A dedicated skin-to-brain circuit for cool sensation in mice.
basic_science · Level V
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- Record sourced from PubMed, PMID 40721582.
- Also identified by DOI 10.1038/s41467-025-61562-y and PMC identifier 12304207.
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Abstract
Perception of external temperature is essential for maintaining homeostasis and avoiding thermal injury. Although molecular thermosensors such as transient receptor potential melastatin type 8 (TRPM8) have been identified, the neural circuits responsible for transmitting cool signals remain unclear. Here we show that a spinal circuit in mice conveys cool signals from the skin to the brain. Excitatory interneurons in the spinal dorsal horn expressing thyrotropin-releasing hormone receptor (Trhr<sup>+</sup>) act as a central hub for cool sensation. These Trhr<sup>+</sup> neurons receive monosynaptic input from TRPM8<sup>+</sup> sensory afferents and are selectively activated by innocuous cool stimuli. Ablating Trhr<sup>+</sup> interneurons abolishes behavioral responses to cool, but not to warm or cold stimuli. We also identify a population of calcitonin receptor-like receptor-positive (Calcrl<sup>+</sup>) spinal projection neurons that receive convergent input from both TRPM8<sup>+</sup> afferents and Trhr<sup>+</sup> interneurons, and transmit cool-specific signals to the lateral parabrachial nucleus (lPBN). Our findings define a feedforward amplification circuit for cool sensation and reveal a modality-specific spinal pathway for thermal processing.
Medical subject headings
- Skin
- Thermosensing
- Brain