Open access · CC-BY
via OpenAlex
Exosomes derived from miR-140-5p-overexpressing human synovial mesenchymal stem cells enhance cartilage tissue regeneration and prevent osteoarthritis of the knee in a rat model
Shi‐Cong Tao, Ting Yuan, Yue-Lei Zhang, Wenjing Yin, Shang Guo, Changqing Zhang
Theranostics · 2016 · ▲ 737 citations
Stem-cell exhaustion
Altered intercellular communication
Stem-cell therapy
Cell culture / in vitro
Rat
Human
In vitro
Abstract
OBJECTIVES: Osteoarthritis (OA) is the most common joint disease throughout the world. Exosomes derived from miR-140-5p-overexpressing synovial mesenchymal stem cells (SMSC-140s) may be effective in treating OA. We hypothesized that exosomes derived from SMSC-140 (SMSC-140-Exos) would enhance the proliferation and migration abilities of articular chondrocytes (ACs) without harming extracellular matrix (ECM) secretion. METHODS: SMSCs were transfected with or without miR-140-5p. Exosomes derived from SMSCs or SMSC-140s (SMSC-Exos or SMSC-140-Exos) were isolated and identified. Proliferation, migration and ECM secretion were measured in vitro and compared between groups. The mechanism involving alternative Wnt signalling and activation of Yes-associated protein (YAP) was investigated using lentivirus, oligonucleotides or chemical drugs. The preventative effect of exosomes in vivo was measured using Safranin-O and Fast green staining and immunohistochemical staining. RESULTS: Wnt5a and Wnt5b carried by exosomes activated YAP via the alternative Wnt signalling pathway and enhanced proliferation and migration of chondrocytes with the side-effect of significantly decreasing ECM secretion. Highly-expressed miR-140-5p blocked this side-effect via RalA. SMSC-140-Exos enhanced the proliferation and migration of ACs without damaging ECM secretion in vitro, while in vivo, SMSC-140-Exos successfully prevented OA in a rat model. CONCLUSIONS: These findings highlight the promising potential of SMSC-140-Exos in preventing OA. We first found a potential source of exosomes and studied their merits and shortcomings. Based on our understanding of the molecular mechanism, we overcame the shortcomings by modifying the exosomes. Such exosomes derived from modified cells hold potential as future therapeutic strategies.
◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:
Provenance
- Source
- OpenAlex
- DOI
- 10.7150/thno.17133
- Canonical
- link ↗
- Fetched
- 2026-08-05 MST
Cite this
APA
Tao, S., Yuan, T., Zhang, Y., Yin, W., Guo, S., & Zhang, C. (2016). Exosomes derived from miR-140-5p-overexpressing human synovial mesenchymal stem cells enhance cartilage tissue regeneration and prevent osteoarthritis of the knee in a rat model. <em>Theranostics</em>. https://doi.org/10.7150/thno.17133
Vancouver
Tao S, Yuan T, Zhang Y, Yin W, Guo S, Zhang C. Exosomes derived from miR-140-5p-overexpressing human synovial mesenchymal stem cells enhance cartilage tissue regeneration and prevent osteoarthritis of the knee in a rat model. Theranostics. 2016. doi:10.7150/thno.17133.
BibTeX
@article{shicong2016Exosom,
title = {Exosomes derived from miR-140-5p-overexpressing human synovial mesenchymal stem cells enhance cartilage tissue regeneration and prevent osteoarthritis of the knee in a rat model},
author = {Shi‐Cong Tao and Ting Yuan and Yue-Lei Zhang and Wenjing Yin and Shang Guo and Changqing Zhang},
journal = {Theranostics},
year = {2016},
doi = {10.7150/thno.17133},
}
Research neighborhood
References, citing works, and semantically nearest findings. Click a node to open it.
Related findings
Molecular Medicine Reports 2019
Open access · CC-BY
Growth differentiation factor 11 is involved in isoproterenol‑induced heart failure
Blood 2012
Open access · OA
Demand-adapted regulation of early hematopoiesis in infection and inflammation
Stem Cells 2011
Open access · OA
Strontium Enhances Osteogenic Differentiation of Mesenchymal Stem Cells and In Vivo Bone Formation by Activating Wnt/Catenin Signaling
Stem Cell Research & Therapy 2015
Open access · CC-BY
Characterization of menstrual stem cells: angiogenic effect, migration and hematopoietic stem cell support in comparison with bone marrow mesenchymal stem cells
Stem Cell Research & Therapy 2019
Open access · CC-BY
Mesenchymal stem cell-derived exosomes: a new therapeutic approach to osteoarthritis?
Stem Cells Translational Medicine 2020
Open access · CC-BY