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dc.contributor.authorDang, Vu C
dc.contributor.authorChristie, MacDonald J
dc.date.accessioned2016-06-22
dc.date.available2016-06-22
dc.date.issued2012-03-01
dc.identifier.citationDang, V. C. and Christie, M. J. (2012), Mechanisms of rapid opioid receptor desensitization, resensitization and tolerance in brain neurons. British Journal of Pharmacology, 165: 1704–1716. doi: 10.1111/j.1476-5381.2011.01482.xen_AU
dc.identifier.urihttp://hdl.handle.net/2123/15180
dc.description.abstractAgonists acting on µ-opioid receptors (MOR) are very effective analgesics but cause tolerance during long-term or repeated exposure. Intensive efforts have been made to find novel opioid agonists that are efficacious analgesics but can elude the signalling events that cause tolerance. µ-Opioid agonists differentially couple to downstream signalling mechanisms. Some agonists, such as enkephalins, d-Ala(2),N-Me-Phe(4),Gly(5)-ol]-enkephalin (DAMGO), methadone and sufentanyl are efficacious at mediating G-protein and effector coupling, as well as triggering MOR regulatory events that include MOR phosphorylation, β-arrestin binding, receptor endocytosis and recycling. By contrast, morphine and closely related alkaloids can mediate efficacious MOR–effector coupling but poorly trigger receptor regulation. Several models have been proposed to relate differential MOR regulation by different opioids with their propensity to cause tolerance. Most are based on dogma that β-arrestin-2 (βarr-2) binding causes MOR desensitization and/or that MOR endocytosis and recycling are required for receptor resensitization. This review will examine some of these notions in light of recent evidence establishing that MOR dephosphorylation and resensitization do not require endocytosis. Recent evidence from opioid-treated animals also suggests that impaired MOR–effector coupling is driven, at least in part, by enhanced desensitization, as well as impaired resensitization that appears to be βarr-2 dependent. Better understanding of how chronic exposure to opioids alters receptor regulatory mechanisms may facilitate the development of effective analgesics that produce limited tolerance.en_AU
dc.description.sponsorshipNHMRC Grant Number: 1011979en_AU
dc.language.isoen_USen_AU
dc.publisherWileyen_AU
dc.subjectopioiden_AU
dc.subjectmorphineen_AU
dc.subjectopioid signallingen_AU
dc.subjectopioid efficacyen_AU
dc.subjectmu-receptoren_AU
dc.subjectβ-arrestinen_AU
dc.subjectprotein kinaseen_AU
dc.subjectdesensitizationen_AU
dc.subjectendocytosisen_AU
dc.subjectreceptor recyclingen_AU
dc.titleMechanisms of rapid opioid receptor desensitization, resensitization and tolerance in brain neuronsen_AU
dc.typeArticleen_AU
dc.identifier.doi10.1111/j.1476-5381.2011.01482.x
dc.type.pubtypePost-printen_AU
usyd.departmentDiscipline of Pharmacologyen_AU


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