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Published on: December 2, 2015
CRH, stress, and major depression: a psychobiological interplay
1Department of Molecular Genetics and Collaborative Antwerp Psychiatric Research Institute, University of Antwerp, Belgium.
Insights
Major depressive disorder (MDD) is linked to overactive corticotropin-releasing hormone (CRH) systems. This review explores how CRH hyperdrive, influenced by genetics and early stress, contributes to MDD.
Area of Science:
- Neurobiology
- Psychiatry
- Endocrinology
Background:
- Major depressive disorder (MDD) is a leading cause of disability.
- Contributing factors include stress, trauma, illness, and genetics.
- The hypothalamic-pituitary-adrenal (HPA) axis is implicated in MDD pathophysiology.
Purpose of the Study:
- To review evidence linking corticotropin-releasing hormone (CRH) hyperdrive to MDD.
- To explore the roles of genetics and early life stress in CRH dysregulation.
- To propose an integrative hypothesis for MDD with CRH hyperdrive at its core.
Main Methods:
- Review of biochemical studies, functional HPA axis tests, neuroimaging, and postmortem studies.
- Analysis of transgenic animal and human association studies on relevant genes.
- Examination of animal and human data on the effects of early adverse experiences.
Main Results:
- Evidence suggests HPA axis hyperactivity in MDD, likely due to CRH hyperdrive.
- Genetic factors and early life trauma can predispose individuals to CRH hyperdrive.
- CRH hyperdrive leads to detrimental emotional and somatic effects.
Conclusions:
- CRH hyperdrive is a fundamental neurobiological correlate of MDD.
- An integrative hypothesis positions CRH hyperdrive as central to MDD, bridging biological and psychological perspectives.
- Understanding CRH mechanisms offers new avenues for MDD research and treatment.
Abstract:
Major depressive disorder (MDD) is a complex disease and is one of the leading causes of disability in our society. The provoking factors are multiple; acute and chronic psychological stress, severe early trauma experiences, somatic disease, and genetic factors all play a role. This review focuses on hyperdrive of corticotropin-releasing hormone (CRH) as the fundamental neurobiological correlate of MDD. CRH plays a key role in the adaptation to acute stress, but chronic CRH hyperdrive leads to a number of disadvantageous emotional and somatic effects. The evidence that the HPA axis is hyperactive in MDD, probably as a result of a primary hyperdrive of CRH, comes from multiple sources: biochemical studies, functional HPA axis tests, neuroimaging and postmortem studies, and clinical trials with HPA axis-related compounds. The liability to develop CRH hyperdrive is probably partly genetic. For a number of relevant genes, transgenic animal studies and human association studies indicate a role in HPA axis regulation and the liability to develop CRH hyperdrive. These data are reviewed. Finally, early adverse experience can produce a lasting effect on HPA axis regulation as well, probably leading to a lifelong tendency to develop chronic CRH hyperdrive in response to stress. This has been shown in a number of animal studies, and recently some data in humans with early trauma have become available as well. Taken together, these findings allow formulating an integrative hypothesis, with CRH hyperdrive at the core, bridging the old dichotomy between biology and psychology in our thinking about MDD.
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