Nakao Yuki, Fukuda Takao, Zhang Qunzhou, Sanui Terukazu, Shinjo Takanori, Kou Xiaoxing, Chen Chider, Liu Dawei, Watanabe Yukari, Hayashi Chikako, Yamato Hiroaki, Yotsumoto Karen, Tanaka Urara, Taketomi Takaharu, Uchiumi Takeshi, Le Anh D, Shi Songtao, Nishimura Fusanori
Department of Periodontology, Division of Oral Rehabilitation, Faculty of Dental Science, Kyushu University, Fukuoka, Japan.
Department of Periodontology, Division of Oral Rehabilitation, Faculty of Dental Science, Kyushu University, Fukuoka, Japan; Department of Anatomy and Cell Biology, University of Pennsylvania School of Dental Medicine, Philadelphia, PA, USA.
Acta Biomater. 2021 Mar 1;122:306-324. doi: 10.1016/j.actbio.2020.12.046. Epub 2020 Dec 24.
Mesenchymal stem cell (MSC)-derived exosome plays a central role in the cell-free therapeutics involving MSCs and the contents can be customized under disease-associated microenvironments. However, optimal MSC-preconditioning to enhance its therapeutic potential is largely unknown. Here, we show that preconditioning of gingival tissue-derived MSCs (GMSCs) with tumor necrosis factor-alpha (TNF-α) is ideal for the treatment of periodontitis. TNF-α stimulation not only increased the amount of exosome secreted from GMSCs, but also enhanced the exosomal expression of CD73, thereby inducing anti-inflammatory M2 macrophage polarization. The effect of GMSC-derived exosomes on inflammatory bone loss were examined by ligature-induced periodontitis model in mice. Local injection of GMSC-derived exosomes significantly reduced periodontal bone resorption and the number of tartrate-resistant acid phosphatase (TRAP)-positive osteoclasts, and these effects were further enhanced by preconditioning of GMSCs with TNF-α. Thus, GMSC-derived exosomes also exhibited anti-osteoclastogenic activity. Receptor activator of NF-κB ligand (RANKL) expression was regulated by Wnt5a in periodontal ligament cells (PDLCs), and exosomal miR-1260b was found to target Wnt5a-mediated RANKL pathway and inhibit its osteoclastogenic activity. These results indicate that significant ability of the TNF-α-preconditioned GMSC-derived exosomes to regulate inflammation and osteoclastogenesis paves the way for establishment of a therapeutic approach for periodontitis.
间充质干细胞(MSC)衍生的外泌体在涉及MSC的无细胞治疗中起着核心作用,其内容物可在疾病相关微环境下进行定制。然而,增强其治疗潜力的最佳MSC预处理方法在很大程度上尚不清楚。在此,我们表明用肿瘤坏死因子-α(TNF-α)预处理牙龈组织来源的MSC(GMSC)是治疗牙周炎的理想方法。TNF-α刺激不仅增加了GMSC分泌的外泌体数量,还增强了外泌体CD73的表达,从而诱导抗炎性M2巨噬细胞极化。通过结扎诱导的小鼠牙周炎模型研究了GMSC衍生的外泌体对炎症性骨丢失的影响。局部注射GMSC衍生的外泌体显著减少了牙周骨吸收和抗酒石酸酸性磷酸酶(TRAP)阳性破骨细胞的数量,并且通过用TNF-α预处理GMSC进一步增强了这些作用。因此,GMSC衍生的外泌体也表现出抗破骨细胞生成活性。核因子κB受体激活剂配体(RANKL)的表达在牙周膜细胞(PDLC)中受Wnt5a调节,并且发现外泌体miR-1260b靶向Wnt5a介导的RANKL途径并抑制其破骨细胞生成活性。这些结果表明,TNF-α预处理的GMSC衍生的外泌体具有显著的调节炎症和破骨细胞生成的能力,为建立牙周炎的治疗方法铺平了道路。