LepR-expressing cells are a critical population in periodontal healing post periodontitis

Wnt信号通路 牙周纤维 牙周炎 牙骨质 人口 再生(生物学) 小干扰RNA 细胞生物学 下调和上调 炎症 免疫学 医学 生物 病理 内科学 细胞培养 转染 信号转导 牙科 基因 生物化学 环境卫生 遗传学 牙本质
作者
Chunmei Xu,Xudong Xie,Peilei Shi,Kun Xue,Li Yue,Yafei Wu,Jun Wang
出处
期刊:Journal of Bone and Mineral Research [Oxford University Press]
卷期号:39 (1): 59-72 被引量:3
标识
DOI:10.1093/jbmr/zjad008
摘要

Abstract Identification of promising seed cells plays a pivotal role in achieving tissue regeneration. This study demonstrated that LepR-expressing cells (LepR+ cells) are required for maintaining periodontal homeostasis at the adult stage. We further investigated how LepR+ cells behave in periodontal healing using a ligature-induced periodontitis (PD) and a self-healing murine model with LepRCre/+; R26RtdTomato/+ mice. Lineage tracing experiments revealed that the largely suppressed osteogenic ability of LepR+ cells results from periodontal inflammation. Periodontal defects were partially recovered when the ligature was removed, in which the osteogenic differentiation of LepR+ cell lineage was promoted and contributed to the newly formed alveolar bone. A cell ablation model established with LepRCre/+; R26RtdTomato/+; R26RDTA/+ mice further proved that LepR+ cells are an important cell source of newly formed alveolar bone. Expressions of β-catenin and LEF1 in LepR+ cells were upregulated when the inflammatory stimuli were removed, which are consistent with the functional changes observed during periodontal healing. Furthermore, the conditional upregulation of WNT signaling or the application of sclerostin neutralized antibody promoted the osteogenic function of LepR+ cells. In contrast, the specific knockdown of β-catenin in LepR+ human periodontal ligament cells with small interfering RNA caused arrested osteogenic function. Our findings identified the LepR+ cell lineage as a critical cell population for endogenous periodontal healing post PD, which is regulated by the WNT signaling pathway, making it a promising seed cell population in periodontal tissue regeneration.
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