The recent progress in animal models of depression
- PMID: 28396255
- PMCID: PMC5605906
- DOI: 10.1016/j.pnpbp.2017.04.008
The recent progress in animal models of depression
Abstract
Major depression disorder (MDD) is a debilitating mental illness with significant morbidity and mortality. Despite the growing number of studies that have emerged, the precise underlying mechanisms of MDD remain unknown. When studying MDD, tissue samples like peripheral blood or post-mortem brain samples are used to elucidate underlying mechanisms. Unfortunately, there are many uncontrollable factors with such samples such as medication history, age, time after death before post-mortem tissue was collected, age, sex, race, and living conditions. Although these factors are critical, they introduce confounding variables that can influence the outcome profoundly. In this regard, animal models provide a crucial approach to examine neural circuitry and molecular and cellular pathways in a controlled environment. Further, manipulations with pharmacological agents and gene editing are accepted methods of studying depression in animal models, which is impossible to employ in human patient studies. Here, we have reviewed the most widely used animal models of depression and delineated the salient features of each model in terms of behavioral and neurobiological outcomes. We have also illustrated the current challenges in using these models and have suggested strategies to delineate the underlying mechanism associated with vulnerability or resilience to developing depression.
Keywords: Behavior; Depression; Model; Review; Rodents.
Copyright © 2017. Published by Elsevier Inc.
Conflict of interest statement
References
-
- Abdolmaleky HM, Thiagalingam S, Wilcox M. Genetics and epigenetics in major psychiatric disorders. Am J Pharmacogenomics. 2005;5(3):149–160. - PubMed
-
- Abrous DN, Koehl M, Le Moal M. Adult neurogenesis: from precursors to network and physiology. Physiol Rev. 2005;85(2):523–569. - PubMed
-
- Agid O, Kohn Y, Lerer B. Environmental stress and psychiatric illness. Biomed Pharmacother. 2000;54(3):135–141. - PubMed
-
- Alvarez C, Vitalis T, Fon E, Hanoun N, Hamon M, Seif I, Edwards R, Gaspar P, Cases O. Effects of genetic depletion of monoamines on somatosensory cortical development. Neuroscience. 2002;115(3):753–764. - PubMed
-
- Amat J, Baratta MV, Paul E, Bland ST, Watkins LR, Maier SF. Medial prefrontal cortex determines how stressor controllability affects behavior and dorsal raphe nucleus. Nat Neurosci. 2005;8(3):365–371. - PubMed
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