Targeting an inflammation-amplifying cell population can attenuate osteoarthritis-associated pain
Akshay Pandey1, Mamta Singla1, Ana Geller1
1Department of Orthopaedic Surgery, Stanford School of Medicine, 240, Pasteur Drive, Biomedical Innovations Bldg, Stanford, CA, 94034, USA.
Background:
Understanding of pain in osteoarthritis, its genesis, and perception is still in its early stages. Identification of precise ligand-receptor pairs that transduce pain and the cells and tissues in which they reside will elucidate new therapeutic approaches for pain management. Our recent studies had identified an inflammation-amplifying (Inf-A) cell population that is expanded in human OA cartilage and is distinctive in the expression of both IL1R1 and TNF-R2 receptors and active Jnk signaling cascade.
Methods:
In this study, we have tested the function of the cartilage-resident IL1R1+TNF-R2+ Inf-A cells in OA. We have identified that the IL1R1+TNF-R2+ Inf-A cells expand in aged mice as well as after anterior cruciate ligament tear upon tibia loading and OA initiation in mice. We targeted and modulated the Jnk signaling cascade in InfA through competitive inhibition of Jnk signaling in mice and human OA explants and tested the effects on joint structure and gait in mice.
Results:
Modulation of Jnk signaling led to attenuation of inflammatory cytokines CCL2 and CCL7 without showing any structural improvements in the joint architecture. Interestingly, Jnk inhibition and lowered CCL2 and 7 are sufficient to significantly improve the gait parameters in treated PTOA mice demonstrating reduced OA-associated pain. Consistent with the mice data, treatment with JNK inhibitor did not improve human OA cartilage explants.
Conclusion:
These studies demonstrate that Inf-A, an articular-cartilage resident cell population, contributes to pain in OA via secretion of CCL2 and 7 and can be targeted via inhibition of Jnk signaling.
Insights
Inflammation-amplifying cells in osteoarthritis (OA) contribute to pain by secreting specific cytokines. Inhibiting the Jnk signaling pathway in these cells reduced OA-associated pain in mice, offering a potential therapeutic target.
Area of Science:
- Immunology
- Cell Biology
- Pain Research
Background:
- Osteoarthritis (OA) pain mechanisms are not fully understood.
- Inflammation-amplifying (Inf-A) cells expressing IL1R1 and TNF-R2 are found in human OA cartilage.
- These Inf-A cells exhibit active Jnk signaling.
Purpose of the Study:
- To investigate the role of cartilage-resident IL1R1+TNF-R2+ Inf-A cells in OA.
- To determine the effect of modulating Jnk signaling in Inf-A cells on OA.
- To assess the impact on joint structure and pain-related gait parameters.
Main Methods:
- Inf-A cell expansion was studied in aged and OA-induced mice.
- Jnk signaling was inhibited in mice and human OA explants.
- Effects on joint structure, gait, and inflammatory cytokines were analyzed.
Main Results:
- Jnk inhibition reduced inflammatory cytokines CCL2 and CCL7 but did not improve joint structure.
- Jnk inhibition significantly improved gait parameters in mice, indicating reduced OA pain.
- JNK inhibitor treatment did not improve human OA cartilage explants.
Conclusions:
- Articular cartilage-resident Inf-A cells contribute to OA pain through CCL2 and CCL7 secretion.
- Targeting Jnk signaling in Inf-A cells is a potential strategy for OA pain management.
- Further research is needed to translate these findings to human OA treatment.
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