4.6 Article

Platelet-derived growth factor activates nociceptive neurons by inhibiting M-current and contributes to inflammatory pain

期刊

PAIN
卷 160, 期 6, 页码 1281-1296

出版社

LIPPINCOTT WILLIAMS & WILKINS
DOI: 10.1097/j.pain.0000000000001523

关键词

Inflammatory pain; Nociceptor excitability; Kv7 channels; M-current; PDGF

资金

  1. Deutsch-Israelische Projectkooperation program of the Deutsche Forschungsgemeinschaft (DIP) [BI 1665/1-1ZI1172/12]
  2. Israeli Science Foundation [1470/17]
  3. Hoffman Leadership program
  4. NIH [1R01DA38860]

向作者/读者索取更多资源

Endogenous inflammatory mediators contribute to the pathogenesis of pain by acting on nociceptors, specialized sensory neurons that detect noxious stimuli. Here, we describe a new factor mediating inflammatory pain. We show that platelet-derived growth factor (PDGF)-BB applied in vitro causes repetitive firing of dissociated nociceptor-like rat dorsal root ganglion neurons and decreased their threshold for action potential generation. Injection of PDGF-BB into the paw produced nocifensive behavior in rats and led to thermal and mechanical pain hypersensitivity. We further detailed the biophysical mechanisms of these PDGF-BB effects and show that PDGF receptor-induced inhibition of nociceptive M-current underlies PDGF-BB-mediated nociceptive hyperexcitability. Moreover, in vivo sequestration of PDGF or inhibition of the PDGF receptor attenuates acute formalin-induced inflammatory pain. Our discovery of a new pain-facilitating proinflammatory mediator, which by inhibiting M-current activates nociceptive neurons and thus contributes to inflammatory pain, improves our understanding of inflammatory pain pathophysiology and may have important clinical implications for pain treatment.

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