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Updated: Oct 3, 2025

Developing a Rat Model for Bipolar Disorder
Published on: May 2, 2025
Endogenous Cardiac Steroids in Bipolar Disorder: State of the Art
Rif S El-Mallakh1, Vishnu Priya Sampath2, Noa Horesh2
1Mood Disorders Research Program, Depression Center, Department of Psychiatry and Behavioral Sciences, University of Louisville School of Medicine, Louisville, KY 40202, USA.
Insights
Bipolar disorder (BD) may stem from altered brain metabolism of endogenous cardiac steroids (ECS), which regulate ion balance. Lower ECS levels in manic individuals suggest a link between ECS dysfunction and mood instability in BD.
Area of Science:
- Neuroscience
- Psychiatry
- Biochemistry
Background:
- Bipolar disorder (BD) is a severe psychiatric illness with suboptimal treatments.
- Cationic homeostasis dysregulation is a key aspect of BD pathophysiology.
- Mood stabilizers correct ionic balance, suggesting a role for ion regulation in BD.
Purpose of the Study:
- To present a comprehensive model of the role of endogenous cardiac steroids (ECS) in the etiology of BD.
- To propose that altered ECS metabolism in the brain contributes to BD's biochemical changes and mood symptoms.
Main Methods:
- Review of existing literature and data from animal models and human studies.
- Investigation of the Na+, K+-ATPase-ECS system's involvement in BD.
- Analysis of ECS metabolism, circulating levels, and synthesis regulation in BD.
Main Results:
- Excess ECS induce abnormal mood and activity in animal models.
- Antibody-mediated removal of ECS normalizes mood in animal models.
- Lower circulating ECS levels and impaired upregulation of ECS synthesis are observed in individuals with BD.
Conclusions:
- Strong evidence supports the involvement of ion dysregulation and ECS function in bipolar illness.
- Altered ECS metabolism is a proposed mechanism underlying brain dysfunction and mood symptoms in BD.
- Further research is needed to fully characterize these abnormalities and guide future clinical directions.
Abstract:
Bipolar disorder (BD) is a severe psychiatric illness with a poor prognosis and problematic, suboptimal, treatments. Treatments, borne of an understanding of the pathoetiologic mechanisms, need to be developed in order to improve outcomes. Dysregulation of cationic homeostasis is the most reproducible aspect of BD pathophysiology. Correction of ionic balance is the universal mechanism of action of all mood stabilizing medications. Endogenous sodium pump modulators (collectively known as endogenous cardiac steroids, ECS) are steroids which are synthesized in and released from the adrenal gland and brain. These compounds, by activating or inhibiting Na+, K+-ATPase activity and activating intracellular signaling cascades, have numerous effects on cell survival, vascular tone homeostasis, inflammation, and neuronal activity. For the past twenty years we have addressed the hypothesis that the Na+, K+-ATPase-ECS system may be involved in the etiology of BD. This is a focused review that presents a comprehensive model pertaining to the role of ECS in the etiology of BD. We propose that alterations in ECS metabolism in the brain cause numerous biochemical changes that underlie brain dysfunction and mood symptoms. This is based on both animal models and translational human results. There are data that demonstrate that excess ECS induce abnormal mood and activity in animals, while a specific removal of ECS with antibodies normalizes mood. There are also data indicating that circulating levels of ECS are lower in manic individuals, and that patients with BD are unable to upregulate synthesis of ECS under conditions that increase their elaboration in non-psychiatric controls. There is strong evidence for the involvement of ion dysregulation and ECS function in bipolar illness. Additional research is required to fully characterize these abnormalities and define future clinical directions.
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