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Nerve Growth Factor Receptor Limits Inflammation to Promote Remodeling and Repair of Osteoarthritic Joints
Lan Zhao1,2, Yumei Lai1, Hongli Jiao1
1Department of Orthopedic Surgery, Rush University Medical Center, Chicago, IL, USA.
Abstract:
Osteoarthritis (OA) is a painful, incurable disease affecting over 500 million people. The need for relieving OA pain is paramount but inadequately addressed, partly due to limited understandings of how pain signaling regulates non-neural tissues. Here we report that nerve growth factor receptor (NGFR) is upregulated in skeletal cells during OA and plays an essential role in the remodeling and repair of osteoarthritic joints. Specifically, NGFR is expressed in osteochondral cells but not in skeletal progenitor cells and induced by TNFα to attenuate NF-κB activation, maintaining proper BMP-SMAD1 signaling and suppressing RANKL expression. NGFR deficiency hyper-activates NF-κB in murine osteoarthritic joints, which impairs bone formation and enhances bone resorption as exemplified by a reduction in subchondral bone and osteophytes. In human OA cartilage, NGFR is also negatively associated with NF-κB activation. Together, this study uncovers a role of NGFR in limiting inflammation for repair of diseased skeletal tissues.
Insights
Nerve growth factor receptor (NGFR) is upregulated in skeletal cells during osteoarthritis (OA). NGFR limits inflammation, aiding skeletal tissue repair and joint remodeling in OA.
Area of Science:
- Skeletal Biology
- Inflammation Research
- Pain Signaling
Background:
- Osteoarthritis (OA) is a prevalent, incurable condition causing significant pain.
- Current OA pain management is limited by incomplete understanding of pain signaling in non-neural tissues.
- Identifying novel therapeutic targets for OA is crucial.
Conclusions:
- NGFR plays a critical role in the remodeling and repair of osteoarthritic joints.
- NGFR acts by limiting inflammation through the attenuation of NF-κB signaling.
- This study identifies NGFR as a potential therapeutic target for OA treatment.
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