Our previous studies have confirmed that the excessive activation of receptor activator of nuclear factor-kappaB ligand (RANKL) combined with RANK of osteoclasts surface was accelerated periodontal bone resorption process. Application of antibody blocking RANKL in vivo study, it can be significantly improved by Th1 cells mediated periodontal bone resorption; our further study found that the activation of Treg cells decreased the expression of Th17 cells in the periodontal tissues, and periodontal inflammation reduced. Therefore, Treg cells may interfere with Th17 cells or osteoblasts express RANKL by modulating the RANK-RANKL signaling pathway and inhibiting periodontitis. So far have been no reports that the mechanism of whether Treg cells could regulate the downstream signaling pathways of RANKL to inhibit bone resorption. The project intends to make animal models of P.g-induced periodontitis, with the dynamics changes of Tregs and RANKL in development process of periodontitis as a starting point, and then we will take advantage of Rag2-/- mice to discuss that the Foxp3+Helios+Tregs modulate RANKL in characteristic of immune responses. Especially, we will reveal the specific mechanisms and signaling pathways of Foxp3+Treg cell regulation of RANKL from the whole - the oral microenvironment - the cellular level in the development and progression of periodontal disease. Finally, we are eager to provide for the exact targets of the effective prevention and treatment of periodontal disease.
我们前期研究证实RANKL过度活化后与破骨细胞表面的RANK结合加速了牙周炎骨吸收的进程。应用RANKL抗体封闭体内RANKL,可明显改善由Th1细胞介导的牙周骨吸收;进一步研究发现Treg细胞活化后牙周组织Th17细胞表达降低,牙周炎症减轻。提示Treg细胞可能通过调节RANK-RANKL信号通路干预Th17细胞或成骨细胞表达RANKL,从而抑制牙周骨吸收。Treg细胞是否通过调控RANKL下游信号通路抑制骨吸收的作用机制迄今未见报道。本项目拟制备P.g诱导的牙周炎动物模型,以牙周炎发展进程中Treg细胞和RANKL的动态变化为切入点,利用Rag2-/-基因缺陷小鼠探讨Foxp3+Helios+Tregs介导RANKL的免疫应答特点,特别是从整体-口腔微环境-细胞层次揭示其发生、发展过程中Foxp3+Treg细胞调控RANKL的具体机制及信号传导途径,渴望为有效防治牙周炎提供确切靶点。
我们前期研究证实RANKL过度活化后与破骨细胞表面的RANK结合加速了牙周炎骨吸收的进程。应用RANKL抗体封闭体内RANKL,可明显改善由Th1细胞介导的牙周骨吸收;进一步研究发现Treg细胞活化后牙周组织Th17细胞表达降低,牙周炎症减轻。主要研究内容:1.制备P.g诱导的牙周炎动物模型;2.以牙周炎发展进程中B细胞及其亚群和Treg细胞表达RANKL的动态变化为切入点;3.利用过继回输小鼠探讨B细胞和Tregs介导RANKL的免疫应答特点。.研究结果:1).RANKL在牙周炎时主要来源是T、B细胞。2).所有淋巴细胞亚群培养基中均可检测到sRANKL。健康状态下,B细胞与T细胞分泌sRANKL能力接近。3).淋巴细胞及B细胞不同亚群所分泌的可溶性RANKL均具有诱导破骨细胞分化的能力。4).CD8+Tregs通过调节Treg/Th17的平衡减少骨诱裂的发生,维持牙周局部组织稳态。5).记忆性B细胞在体外通过RANKL依赖的方式诱导骨诱裂的发生。本项目在进一步阐述Treg细胞调控牙周炎骨免疫的同时,进一步探究记忆B细胞与牙周骨免疫的作用机制,并分析其可能的作用途径,明确B细胞参与牙周骨免疫的效应、可能机制及功能性亚群,从而为后续研究提供理论支持。
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数据更新时间:2023-05-31
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