Chronic use of opioids results in tolerance and physical dependence. Both processes are due to adaptive changes in neurons resulting from continued exposure to agonists. However, the neuronal mechanisms underlying physical dependence, characterized by a rebound excitation on withdrawal of agonists, remain poorly understood. Several brain regions including the periaqueductal gray (PAG) are thought to play a pivotal role in expression of physical dependence on opioid drugs. The goal of the proposed studies is to determine the ionic and second messenger mechanisms causing physical dependence in single PAG neurons. In particular, we propose to: Further characterise opioid modulated ionic conductances, particularly voltage activated potassium and nonselective cation conductances in mouse PAG neurons to inform studies of adaptations following chronic morphine treatment. Characterise the processes of tolerance to opioid agonists for the various ionic conductances modulated by mu opioid receptors in mouse PAG neurons. Characterise the ionic currents underlying excitation of mouse PAG neurons during opioid withdrawal. Identify key adaptations to second messenger systems underlying the changes found in Aim 3) using modulators of second messenger systems and genetically modified mice. Characterise the changes in GABAergic and glutamatergic synaptic transmission that occur during withdrawal excitation in mouse PAG. Identify key adaptations to second messenger systems underlying the changes found in Aim 5) using modulators of second messenger systems and genetically modified mice.

Agency
National Institute of Health (NIH)
Institute
National Institute on Drug Abuse (NIDA)
Type
Research Project (R01)
Project #
1R01DA012926-01
Application #
6031967
Study Section
Special Emphasis Panel (ZRG1-IFCN-1 (01))
Program Officer
Lin, Yu
Project Start
2000-04-05
Project End
2003-02-28
Budget Start
2000-04-05
Budget End
2001-02-28
Support Year
1
Fiscal Year
2000
Total Cost
$88,911
Indirect Cost
Name
University of Sydney
Department
Type
DUNS #
752389338
City
Sydney
State
Country
Australia
Zip Code
2006
Chieng, Billy C; Lee, David J; Du, Yan P et al. (2008) Functional coupling of mu-receptor-Galphai-tethered proteins in AtT20 cells. Neuroreport 19:1793-6
Hacker, J; Pedersen, N P; Chieng, B C H et al. (2006) Enhanced Fos expression in glutamic acid decarboxylase immunoreactive neurons of the mouse periaqueductal grey during opioid withdrawal. Neuroscience 137:1389-96
Johnson, Emma E; Christie, MacDonald J; Connor, Mark (2005) The role of opioid receptor phosphorylation and trafficking in adaptations to persistent opioid treatment. Neurosignals 14:290-302
Chieng, Billy C H; Hallberg, Catharina; Nyberg, Fred J et al. (2005) Enhanced c-Fos in periaqueductal grey GABAergic neurons during opioid withdrawal. Neuroreport 16:1279-83
Bagley, Elena E; Gerke, Michelle B; Vaughan, Christopher W et al. (2005) GABA transporter currents activated by protein kinase A excite midbrain neurons during opioid withdrawal. Neuron 45:433-45
Vaughan, Christopher W; Bagley, Elena E; Drew, Geoffrey M et al. (2003) Cellular actions of opioids on periaqueductal grey neurons from C57B16/J mice and mutant mice lacking MOR-1. Br J Pharmacol 139:362-7
Hack, Stephen P; Vaughan, Christopher W; Christie, MacDonald J (2003) Modulation of GABA release during morphine withdrawal in midbrain neurons in vitro. Neuropharmacology 45:575-84
Mitchell, Vanessa A; Christie, MacDonald J; Vaughan, Christopher W (2003) Developmental changes in the alpha-adrenergic responses of rat periaqueductal grey neurons. Neuroreport 14:1637-9