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Updated: Aug 6, 2026

A Simple and Inexpensive Method for Determining Cold Sensitivity and Adaptation in Mice
Published on: March 17, 2015
Analgesia mediated by the TRPM8 cold receptor in chronic neuropathic pain
Clare J Proudfoot1, Emer M Garry, David F Cottrell
1Centre for Neuroscience Research, Division of Veterinary Biomedical Sciences, University of Edinburgh, Summerhall, Edinburgh EH9 1QH, United Kingdom.
Background:
Chronic established pain, especially that following nerve injury, is difficult to treat and represents a largely unmet therapeutic need. New insights are urgently required, and we reasoned that endogenous processes such as cooling-induced analgesia may point the way to novel strategies for intervention. Molecular receptors for cooling have been identified in sensory nerves, and we demonstrate here how activation of one of these, TRPM8, produces profound, mechanistically novel analgesia in chronic pain states.
Results:
We show that activation of TRPM8 in a subpopulation of sensory afferents (by either cutaneous or intrathecal application of specific pharmacological agents or by modest cooling) elicits analgesia in neuropathic and other chronic pain models in rats, thereby inhibiting the characteristic sensitization of dorsal-horn neurons and behavioral-reflex facilitation. TRPM8 expression was increased in a subset of sensory neurons after nerve injury. The essential role of TRPM8 in suppression of sensitized pain responses was corroborated by specific knockdown of its expression after intrathecal application of an antisense oligonucleotide. We further show that the analgesic effect of TRPM8 activation is centrally mediated and relies on Group II/III metabotropic glutamate receptors (mGluRs), but not opioid receptors. We propose a scheme in which Group II/III mGluRs would respond to glutamate released from TRPM8-containing afferents to exert an inhibitory gate control over nociceptive inputs.
Conclusions:
TRPM8 and its central downstream mediators, as elements of endogenous-cooling-induced analgesia, represent a novel analgesic axis that can be exploited in chronic sensitized pain states.
Insights
Activating the TRPM8 receptor provides novel pain relief for chronic nerve injury pain. This cooling-induced analgesia mechanism involves central pathways, offering new therapeutic strategies for difficult-to-treat pain.
Area of Science:
- Neuroscience
- Pain Research
- Molecular Biology
Background:
- Chronic pain, particularly neuropathic pain, presents a significant unmet medical need.
- Endogenous analgesia, like cooling-induced pain relief, offers potential novel therapeutic targets.
- Transient Receptor Potential Melastatin 8 (TRPM8) is a molecular receptor activated by cooling.
Purpose of the Study:
- To investigate the potential of TRPM8 activation as a novel strategy for treating chronic pain.
- To elucidate the mechanisms underlying TRPM8-mediated analgesia in chronic pain models.
Main Methods:
- Activation of TRPM8 in rat models of neuropathic and chronic pain via pharmacological agents and modest cooling.
- Assessment of analgesic effects on neuronal sensitization and behavioral responses.
- Investigated the role of TRPM8 expression and central downstream mediators, including metabotropic glutamate receptors (mGluRs).
- Utilized antisense oligonucleotides for specific TRPM8 knockdown.
Main Results:
- TRPM8 activation produced significant analgesia in chronic pain models, reducing neuronal sensitization and reflex facilitation.
- TRPM8 expression increased in sensory neurons following nerve injury.
- The analgesic effect was centrally mediated and dependent on Group II/III mGluRs, not opioid receptors.
- TRPM8 knockdown diminished the analgesic effect, confirming its essential role.
Conclusions:
- TRPM8 activation represents a novel analgesic mechanism for chronic sensitized pain states.
- TRPM8 and its central downstream mediators form a new analgesic axis.
- This pathway offers a promising target for developing new pain therapies.
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