Effect of human periodontal ligament stem cell-derived exosomes on cementoblast activity

被引:6
|
作者
Li, Shengnan [1 ]
Guan, Xiuchen [1 ]
Yu, Wenting [1 ]
Zhao, Zeqing [1 ]
Sun, Yaxi [1 ]
Bai, Yuxing [1 ,2 ]
机构
[1] Capital Med Univ, Beijing Stomatol Hosp, Sch Stomatol, Dept Orthodont, Beijing, Peoples R China
[2] Capital Med Univ, Beijing Stomatol Hosp, Sch Stomatol, Dept Orthodont, 4 Tiantanxili, Beijing 100050, Peoples R China
基金
中国国家自然科学基金;
关键词
cementogenesis; exosomes; human periodontal ligament stem cells; mineralization; PI3K; AKT pathway; CEMENTUM ATTACHMENT PROTEIN; INFLAMMATORY ROOT RESORPTION; ORTHODONTIC TREATMENT; OSTEOGENIC DIFFERENTIATION; TISSUE; BONE; REPAIR; CEMENTOGENESIS; FORCES;
D O I
10.1111/odi.14671
中图分类号
R78 [口腔科学];
学科分类号
1003 ;
摘要
Objectives: Exosomes derived from stem cells are a potential cell-free tool for tissue regeneration with therapeutic potential. However, its application in cementum repair is unclear. This study aimed to investigate the effect of human periodontal ligament stem cell-derived exosomes on the biological activity of cementoblasts, the main effector cells in cementum synthesis.Materials and Methods: OCCM-30 cementoblasts were cultured with various human periodontal ligament stem cell-derived exosome concentrations. OCCM-30 cells proliferation, migration, and cementogenic mineralization were examined, along with the gene and protein expression of factors associated with cementoblastic mineralization.Results: Exosomal promoted the migration, proliferation, and mineralization of OCCM-30 cells. The exosome-treated group significantly increased the expression of cementogenic-related genes and proteins. Furthermore, the expression of p-PI3K and p-AKT was enhanced by exosome administration. Treatment with a PI3K/AKT inhibitor markedly attenuated the gene and protein expression of cementoblastic factors, and this effect was partially reversed by exosome administration.Conclusions: Human periodontal ligament stem cell-derived exosomes can promote the activity of cementoblasts via the PI3K/AKT signaling pathway, providing a scientific basis for promoting the repair process in orthodontically induced inflammatory root resorption.
引用
收藏
页码:2511 / 2522
页数:12
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