牙周纤维
Wnt信号通路
免疫组织化学
牙骨质
生物
病理
上皮
细胞生物学
组织学
表型
成牙骨质细胞
谱系(遗传)
解剖
细胞分化
信使核糖核酸
细胞
牙齿萌出
冰冻切片程序
丹麦克朗
牙周组织
原位杂交
炎症
韧带
伤口愈合
基质(化学分析)
旁分泌信号
作者
Bo Liu,Florian Hermans,Fabiana Aellos,Julia S. Dworan,Ellen T. Chang,A. Clavelier,N. Ranjith,S.A. Millan,Molouk Torabi,Ivo Lambrichts,Jill A. Helms
标识
DOI:10.1177/00220345251397858
摘要
Once considered vestigial structures, epithelial rests of Malassez (ERMs) have recently been implicated in periodontal repair, largely based on their location in the periodontal ligament space, adjacent to damaged tissues. This study decodes what ERM activation entails and then tests in a variety of periodontal injury models the consequences of injury activation on ERM behavior and function. A Wnt lineage tracer strain Axin2CreERT2/+;R26RmTmG/+ was employed to map the distribution of Wnt-responsive cells and their descendants during root development and in response to injuries to the periodontium. Injury-activated murine ERMs were compared against developmental ERMs, and both were analyzed by histology and immunohistochemistry (IHC). Additionally, ERMs isolated from human tissues were analyzed by single-cell RNA sequencing and IHC. During root development, ERMs were surrounded by Wnt-responsive cells and their progeny. In response to injury, both the number and size of ERMs significantly increased, and this injury-induced enlargement did not involve cell proliferation. The injury-activated state of ERMs was accompanied by expression of Wnt pathway components. Compared to ERMs in uninjured tissues, injury-activated ERMs exhibited a shift toward expression of molecular markers associated with the epithelial-to-mesenchymal transition (EMT). When ERMs were juxtaposed to an injured junctional epithelium (JE) or damaged cementum, some ERM cells adopted a stellate morphology, exhibited evidence of matrix remodeling, and showed a loss of cell-cell adhesion, contributing to the repair of cementum and the JE. A dynamic state of Wnt responsiveness exists in injury-activated ERMs, and a subset of ERM cells undergo EMT. Together, these findings raise the possibility that cells in and around these activated ERMs may adopt an active role in periodontal repair.
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