Preemptive Caffeine Administration Blocks the Increase in Postoperative Pain Caused by Previous Sleep Loss in the Rat: A Potential Role for Preoptic Adenosine A2A Receptors in Sleep-Pain Interactions

Sleep. 2017 Sep 1;40(9). doi: 10.1093/sleep/zsx116.

Abstract

Sleep and pain are reciprocally related, but the precise mechanisms underlying this relationship are poorly understood. This study used a rat model of surgical pain to examine the effect of previous sleep loss on postoperative pain and tested the hypothesis that preoptic adenosinergic mechanisms regulate sleep-pain interactions. Relative to ad libitum sleep, 6 hours of total sleep deprivation prior to a surgical incision significantly enhanced postoperative mechanical hypersensitivity in the affected paw and prolonged the time to recovery from surgery. There were no sex-specific differences in these measures. There were also no changes in adrenocorticotropic hormone and corticosterone levels after sleep deprivation, suggesting that this effect was not mediated by the stress associated with the sleep perturbation. Systemic administration of the nonselective adenosine receptor antagonist caffeine at the onset of sleep deprivation prevented the sleep deprivation-induced increase in postoperative hypersensitivity. Microinjection of the adenosine A2A receptor antagonist ZM 241385 into the median preoptic nucleus (MnPO) blocked the increase in surgical pain levels and duration caused by prior sleep deprivation and eliminated the thermal hyperalgesia induced by sleep deprivation in a group of nonoperated (i.e., without surgical incision) rats. These data show that even a brief sleep disturbance prior to surgery worsens postoperative pain and are consistent with our hypothesis that adenosine A2A receptors in the MnPO contribute to regulate these sleep-pain interactions.

Keywords: Hargreaves; allodynia; anesthesia; chronic pain; insufficient sleep; nociception; sleep homeostasis; von Frey.

MeSH terms

  • Adenosine A2 Receptor Antagonists / administration & dosage
  • Adenosine A2 Receptor Antagonists / pharmacology
  • Animals
  • Caffeine / administration & dosage*
  • Caffeine / pharmacology*
  • Female
  • Hyperalgesia / etiology
  • Hyperalgesia / physiopathology
  • Hyperalgesia / prevention & control
  • Male
  • Pain, Postoperative / etiology*
  • Pain, Postoperative / physiopathology
  • Pain, Postoperative / prevention & control*
  • Preoptic Area / drug effects*
  • Preoptic Area / metabolism*
  • Rats
  • Rats, Sprague-Dawley
  • Receptor, Adenosine A2A / metabolism*
  • Sex Characteristics
  • Sleep / physiology
  • Sleep Deprivation / complications*
  • Sleep Deprivation / physiopathology
  • Triazines / administration & dosage
  • Triazines / pharmacology
  • Triazoles / administration & dosage
  • Triazoles / pharmacology

Substances

  • Adenosine A2 Receptor Antagonists
  • Receptor, Adenosine A2A
  • Triazines
  • Triazoles
  • ZM 241385
  • Caffeine