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Published on: March 17, 2015
Pro-inflammatory mediators sensitise transient receptor potential melastatin 3 cation channel (TRPM3) function in
Javier Aguilera-Lizarraga1, Tony K Lim1, Luke A Pattison1
1Department of Pharmacology, University of Cambridge, Cambridge, UK.
Abstract:
Pro-inflammatory mediators can directly activate pain-sensing neurons, known as nociceptors. Additionally, these mediators can sensitise ion channels and receptors expressed by these cells through transcriptional and post-translational modulation, leading to nociceptor hypersensitivity. A well-characterised group of ion channels that subserve nociceptor sensitisation is the transient receptor potential (TRP) superfamily of cation channels. For example, the roles of TRP channels vanilloid 1 (TRPV1) and ankyrin 1 (TRPA1) in nociceptor sensitisation and inflammatory pain have been extensively documented. In the case of TRP melastatin 3 (TRPM3), however, despite the increasing recognition of this channel's role in inflammatory pain, the mediators driving its sensitisation during inflammation remain poorly characterised. Here, using Ca2+ imaging, we found that an inflammatory soup of bradykinin, interleukin 1β (IL-1β) and tumour necrosis factor α (TNFα) sensitised TRPM3 function in isolated mouse sensory neurons; IL-1β and TNFα, but not bradykinin, independently potentiated TRPM3 function. TRPM3 expression and translocation to the membrane remained unchanged upon individual or combined exposure to these inflammatory mediators, which suggests that post-translational modification might occur. Finally, using the complete Freund's adjuvant-induced model of knee inflammation, we found that systemic pharmacological blockade of TRPM3 does not alleviate inflammatory pain (as assessed through evaluation of digging behaviour and dynamic weight bearing), which contrasts with previous reports using different pain models. We propose that the nuances of the immune response may determine the relative contribution of TRPM3 to nociceptive signalling in different neuro-immune contexts. Collectively, our findings improve insight into the role of TRPM3 sensitisation in inflammatory pain.
Insights
Inflammatory mediators like IL-1β and TNFα sensitize the TRPM3 channel in pain neurons. However, blocking TRPM3 did not reduce knee inflammation pain, suggesting context-dependent roles in pain signaling.
Area of Science:
- Neuroscience
- Immunology
- Pain Research
Background:
- Pro-inflammatory mediators activate pain-sensing neurons (nociceptors).
- Transient Receptor Potential (TRP) channels, including TRPV1 and TRPA1, are key in nociceptor sensitization and inflammatory pain.
- The role of TRP melastatin 3 (TRPM3) in inflammatory pain is recognized, but sensitizing mediators are poorly understood.
Purpose of the Study:
- To investigate the inflammatory mediators that sensitize TRPM3 channels in mouse sensory neurons.
- To determine the effect of TRPM3 blockade on inflammatory pain in a knee inflammation model.
Main Methods:
- Calcium (Ca2+) imaging in isolated mouse sensory neurons.
- Exposure to inflammatory mediators: bradykinin, interleukin 1β (IL-1β), and tumour necrosis factor α (TNFα).
- Assessment of TRPM3 expression and membrane translocation.
- Pharmacological blockade of TRPM3 in a complete Freund's adjuvant-induced knee inflammation model.
- Evaluation of pain behaviors: digging and dynamic weight bearing.
Main Results:
- An inflammatory soup sensitized TRPM3 function in isolated mouse sensory neurons.
- IL-1β and TNFα independently potentiated TRPM3 function, while bradykinin did not.
- TRPM3 expression and membrane translocation were unaffected by these mediators, suggesting post-translational modification.
- Systemic TRPM3 blockade did not alleviate inflammatory pain in the knee joint model.
Conclusions:
- IL-1β and TNFα sensitize TRPM3 channels in sensory neurons, likely via post-translational modification.
- TRPM3's contribution to inflammatory pain is context-dependent and may vary across different neuro-immune interactions.
- Findings highlight the complexity of TRPM3's role in inflammatory pain signaling.
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