Weng Yuteng, Wang Haicheng, Li Lin, Feng Yanhuizhi, Xu Shuyu, Wang Zuolin
Department of Implantology, School and Hospital of Stomatology, Tongji University, Shanghai Engineering Research Center of Tooth Restoration and Regeneration, Shanghai, China.
Department of Implantology, School and Hospital of Stomatology, Tongji University, Shanghai Engineering Research Center of Tooth Restoration and Regeneration, Shanghai, China.
Redox Biol. 2021 Apr;40:101849. doi: 10.1016/j.redox.2020.101849. Epub 2020 Dec 28.
Periodontitis is the sixth most prevalent diseases around the globe, which is closely related to many systemic diseases and affects general health. As the leading cause of tooth loss, periodontitis is characterized by irreversible alveolar bone loss and activated osteoclastogenic process, which might be closely related to the activated intracellular reactive oxygen species (ROS) in osteoclasts. Here, we demonstrated triggering receptor expressed on myeloid cells 2 (Trem2) as a key regulator of osteoclastogenesis with the regulation of intracellular ROS signals in periodontitis. In the present study, the expression of Trem2 was significantly upregulated in human alveolar bones diagnosed with chronic periodontitis, as assessed by RNA-seq. In the mice model of periodontitis, the alveolar bone resorption was impeded in the presence of the conditional knockout of Trem2 in osteoclasts. Furthermore, we identified Trem2/DAP12/Syk-dependent cascade as a vital intracellular signaling for the amplification of reactive oxygen species (ROS) signals in osteoclastogenesis, while the accumulation of soluble Aβ oligomers (Aβo) in periodontitis microenvironment further strengthened the signals and enhanced osteoclastogenesis through direct interactions with Trem2. Collectively, Trem2 mediated ROS signal amplification cascade was crucial in the process of osteoclastogenesis in periodontitis, suggesting the potential of Trem2 as a target for the prevention and treatment of bone destruction in periodontitis.
牙周炎是全球第六大最常见疾病,它与许多全身性疾病密切相关并影响整体健康。作为牙齿缺失的主要原因,牙周炎的特征是不可逆的牙槽骨丧失和破骨细胞生成过程的激活,这可能与破骨细胞内活性氧(ROS)的激活密切相关。在此,我们证明了髓系细胞2(Trem2)上表达的触发受体是牙周炎中破骨细胞生成的关键调节因子,它可调节细胞内ROS信号。在本研究中,通过RNA测序评估发现,在诊断为慢性牙周炎的人牙槽骨中,Trem2的表达显著上调。在牙周炎小鼠模型中,破骨细胞中Trem2条件性敲除会阻碍牙槽骨吸收。此外,我们确定Trem2/DAP12/Syk依赖性级联是破骨细胞生成中活性氧(ROS)信号放大的重要细胞内信号,而牙周炎微环境中可溶性Aβ寡聚体(Aβo)的积累通过与Trem2的直接相互作用进一步增强了信号并增强了破骨细胞生成。总体而言,Trem2介导的ROS信号放大级联在牙周炎破骨细胞生成过程中至关重要,这表明Trem2作为预防和治疗牙周炎骨破坏靶点的潜力。