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牙周病动物模型中表达的 microRNAs 的鉴定及其对病理过程的影响。

Identification of microRNAs expressed in an animal model of periodontal disease and their impact on pathological processes.

机构信息

Department of Basic Sciences, Nova Friburgo Health Institute, Fluminense Federal University, Nova Friburgo, RJ, Brazil.

Postgraduate Program in Dentistry, Nova Friburgo Health Institute, Fluminense Federal University Nova Friburgo, Nova Friburgo, RJ, Brazil.

出版信息

Tissue Cell. 2024 Oct;90:102525. doi: 10.1016/j.tice.2024.102525. Epub 2024 Aug 16.

Abstract

MicroRNAs represent a class of small RNAs that act to silence genes post-transcriptionally by inhibiting the translation of target messenger RNAs, and this study aimed to understand how miRNAs influence the set-up of periodontal disease. Periodontitis was induced by inserting a ligature into the left first mandibular molar in a rat model, which was kept for the entire 56 days-time of experiment. After 56 days post-periodontitis induction, the histopathological analysis showed an apical extension of the junctional epithelium, with areas of hyperplasia, exocytosis, and a mixed inflammatory infiltrate with a predominance of neutrophils, lymphocytes, and eventual plasma cells in the deeper layers. The cement surface showed areas of irregularity, covered by cementoblasts and irregular surfaces, confirming the set-up of periodontitis. In the sequencing analysis, 26,404 genes were identified, with 132 reaching statistical significance. Among genes with a statistical difference, 18 were found to encode for microRNAs. The identified microRNAs are primarily involved in bone remodeling by acting on fibroblast growth factors, and collagen production. These outcomes demonstrate a signaling role in bone resorption, which is consistent with the histopathological observations that show the installation of inflammation with epithelial migration and the beginning of the repair process, with cementum resorption. The disclosure of how miRNAs may influence the maintaining of periodontal disease will help the development of new dental materials for the prophylaxis and treatment of alveolar bone resorption.

摘要

微小 RNA 是一类小 RNA,通过抑制靶信使 RNA 的翻译来发挥作用,从而在后转录水平上沉默基因,本研究旨在了解微小 RNA 如何影响牙周病的发生。通过在大鼠模型的左下颌第一磨牙中插入结扎线来诱导牙周炎,实验持续 56 天。牙周炎诱导 56 天后,组织病理学分析显示连接上皮的根尖延伸,存在增生、胞吐和混合炎症浸润,以中性粒细胞、淋巴细胞为主,深层有浆细胞。牙骨质表面显示不规则区域,被成牙骨质细胞和不规则表面覆盖,证实了牙周炎的发生。在测序分析中,鉴定出 26404 个基因,其中 132 个具有统计学意义。在具有统计学差异的基因中,发现有 18 个基因编码微小 RNA。鉴定出的微小 RNA 主要通过作用于成纤维细胞生长因子和胶原蛋白的产生来参与骨重塑。这些结果表明在骨吸收中存在信号作用,这与组织病理学观察结果一致,即显示出炎症的安装、上皮迁移和修复过程的开始,以及牙骨质吸收。揭示微小 RNA 如何影响牙周病的维持将有助于开发新的牙科材料,以预防和治疗牙槽骨吸收。

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