Buprenorphine is a weak partial agonist that inhibits opioid receptor desensitization. Academic Article uri icon

Overview

abstract

  • Buprenorphine is a weak partial agonist at mu-opioid receptors that is used for treatment of pain and addiction. Intracellular and whole-cell recordings were made from locus ceruleus neurons in rat brain slices to characterize the actions of buprenorphine. Acute application of buprenorphine caused a hyperpolarization that was prevented by previous treatment of slices with the irreversible opioid antagonist beta-chlornaltrexamine (beta-CNA) but was not reversed by a saturating concentration of naloxone. As expected for a partial agonist, subsaturating concentrations of buprenorphine decreased the [Met](5)enkephalin (ME)-induced hyperpolarization or outward current. When the ME-induced current was decreased below a critical value, desensitization and internalization of mu-opioid receptors was eliminated. The inhibition of desensitization by buprenorphine was not the result of previous desensitization, slow dissociation from the receptor, or elimination of receptor reserve. Treatment of slices with subsaturating concentrations of etorphine, methadone, oxymorphone, or beta-CNA also reduced the current induced by ME but did not block ME-induced desensitization. Treatment of animals with buprenorphine for 1 week resulted in the inhibition of the current induced by ME and a block of desensitization that was not different from the acute application of buprenorphine to brain slices. These observations show the unique characteristics of buprenorphine and further demonstrate the range of agonist-selective actions that are possible through G-protein-coupled receptors.

publication date

  • June 3, 2009

Research

keywords

  • Buprenorphine
  • Narcotics
  • Neural Inhibition
  • Neurons
  • Receptors, Opioid, mu

Identity

PubMed Central ID

  • PMC2752300

Scopus Document Identifier

  • 66749153181

Digital Object Identifier (DOI)

  • 10.1523/JNEUROSCI.3723-08.2009

PubMed ID

  • 19494155

Additional Document Info

volume

  • 29

issue

  • 22