4.4 Article

Antinociceptive Effects of Nociceptin/Orphanin FQ Administered Intrathecally in Monkeys

期刊

JOURNAL OF PAIN
卷 10, 期 5, 页码 509-516

出版社

CHURCHILL LIVINGSTONE
DOI: 10.1016/j.jpain.2008.11.006

关键词

Spinal cord; analgesia; NOP receptors; substance P; thermal hyperalgesia

资金

  1. United States Department of Defense
  2. Peer Reviewed Medical Research Program [W81XWH-07-1-0162]

向作者/读者索取更多资源

Nociceptin/orphanin FQ (N/OFQ) is the endogenous peptide for the NOP receptors. Depending on the doses, intrathecal administration of N/OFQ has dual actions (ie, hyperalgesia and anti nociception) in rodents. However, the pharmacological profile of intrathecal N/OFQ is not fully known in primates. The aim of this study was to investigate behavioral effects of intrathecal N/OFQ over a wide dose range and to compare its effects with ligands known to produce hyperalgesia or antinociception in monkeys. Intrathecal N/OFQ from 1 fmol to 1 nmol did not produce any hyperalgesic or scratching responses. In contrast, intrathecal substance P 100 nmol produced hyperalgesia, and intrathecal DAMGO 10 nmol produced anti nociception. At the dose range between 10 nmol and 1 mmol, intrathecal N/OFQ dose-dependently produced thermal antinociception against a noxious stimulus in 2 intensities. More importantly, N/OFQ in combined with intrathecal morphine dose-dependently potentiated morphine-induced antinociception without inhibiting morphine-induced itch/scratching. Taken together, this study is the first to provide a unique functional profile of intrathecal N/OFQ over a wide dose range in primates. Intrathecal N/OFQ produces thermal antinociception without anti-morphine actions or scratching responses, indicating that N/OFQ or NOP receptor agonists represent a promising target as spinal analgesics. Perspective: Intrathecal administration of N/OFQ only produced thermal antinociception, not hyperalgesia, in monkeys. In addition, intrathecal N/OFQ does not have anti-morphine actions or itch/scratching responses. This study strongly supports the therapeutic potential of N/OFQ or NOP receptor agonists as spinal analgesics for clinical trials. (C) 2009 by the American Pain Society

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