Emerging Role of TRP Channels in Osteoarthritis Pathogenesis
Новая роль TRP-каналов в патогенезе остеоартрита
2026-02-05
SCID: 54.1/7yd5cued
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Ca2+ signalingOA painTRP channelscartilage homeostasisosteoarthritis pathogenesis
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Abstract (AI)
Osteoarthritis (OA) is a degenerative joint disease characterized by cartilage degradation, synovial inflammation, osteophyte formation, joint space narrowing, and persistent pain. During OA progression, synovial inflammation triggers the release of pro-inflammatory cytokines, including IL-1β, TNF-α, and IL-6, which activate matrix metalloproteinases (MMPs) and aggrecanases, driving extracellular matrix (ECM) degradation. Emerging evidence indicates that transient receptor potential (TRP) channels, via calcium (Ca2+) signaling, function as molecular sensors in joint tissues, including chondrocytes, synoviocytes, sensory neurons, and regulate cartilage homeostasis, synovial inflammation, and OA pain. In cartilage, TRP channels govern chondrocyte survival, mechanotransduction, autophagy, oxidative stress, and ECM turnover, thereby modulating cartilage homeostasis. In synovial tissue, TRP channels regulate inflammatory signaling and cytokine, chemokine, and matrix-degrading enzyme production, leading to synovitis and joint destruction. In sensory neurons innervating the joint, TRP channels respond to mechanical and inflammatory stimuli, increasing nociceptor excitability, neuropeptide release, and pain sensitization, driving OA pain. TRP channel signaling also modulates immune cell infiltration and macrophage-driven inflammation, sustaining chronic pain and tissue damage in OA. This review summarizes emerging evidence on TRP channel functions in OA pathogenesis and highlights their potential as therapeutic targets to alleviate inflammation, protect cartilage, and reduce OA-associated pain.
Key Findings
1
In cartilage, TRP channels regulate chondrocyte survival, mechanotransduction, autophagy, oxidative stress, and extracellular-matrix turnover, affecting cartilage homeostasis.
2
In joint-innervating sensory neurons, TRP channels respond to mechanical and inflammatory stimuli, increasing nociceptor excitability, neuropeptide release, and pain sensitization.
3
In synovial tissue, TRP channels modulate inflammatory signaling and production of cytokines, chemokines, and matrix-degrading enzymes, promoting synovitis and joint destruction.
4
TRP channel signaling influences immune-cell infiltration and macrophage-driven inflammation, making these channels potential targets for reducing inflammation, cartilage damage, and osteoarthritis pain.
5
TRP channels act as calcium-signaling sensors in chondrocytes, synoviocytes, sensory neurons, and other joint tissues during osteoarthritis.
Research Object
TRP channels in osteoarthritic joint tissues, including chondrocytes, synoviocytes, sensory neurons, and immune cells
Research Subject
TRP channel-mediated Ca2+ signaling and its roles in cartilage homeostasis, synovial inflammation, immune-cell infiltration, joint destruction, nociceptor sensitization, and osteoarthritis pain
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2026-02-05
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