4.7 Article

Exosomes from embryonic mesenchymal stem cells alleviate osteoarthritis through balancing synthesis and degradation of cartilage extracellular matrix

期刊

STEM CELL RESEARCH & THERAPY
卷 8, 期 -, 页码 -

出版社

BMC
DOI: 10.1186/s13287-017-0632-0

关键词

ESC; MSCs; Exosomes; Osteoarthritis

资金

  1. National High Technology Research and Development Program of China [2015AA020302]
  2. National Key Scientific Program [2017YFA0104900]
  3. National Natural Science Foundation of China [81330041, 31200739, 31470948, 81401857]
  4. Science and Technology Department Program of Zhejiang Province [2013C33156]
  5. Key Scientific and Technological Innovation Team of Zhejiang Province [2013TD11]
  6. Technology Development Project from Science Technology and Innovation Committee of Shenzhen Municipality [CXZZ20130320172336579]
  7. China Scholarship Council
  8. Fundamental Research Funds for the Central Universities

向作者/读者索取更多资源

Background: Mesenchymal stem cell therapy for osteoarthritis (OA) has been widely investigated, but the mechanisms are still unclear. Exosomes that serve as carriers of genetic information have been implicated in many diseases and are known to participate in many physiological processes. Here, we investigate the therapeutic potential of exosomes from human embryonic stem cell-induced mesenchymal stem cells (ESC-MSCs) in alleviating osteoarthritis (OA). Methods: Exosomes were harvested from conditioned culture media of ESC-MSCs by a sequential centrifugation process. Primary mouse chondrocytes treated with interleukin 1 beta (IL-1 beta) were used as an in vitro model to evaluate the effects of the conditioned medium with or without exosomes and titrated doses of isolated exosomes for 48 hours, prior to immunocytochemistry or western blot analysis. Destabilization of the medial meniscus (DMM) surgery was performed on the knee joints of C57BL/6 J mice as an OA model. This was followed by intra-articular injection of either ESC-MSCs or their exosomes. Cartilage destruction and matrix degradation were evaluated with histological staining and OARSI scores at the post-surgery 8 weeks. Results: We found that intra-articular injection of ESC-MSCs alleviated cartilage destruction and matrix degradation in the DMM model. Further in vitro studies illustrated that this effect was exerted through ESC-MSC-derived exosomes. These exosomes maintained the chondrocyte phenotype by increasing collagen type II synthesis and decreasing ADAMTS5 expression in the presence of IL-1 beta. Immunocytochemistry revealed colocalization of the exosomes and collagen type II-positive chondrocytes. Subsequent intra-articular injection of exosomes derived from ESC-MSCs successfully impeded cartilage destruction in the DMM model. Conclusions: The exosomes from ESC-MSCs exert a beneficial therapeutic effect on OA by balancing the synthesis and degradation of chondrocyte extracellular matrix (ECM), which in turn provides a new target for OA drug and drug-delivery system development.

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