Attempts to determine the neural circuitry where addictive drugs act to establish drug-seeking habits are aided by demonstration of drug self-administration directly into local brain regions. In the past year we have discovered that rats will learn to lever-press for injections of the excitatory amino acid AMPA into the cholinergic agent carbachol and the recently isolated endogenous ligand for the mu opiate receptor, endomorphin-1, directly into the ventral tegmental area, where the mesolimbic dopamine system originates. In each case we find evidence for differential effectiveness in the rostral and caudal portions of the ventral tegmental area. Endomorphin-1 was not self-administered into nucleus accumbens, where the mesolimbic dopamine system terminates. Animals would respond for neither substance when injected dorsal to the ventral tegmental area, ruling out diffusion up the cannula shaft to a distal site of action. These findings implicate projections from the pedunculopontine tegmental or dorsolateral tegmental pontine nuclei and from the arcuate nucleus in the neural network within which addictive drugs establish compulsive drug self-administration habits. We have begun to trace the evoked consequences of rewarding carbachol injections by assessing early immediate gene expression in distant brain regions.

Agency
National Institute of Health (NIH)
Institute
National Institute on Drug Abuse (NIDA)
Type
Intramural Research (Z01)
Project #
1Z01DA000439-05
Application #
6987783
Study Section
(BNRB)
Project Start
Project End
Budget Start
Budget End
Support Year
5
Fiscal Year
2004
Total Cost
Indirect Cost
Name
National Institute on Drug Abuse
Department
Type
DUNS #
City
State
Country
United States
Zip Code
Shin, Rick; Cao, Junran; Webb, Sierra M et al. (2010) Amphetamine administration into the ventral striatum facilitates behavioral interaction with unconditioned visual signals in rats. PLoS One 5:e8741
Shin, Rick; Ikemoto, Satoshi (2010) Administration of the GABAA receptor antagonist picrotoxin into rat supramammillary nucleus induces c-Fos in reward-related brain structures. Supramammillary picrotoxin and c-Fos expression. BMC Neurosci 11:101
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Ikemoto, Satoshi; Qin, Mei; Liu, Zhong-Hua (2005) The functional divide for primary reinforcement of D-amphetamine lies between the medial and lateral ventral striatum: is the division of the accumbens core, shell, and olfactory tubercle valid? J Neurosci 25:5061-5
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Ikemoto, Satoshi; Donahue, Kathleen M (2005) A five-minute, but not a fifteen-minute, conditioning trial duration induces conditioned place preference for cocaine administration into the olfactory tubercle. Synapse 56:57-9

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