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March 12, 2026Pain0 citations

TASK-3–expressing sensory neurons mediate acute and chronic itch via enhancing dorsal horn gastrin-releasing peptide neurons activity

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YLYuncheng LuoRLRong LuoYRYimin Ren

Key Points

  • To investigate the role of TASK-3 in mediating itch responses and its potential as a therapeutic target.
  • Examined TASK-3 activation and inhibition in sensory neurons in mouse models.
  • Utilized pharmacological agents to assess the effect on itch responses.
  • Identified the expression of TASK-3 in specific sensory neurons and analyzed coexpression with itch receptors.
  • Pharmacological activation of TASK-3 reduces both acute and chronic itch.
  • Conditional deletion of TASK-3 in particular neurons increases scratching behavior.
  • TASK-3 expression is decreased in chronic itch conditions, and its activation decreases GRP+ neuron activity.

Abstract

Although canonical itch receptors such as histamine receptor 1 (H1R) and MrgprA3 are well established, they do not fully account for pruritogen-evoked responses, suggesting additional mechanisms regulate pruriceptor excitability. Here, we identify a 2-pore-domain K+ channel, the tandem of P domains in a weak inwardly rectifying K+ channel-related acid-sensitive K+ channel 3 (TASK-3), as a critical modulator of itch. Pharmacological activation of TASK-3 alleviates acute and chronic itch in mice, whereas its inhibition or sensory neuron-specific deletion in dorsal root ganglia (DRG) enhances scratching. We further show that chloroquine and histamine increase the excitability of a subset of sensory neurons by directly inhibiting TASK-3-mediated K+ currents. TASK-3-expressing DRG neurons in both mice and humans express the itch-associated neuropeptide neuromedin B (NMB). Notably, this subset of TASK-3+/NMB+ neurons does not coexpress key canonical itch receptors such as MrgprA3, MrgprD, or H1R. Conditional deletion of TASK-3 in NMB+ neurons enhances pruritogen-induced scratching and activates gastrin-releasing peptide (GRP+) neurons in the spinal dorsal horn. In chronic itch, TASK-3 expression is downregulated, and its activation suppresses GRP+ neuron hyperactivity, whereas TASK-3 knockdown increases excitatory input to these neurons. These findings identify TASK-3 as a pruritogen-sensitive ion channel and a promising therapeutic target for itch relief.

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Cite This Study

Luo et al. (2026) studied this question.

synapsesocial.com/papers/69b2579096eeacc4fcec6503https://doi.org/10.1097/j.pain.0000000000003933
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