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Examining the role of transient receptor potential canonical 5 (TRPC5) in osteoarthritis
João de Sousa Valente1, Khadija M Alawi1, Patrik Keringer2
1Section of Vascular Biology and Inflammation, School of Cardiovascular Medicine and Sciences, BHF Cardiovascular Centre of Research Excellence, King's College London, Franklin-Wilkins Building, London, SE1 9NH, UK.
Introduction:
Osteo-arthritis (OA) involves joint degradation and usually pain; with mechanisms poorly understood and few treatment options. There is evidence that the transient receptor potential canonical 5 (TRPC5) mRNA expression is reduced in OA patients' synovia. Here we examine the profile of TRPC5 in DRG and involvement in murine models of OA.
Design:
TRPC5 KO mice were subjected to partial meniscectomy (PMNX) or injected with monoiodoacetate (MIA) and pain-related behaviours were determined. Knee joint pathological scores were analysed and gene expression changes in ipsilateral synovium and dorsal root ganglia (DRG) determined. c-Fos protein expression in the ipsilateral dorsal horn of the spinal cord was quantified.
Results:
TRPC5 KO mice developed a discrete enhanced pain-related phenotype. In the MIA model, the pain-related phenotype correlated with c-Fos expression in the dorsal horn and increased expression of nerve injury markers ATF3, CSF1 and galanin in the ipsilateral DRG. There were negligible differences in the joint pathology between WT and TRPC5 KO mice, however detailed gene expression analysis determined increased expression of the mast cell marker CD117 as well as extracellular matrix remodelling proteinases MMP2, MMP13 and ADAMTS4 in MIA-treated TRPC5 KO mice. TRPC5 expression was defined to sensory subpopulations in DRG.
Conclusions:
Deletion of TRPC5 receptor signalling is associated with exacerbation of pain-like behaviour in OA which correlates with increased expression of enzymes involved in extracellular remodelling, inflammatory cells in the synovium and increased neuronal activation and injury in DRG. Together, these results identify a modulating role for TRPC5 in OA-induced pain-like behaviours.
Insights
Osteoarthritis pain is worsened in mice lacking the TRPC5 receptor. This is linked to increased nerve activation and extracellular matrix changes, suggesting TRPC5 modulates OA pain.
Area of Science:
- Neuroscience
- Molecular Biology
- Pain Research
Background:
- Osteoarthritis (OA) is a degenerative joint disease characterized by pain, with poorly understood mechanisms and limited treatment options.
- Reduced Transient Receptor Potential Canonical 5 (TRPC5) mRNA expression is observed in OA patients' synovium.
- This study investigates TRPC5's role in the dorsal root ganglia (DRG) and its involvement in murine OA models.
Purpose of the Study:
- To examine the role of TRPC5 in osteoarthritis pain.
- To investigate the expression profile of TRPC5 in DRG.
- To determine TRPC5's involvement in murine models of OA pain.
Main Methods:
- TRPC5 knockout (KO) mice were subjected to partial meniscectomy (PMNX) or monoiodoacetate (MIA) injection.
- Pain-related behaviors, knee joint pathology, and gene expression in synovium and DRG were analyzed.
- c-Fos protein expression in the dorsal horn was quantified.
Main Results:
- TRPC5 KO mice exhibited an enhanced pain-related phenotype in OA models.
- Increased expression of nerve injury markers (ATF3, CSF1, galanin) and extracellular matrix-remodeling enzymes (MMP2, MMP13, ADAMTS4) were observed in TRPC5 KO mice.
- Joint pathology showed negligible differences, but synovium analysis revealed increased mast cell markers (CD117) in MIA-treated TRPC5 KO mice.
Conclusions:
- TRPC5 receptor signaling deletion exacerbates OA-induced pain-like behaviors.
- This exacerbation correlates with increased extracellular matrix remodeling enzymes, inflammatory cells, and neuronal activation/injury in DRG.
- TRPC5 plays a modulating role in OA-associated pain.
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