S1PR3 Mediates Itch and Pain via Distinct TRP Channel-Dependent Pathways Article

Hill, Rose Z, Morita, Takeshi, Brem, Rachel B et al. (2018). S1PR3 Mediates Itch and Pain via Distinct TRP Channel-Dependent Pathways . JOURNAL OF NEUROSCIENCE, 38(36), 7833-7843. 10.1523/JNEUROSCI.1266-18.2018

Open Access

cited authors

  • Hill, Rose Z; Morita, Takeshi; Brem, Rachel B; Bautista, Diana M

sustainable development goals

authors

publication date

  • September 5, 2018

published in

keywords

  • AIRWAY INFLAMMATION
  • CAPSAICIN RECEPTOR
  • CELLULAR MECHANISMS
  • COLITIS-ASSOCIATED CANCER
  • GPCR
  • LYMPHOCYTE EGRESS
  • Life Sciences & Biomedicine
  • MULTIPLE-SCLEROSIS
  • NERVE GROWTH-FACTOR
  • Neurosciences
  • Neurosciences & Neurology
  • RAT SENSORY NEURONS
  • SMOOTH-MUSCLE HYPERRESPONSIVENESS
  • SPHINGOSINE 1-PHOSPHATE
  • Science & Technology
  • TRP channel
  • itch
  • nociception
  • pain
  • sphingosine 1-phosphate

Digital Object Identifier (DOI)

publisher

  • SOC NEUROSCIENCE

start page

  • 7833

end page

  • 7843

volume

  • 38

issue

  • 36