4.4 Article

Evaluation of reward processes in an animal model of depression

期刊

PSYCHOPHARMACOLOGY
卷 190, 期 4, 页码 555-568

出版社

SPRINGER
DOI: 10.1007/s00213-006-0630-x

关键词

animal model; reward; depression; antidepressant

资金

  1. NIMH NIH HHS [U01 MH69062] Funding Source: Medline
  2. NATIONAL INSTITUTE OF MENTAL HEALTH [U01MH069062] Funding Source: NIH RePORTER

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Rationale Anhedonia is a core symptom of major depression. Deficits in reward function, which underlie anhedonia, can be readily assessed in animals. Therefore, anhedonia may serve as an endophenotype for understanding the neural circuitry and molecular pathways underlying depression. Objective Surprisingly, there is scant knowledge regarding alterations in brain reward function after olfactory bulbectomy (OB), an animal model which results in a behavioural syndrome responsive to chronic antidepressant treatment. Therefore, the present studies aimed to assess reward function after bulbectomy. Materials and methods The present study utilized sucrose preference, cocaine-induced hyperlocomotion and intra-cranial self-stimulation (ICSS) responding to examine reward processes in the OB model. Results Bulbectomized animals showed a marked preference (> 90%) for 0.8% sucrose solution compared with water; similar to the preference exhibited by sham controls. Importantly, there were pronounced deficits in brain reward function, as assessed using ICSS, which lasted 8 days before returning to baseline levels. Furthermore, bulbectomized animals were hyper-responsive to the locomotor stimulating properties of an acute and a repeated cocaine regimen. However, no difference in ICSS facilitation was observed in response to an acute cocaine injection. Conclusions Taken together, these results suggest that bulbectomized rats display alterations in brain reward function, but these changes are not long-lasting and thus, not amenable to investigating the effects of pharmacological interventions. However, given that OB animals are hypersensitive to drugs of abuse, bulbectomy may be an appropriate inducing factor for the development of animal models of co-morbid depression and drug dependence.

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