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Genetically predisposed and resilient animal models of depression reveal divergent responses to early-life adversity

dc.contributor.authorAshleigh J Whitney et al
dc.date.accessioned2026-01-28T06:12:25Z
dc.date.issued2024
dc.description1 Centre of Excellence for Pharmaceutical Sciences, Faculty of Health Sciences, North-West University, Potchefstroom, South Africa; 2 Human Metabolomics, Faculty of Natural and Agricultural Sciences, North-West University, Potchefstroom, South Africa; 3 Hypertension in African Research Team (HART), North-West University, Potchefstroom, South Africa and 4 MRC Research Unit for Hypertension and Cardiovascular Disease, North-West University, Potchefstroom, South Africa
dc.description.abstractObjective: Early-life adversity (ELA) is one of the strongest predictors of childhood depression that may be exacerbated by a genetic predisposition to develop depression. We therefore investigated the bio-behavioural effects of an early-life stressor in an accepted rodent model of depression. Methods: The Flinders sensitive line (FSL) and resistant line (FRL) rats were subjected to an early-life stressor, whereafter their bio-behavioural response during pubertal onset was evaluated. Male and female pups were maternally separated for 3 h per day from postnatal day 02 (PND02) to 17, when they were also weaned. Control animals were left undisturbed, until weaning on PND21. Depressive-like behaviour was analysed on PND21 and reassessed on PND36. Hippocampal monoamine levels, markers of oxidative stress and metabolic markers implicating mitochondrial function were also measured. Results: On PND21, the non-maternal separation and early weaning (non-MSEW) FSL rats spent 10% more time mobile than their FRL controls in the tail suspension test (TST) yet displayed increased depressive-like behaviour in the forced swim test (FST) on PND36. This depressive-like behaviour coincided with increased hippocampal norepinephrine levels, serotonin turnover and a dysfunctional redox state. Maternal separation and early weaning (MSEW) appeared to initially reduce early-life (PND21) depressivelike behaviour in the TST but then induced depressive-like behaviour on PND36 and increased norepinephrine levels more profoundly in the FRL rats. Conclusion: These findings highlight the need to further investigate the stress response pathway in these animals and that the absence or presence of genetic susceptibility may influence the presentation of ELA effects.
dc.identifier.citationWhitney AJ, Lindeque Z, Kruger R, and Steyn SF. (2024) Genetically predisposed and resilient animal models of depression reveal divergent responses to earlylife adversity. Acta Neuropsychiatrica 36:338–350.
dc.identifier.urihttp://hdl.handle.net/10394/45761
dc.language.isoen
dc.publisherElsevier Inc.
dc.subjectAdolescence
dc.subjectearly weaning
dc.subjectFlinders sensitive line
dc.subjectmaternal separation
dc.subjectoxidative stress
dc.titleGenetically predisposed and resilient animal models of depression reveal divergent responses to early-life adversity
dc.typeArticle

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