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Osteoclast-derived small extracellular vesicles induce osteogenic differentiation via inhibiting ARHGAP1.
Liang, Mengmeng; Yin, Xiaofan; Zhang, Shuai; Ai, Hongbo; Luo, Fei; Xu, Jianzhong; Dou, Ce; Dong, Shiwu; Ma, Qinyu.
Afiliação
  • Liang M; Department of Biomedical Materials Science, Third Military Medical University, Chongqing 400038, China.
  • Yin X; College of Pastoral Agriculture Science and Technology, Lanzhou University, Lanzhou, 730000, China.
  • Zhang S; Department of Orthopedics, Southwest Hospital, Third Military Medical University, Chongqing 400038, China.
  • Ai H; Department of Orthopedics, Southwest Hospital, Third Military Medical University, Chongqing 400038, China.
  • Luo F; Department of Orthopedics, Southwest Hospital, Third Military Medical University, Chongqing 400038, China.
  • Xu J; Department of Orthopedics, Southwest Hospital, Third Military Medical University, Chongqing 400038, China.
  • Dou C; Department of Orthopedics, Southwest Hospital, Third Military Medical University, Chongqing 400038, China.
  • Dong S; Department of Biomedical Materials Science, Third Military Medical University, Chongqing 400038, China.
  • Ma Q; Department of Biomedical Materials Science, Third Military Medical University, Chongqing 400038, China.
Mol Ther Nucleic Acids ; 23: 1191-1203, 2021 Mar 05.
Article em En | MEDLINE | ID: mdl-33664997
ABSTRACT
Activated osteoclasts release large amounts of small extracellular vesicles (sEVs) during bone remodeling. However, little is known about whether osteoclast-derived sEVs affect surrounding cells. In this study, osteoclasts were generated by stimulating bone marrow macrophages (BMMs) with macrophage colony stimulating factor (M-CSF) and receptor activator of nuclear actor κB ligand (RANKL). We performed microarray analysis of sEV-microRNAs (miRNAs)s secreted from osteoclast at different stages and identified four miRNAs that were highly expressed in mature osteoclast-derived sEVs. One of these miRNAs, miR-324, significantly induced osteogenic differentiation and mineralization of primary mesenchymal stem cells (MSCs) in vitro by targeting ARHGAP1, a negative regulator of osteogenic differentiation. We next fabricated an sEV-modified scaffold by coating decalcified bone matrix (DBM) with osteoclast-derived sEVs, and the pro-osteogenic regeneration activities of the sEV-modified scaffold were validated in a mouse calvarial defect model. Notably, miR-324-enriched sEV-modified scaffold showed the highest capacity on bone regeneration, whereas inhibition of miR-324 in sEVs abrogated these effects. Taken together, our findings suggest that miR-324-contained sEVs released from mature osteoclast play an essential role in the regulation of osteogenic differentiation and potentially bridge the coupling between osteoclasts and MSCs.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2021 Tipo de documento: Article