4.4 Article

Spinal TRPC6 channels contributes to morphine-induced antinociceptive tolerance and hyperalgesia in rats

Journal

NEUROSCIENCE LETTERS
Volume 639, Issue -, Pages 138-145

Publisher

ELSEVIER IRELAND LTD
DOI: 10.1016/j.neulet.2016.12.062

Keywords

TRPC6; Morphine; Tolerance; Hyperalgesia

Categories

Funding

  1. National Natural Science Foundation of China [31360246, 81300973]
  2. Educational Commission of Yunnan Province of China [2012Z085]
  3. Science and Technology Joint Special Fund of Yunnan Province [2014FZ100]
  4. Yunnan Provincial Science and Technology department [2013FB100]

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The chronic administration of opioids results in the development of morphine analgesic tolerance and withdrawl-induced hyperalgesia, which limits their clinical utility in pain treatment. However, the cellular mechanisms underlying opioid-induced tolerance and hyperalgesia are not fully understood. The transient receptor potential canonical channel TRPC6 is important for brain development and function, as it regulates cytosolic, endoplasmic reticulum, and mitochondrial Ca2+ levels in neural cells. Here, we report that TRPC6 expression in the spinal cord was up-regulated after chronic morphine treatment. Furthermore, inhibition of TRPC6 in the spinal cord blocked the induction of morphine tolerance and hyperalgesia without affecting basal pain perception. These effects were attributed to the attenuation of morphine-induced neuroimmune activation and increased levels of CaMKII alpha and nNOS in the spinal cord. This data suggests that specific TRPC6 inhibitors could be utilized for the prevention of morphine-induced antinociceptive tolerance and hyperalgesia in chronic pain management. (C) 2016 Elsevier Ireland Ltd. All rights reserved.

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