Apoptotic Vesicles Regulate Bone Metabolism via the miR1324/SNX14/SMAD1/5 Signaling Axis

被引:18
|
作者
Zhu, Yuan [1 ,3 ]
Yang, Kunkun [1 ]
Cheng, Yawen [1 ]
Liu, Yaoshan [1 ]
Gu, Ranli [1 ]
Liu, Xuenan [1 ]
Liu, Hao [2 ]
Zhang, Xiao [1 ,3 ]
Liu, Yunsong [1 ,3 ]
机构
[1] Peking Univ, Sch & Hosp Stomatol, Dept Prosthodont, 22 Zhongguancun South Ave, Beijing 100081, Peoples R China
[2] Peking Univ, Sch & Hosp Stomatol, Cent Lab, 22 Zhongguancun South Ave, Beijing 100081, Peoples R China
[3] Peking Univ, Sch & Hosp Stomatol, Natl Clin Res Ctr Oral Dis, Natl Ctr Stomatol,Natl Lab Digital & Mat Technol S, Beijing 100081, Peoples R China
基金
北京市自然科学基金; 中国国家自然科学基金;
关键词
apoptotic vesicles; bone metabolism; cell-free therapy; miR1324; SNX14; SMAD1; 5 signaling axis; MESENCHYMAL STEM-CELLS; EXTRACELLULAR VESICLES; HEPATOCELLULAR-CARCINOMA; FATE COMMITMENT; TISSUE; DIFFERENTIATION; DELIVERY; ROLES; REGENERATION; HOMEOSTASIS;
D O I
10.1002/smll.202205813
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Mesenchymal stem cells (MSCs) are widely used in the treatment of diseases. After their in vivo application, MSCs undergo apoptosis and release apoptotic vesicles (apoVs). This study investigates the role of apoVs derived from human bone marrow mesenchymal stem cells (hBMMSCs) in bone metabolism and the molecular mechanism of the observed effects. The results show that apoVs can promote osteogenesis and inhibit osteoclast formation in vitro and in vivo. ApoVs may therefore attenuate the bone loss caused by primary and secondary osteoporosis and stimulate bone regeneration in areas of bone defect. The mechanisms responsible for apoV-induced bone regeneration include the release of miR1324, which inhibit expression of the target gene Sorting Nexin 14 (SNX14) and thus activate the SMAD1/5 pathway in target cells. Given that MSC-derived apoVs are easily obtained and stored, with low risks of immunological rejection and neoplastic transformation, The findings suggest a novel therapeutic strategy to treat bone loss, including via cell-free approaches to bone tissue engineering.
引用
收藏
页数:16
相关论文
共 17 条
  • [1] SMAD1/5 signaling in osteoclasts regulates bone formation via coupling factors
    Tasca, Amy
    Astleford, Kristina
    Blixt, Nicholas C.
    Jensen, Eric D.
    Gopalakrishnan, Rajaram
    Mansky, Kim C.
    PLOS ONE, 2018, 13 (09):
  • [2] Bone morphogenetic protein induces bone invasion of melanoma by epithelial-mesenchymal transition via the Smad1/5 signaling pathway
    Gao, Jing
    Muroya, Ryusuke
    Huang, Fei
    Nagata, Kengo
    Shin, Masashi
    Nagano, Ryoko
    Tajiri, Yudai
    Fujii, Shinsuke
    Yamaza, Takayoshi
    Aoki, Kazuhiro
    Tamura, Yukihiko
    Inoue, Mayuko
    Chishaki, Sakura
    Kukita, Toshio
    Okabe, Koji
    Matsuda, Miho
    Mori, Yoshihide
    Kiyoshima, Tamotsu
    Jimi, Eijiro
    LABORATORY INVESTIGATION, 2021, 101 (11) : 1475 - 1483
  • [3] Cerium promotes bone marrow stromal cells migration and osteogenic differentiation via Smad1/5/8 signaling pathway
    Hu, Ying
    Du, Yi
    Jiang, Huan
    Jiang, Guang-Shui
    INTERNATIONAL JOURNAL OF CLINICAL AND EXPERIMENTAL PATHOLOGY, 2014, 7 (08): : 5369 - 5378
  • [4] Bone morphogenetic protein 4 promotes mammalian oogonial stem cell differentiation via Smad1/5/8 signaling
    Park, Eun-Sil
    Woods, Dori C.
    Tilly, Jonathan L.
    FERTILITY AND STERILITY, 2013, 100 (05) : 1468 - +
  • [5] MASL1 Is a Critical Modifier of Hepcidin Expression Via Smad1/5/8 Phosphorylation in the Bone Morphogenetic Protein (BMP) Signaling Pathway
    Kumkhaek, Chutima
    LaChance, Christian
    Aerbajinai, Wulin
    Zhu, Jianqiong
    Rodgers, Griffin P.
    BLOOD, 2016, 128 (22)
  • [6] Extracellular vesicles derived from neural EGFL-Like 1-modified mesenchymal stem cells improve acellular bone regeneration via the miR-25-5p-SMAD2 signaling axis
    Lan, Yanhua
    Xie, Huizhi
    Jin, Qianrui
    Zhao, Xiaomin
    Shi, Yang
    Zhou, Yanyan
    Hu, Zihe
    Ye, Yi
    Huang, Xiaoyuan
    Sun, Yingjia
    Chen, Zhuo
    Xie, Zhijian
    BIOACTIVE MATERIALS, 2022, 17 : 457 - 470
  • [7] MiR-144-5p, an exosomal miRNA from bone marrow-derived macrophage in type 2 diabetes, impairs bone fracture healing via targeting Smad1
    Zhang, Dong
    Wu, Yifan
    Li, Zonghuan
    Chen, Hairen
    Huang, Siyuan
    Jian, Chao
    Yu, Aixi
    JOURNAL OF NANOBIOTECHNOLOGY, 2021, 19 (01)
  • [8] MiR-144-5p, an exosomal miRNA from bone marrow-derived macrophage in type 2 diabetes, impairs bone fracture healing via targeting Smad1
    Dong Zhang
    Yifan Wu
    Zonghuan Li
    Hairen Chen
    Siyuan Huang
    Chao Jian
    Aixi Yu
    Journal of Nanobiotechnology, 19
  • [9] miR-765 inhibits the osteogenic differentiation of human bone marrow mesenchymal stem cells by targeting BMP6 via regulating the BMP6/Smad1/5/9 signaling pathway
    Wang, Tao
    Zhang, Chao
    Wu, Cihu
    Liu, Jianyun
    Yu, Hui
    Zhou, Xiaoou
    Zhang, Jie
    Wang, Xinping
    He, Shan
    Xu, Xiaoyuan
    Ma, Baicheng
    Che, Xiangxin
    Li, Weidong
    STEM CELL RESEARCH & THERAPY, 2020, 11 (01)
  • [10] miR-765 inhibits the osteogenic differentiation of human bone marrow mesenchymal stem cells by targeting BMP6 via regulating the BMP6/Smad1/5/9 signaling pathway
    Tao Wang
    Chao Zhang
    Cihu Wu
    Jianyun Liu
    Hui Yu
    Xiaoou Zhou
    Jie Zhang
    Xinping Wang
    Shan He
    Xiaoyuan Xu
    Baicheng Ma
    Xiangxin Che
    Weidong Li
    Stem Cell Research & Therapy, 11