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Kappa Opioid Receptor Distribution and Function in Primary Afferents. | LitMetric

AI Article Synopsis

  • Kappa opioid receptors (KOR) inhibit primary sensory neurons, but the specific types that express KOR are not well understood.
  • Using advanced techniques, researchers identified that KOR is present in certain peptidergic sensory neurons and low-threshold mechanoreceptors near hair follicles.
  • KOR signaling not only reduces excitatory neurotransmission and inflammation in these neurons but also shows potential for pain and itch relief when using targeted KOR agonists as a treatment option.

Article Abstract

Primary afferents are known to be inhibited by kappa opioid receptor (KOR) signaling. However, the specific types of somatosensory neurons that express KOR remain unclear. Here, using a newly developed KOR-cre knockin allele, viral tracing, single-cell RT-PCR, and ex vivo recordings, we show that KOR is expressed in several populations of primary afferents: a subset of peptidergic sensory neurons, as well as low-threshold mechanoreceptors that form lanceolate or circumferential endings around hair follicles. We find that KOR acts centrally to inhibit excitatory neurotransmission from KOR-cre afferents in laminae I and III, and this effect is likely due to KOR-mediated inhibition of Ca influx, which we observed in sensory neurons from both mouse and human. In the periphery, KOR signaling inhibits neurogenic inflammation and nociceptor sensitization by inflammatory mediators. Finally, peripherally restricted KOR agonists selectively reduce pain and itch behaviors, as well as mechanical hypersensitivity associated with a surgical incision. These experiments provide a rationale for the use of peripherally restricted KOR agonists for therapeutic treatment.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6300132PMC
http://dx.doi.org/10.1016/j.neuron.2018.08.044DOI Listing

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