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Updated: Nov 28, 2025

Software-Assisted Quantitative Measurement of Osteoarthritic Subchondral Bone Thickness
Published on: March 18, 2022
ATF4-modified serum exosomes derived from osteoarthritic mice inhibit osteoarthritis by inducing autophagy
Yan Wang1, Shi-Hao He1, Xu Liang1
1Department of Rheumatology, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, China.
Abstract:
Activating transcription factor 4 (ATF4) is critical for chondrocyte proliferation and bone formation. Exosomes are considered as promising gene-delivery vehicles for the treatment of osteoarthritis (OA). This study utilized the serum-derived exosomes from OA mice as the gene-delivery vehicles for ATF4 gene therapy and explored their therapeutic effects on OA. Meniscus injury-induced OA model was established by the excision of anterior part of medial meniscus in the right knee of C57BL/6J mice. Exosomes were isolated from serum samples of sham and OA mice, and were referred to as sham-Exo and OA-Exo, respectively. ATF4-overexpressing OA-Exo (ATF4-OA-Exo) was developed by introducing ATF4 mRNA into OA-Exo via electroporation. Four weeks after surgery, OA mice received intra-articular injections of sham-Exo, OA-Exo, and ATF4-OA-Exo, respectively. The results showed that intra-articular injection of ATF4-OA-Exo alleviated articular cartilage degeneration or damage and inflammatory response of OA mice. Autophagy was weakened in knee joint cartilage of OA mice, which was partially restored by intra-articular injection of ATF4-OA-Exo. Further in vitro assays revealed that ATF4-OA-Exo promoted chondrocyte autophagy and inhibited chondrocyte apoptosis in the TNF-α- or tunicamycin-treated chondrocytes. Together, ATF4-modified serum exosomes derived from OA mice protect cartilage and alleviate OA progression by inducing autophagy.
Insights
Activating transcription factor 4 (ATF4) delivered via osteoarthritis (OA) serum exosomes alleviates OA progression. This therapy protects cartilage and reduces inflammation by restoring autophagy in chondrocytes.
Area of Science:
- Biomedical research
- Gene therapy
- Osteoarthritis research
Background:
- Activating transcription factor 4 (ATF4) is crucial for chondrocyte function and bone development.
- Exosomes show potential as gene delivery vectors for osteoarthritis (OA) treatment.
Purpose of the Study:
- To investigate the therapeutic potential of ATF4 gene therapy using serum-derived exosomes from OA mice for OA treatment.
- To explore the effects of ATF4-overexpressing exosomes on cartilage degeneration, inflammation, and autophagy in an OA mouse model.
Main Methods:
- An OA mouse model was established via meniscus injury.
- Exosomes were isolated from serum of sham and OA mice.
- ATF4 gene was introduced into OA exosomes (ATF4-OA-Exo) via electroporation.
- ATF4-OA-Exo were administered via intra-articular injection into OA mice.
Main Results:
- Intra-articular injection of ATF4-OA-Exo reduced cartilage damage and inflammation in OA mice.
- ATF4-OA-Exo partially restored weakened autophagy in the knee joint cartilage of OA mice.
- In vitro studies showed ATF4-OA-Exo promoted chondrocyte autophagy and inhibited apoptosis.
Conclusions:
- ATF4-modified serum exosomes derived from OA mice demonstrate protective effects on cartilage.
- This therapy alleviates OA progression by inducing autophagy in chondrocytes.

