cells, the expression level of NOD1 was stronger than that of NOD2 and the production of chemokines, such as CINC-1, CINC-2, CCL20, and MCP-1, was upregulated by stimulation with NOD1-specific ligand, but not with NOD2-specific ligand. CINC-2 and CCL20 production by stimulation with NOD1-specific ligand was reduced by p38 MAPK and AP-1 signaling inhibitors. Furthermore, the reporter assay demonstrated AP-1 activation in NOD1-specific ligand-stimulated KN-3 cells. These findings indicated that NOD1 expressed in odontoblasts functions to upregulate the chemokines expression via p38-AP-1 signaling pathway and suggested that NOD1 may play important roles in the initiation and progression of pulpitis.

摘要

龋病相关病原体首先被成牙本质细胞识别,并引发发展为牙髓炎的炎症事件。通常,微生物病原体的初始感应是由模式识别受体介导的,如 Toll 样受体和核苷酸结合寡聚化结构域 (NOD);然而,关于成牙本质细胞中的 NOD 知之甚少。在这项研究中,通过流式细胞术评估了在大鼠成牙本质细胞系 KN-3 中表达的 NODs 的水平,并通过实时 PCR 和 ELISA 分析了 NOD 特异性配体刺激的 KN-3 细胞中趋化因子的水平。通过用特异性抑制剂和报告基因测定阻断测定来评估与 NOD 特异性配体激活的信号转导途径。在 KN-3 细胞中,NOD1 的表达水平强于 NOD2,并且 NOD1 特异性配体刺激可上调趋化因子,如 CINC-1、CINC-2、CCL20 和 MCP-1 的产生,但 NOD2 特异性配体不能。NOD1 特异性配体刺激引起的 CINC-2 和 CCL20 的产生可被 p38 MAPK 和 AP-1 信号抑制剂减少。此外,报告基因测定表明 NOD1 特异性配体刺激的 KN-3 细胞中存在 AP-1 激活。这些发现表明成牙本质细胞中表达的 NOD1 通过 p38-AP-1 信号通路来上调趋化因子的表达,并表明 NOD1 可能在牙髓炎的发生和发展中发挥重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5275/5055926/7a7f42c5e277/BMRI2016-9325436.001.jpg

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