Human alcoholics attempting to maintain abstinence often undergo major periods of craving, relapse and continued consumption. To address these problems, it is important to identify alterations in neural function that persist after ethanol exposure has ceased, as these changes are likely to enhance susceptibility to relapse-inducing stimuli. Functional changes within the nucleus accumbens (NAcb) could potently alter nduction of relapse, as the NAcb is implicated in responsiveness to many conditioned stimuli, as well as consumption of and reinstatement for drugs of abuse, and several human imaging studies suggest a role for the NAcb in cravings in alcoholics and cocaine addicts. The major goal of this proposal is to determine whether basic spike firing and dopaminergic modulation of firing in the NAcb are persistently altered during abstinence following repeated ethanol exposure. We focus on spike firing, as it is the predominant mechanism by which neurons transmit information. Spike firing will be analyzed using patchclamp electrophysiology in NAcb brain slices from adult animals that operantly self-administered ethanol for 40-45 days, then underwent 3 weeks of abstinence. Animals self-administering sucrose then undergoing abstinence will act as a control. Our preliminary data provide the first evidence that spike firing in NAcb core neurons is enhanced during abstinence following repeated ethanol exposure, which may be due to inhibition of a calcium-dependent potassium current (I[SKICa2+]).
Specific aim 1 will examine whether basic spike firing properties in the NAcb are altered after 3 and 6 months of abstinence following ethanol self-administration.
Specific aim 2 will use voltage-clamp methods and specific antagonists to characterize the calcium sources that contribute to I[SKCa2+[ activation, and which might be reduced in ethanol-trained animals during abstinence.
Specific aim 3 will investigate whether modulation of spike firing by dopamine is altered following repeated ethanol exposure, as dopamine signaling within the NAcb regulates reinstatement for several drugs of abuse, and NAcb dopamine can contribute strongly during ethanol self-administration. Altered spike firing and dopamine signaling in the NAcb could significantly influence the behavioral contribution of the NAcb, and in this way facilitate the onset of relapse. ? ? ?

Agency
National Institute of Health (NIH)
Institute
National Institute on Alcohol Abuse and Alcoholism (NIAAA)
Type
Research Project (R01)
Project #
5R01AA015358-02
Application #
7276133
Study Section
Neurotoxicology and Alcohol Study Section (NAL)
Program Officer
Greenwell, Thomas
Project Start
2006-09-01
Project End
2011-06-30
Budget Start
2007-07-01
Budget End
2008-06-30
Support Year
2
Fiscal Year
2007
Total Cost
$326,935
Indirect Cost
Name
Ernest Gallo Clinic and Research Center
Department
Type
DUNS #
173995366
City
Emeryville
State
CA
Country
United States
Zip Code
94608
Seif, Taban; Chang, Shao-Ju; Simms, Jeffrey A et al. (2013) Cortical activation of accumbens hyperpolarization-active NMDARs mediates aversion-resistant alcohol intake. Nat Neurosci 16:1094-100
Hopf, F Woodward; Sparta, Dennis R; Bonci, Antonello (2011) Translational models of interactions between stress and alcohol consumption: strengths and limitations. ILAR J 52:239-50
Seif, T; Makriyannis, A; Kunos, G et al. (2011) The endocannabinoid 2-arachidonoylglycerol mediates D1 and D2 receptor cooperative enhancement of rat nucleus accumbens core neuron firing. Neuroscience 193:21-33
Hopf, F Woodward; Simms, Jeffrey A; Chang, Shao-Ju et al. (2011) Chlorzoxazone, an SK-type potassium channel activator used in humans, reduces excessive alcohol intake in rats. Biol Psychiatry 69:618-24
Hopf, Frederic Woodward; Chang, Shao-Ju; Sparta, Dennis R et al. (2010) Motivation for alcohol becomes resistant to quinine adulteration after 3 to 4 months of intermittent alcohol self-administration. Alcohol Clin Exp Res 34:1565-73
Hopf, F Woodward; Seif, Taban; Mohamedi, Maysha L et al. (2010) The small-conductance calcium-activated potassium channel is a key modulator of firing and long-term depression in the dorsal striatum. Eur J Neurosci 31:1946-59
Hopf, F Woodward; Bowers, M Scott; Chang, Shao-Ju et al. (2010) Reduced nucleus accumbens SK channel activity enhances alcohol seeking during abstinence. Neuron 65:682-94
Abdallah, Luna; Bonasera, Stephen J; Hopf, F Woodward et al. (2009) Impact of serotonin 2C receptor null mutation on physiology and behavior associated with nigrostriatal dopamine pathway function. J Neurosci 29:8156-65