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Journal ArticleDOI

Stress and the brain: from adaptation to disease

TLDR
In response to stress, the brain activates several neuropeptide-secreting systems, which eventually leads to the release of adrenal corticosteroid hormones, which subsequently feed back on the brain and bind to two types of nuclear receptor that act as transcriptional regulators as mentioned in this paper.
Abstract
In response to stress, the brain activates several neuropeptide-secreting systems. This eventually leads to the release of adrenal corticosteroid hormones, which subsequently feed back on the brain and bind to two types of nuclear receptor that act as transcriptional regulators. By targeting many genes, corticosteroids function in a binary fashion, and serve as a master switch in the control of neuronal and network responses that underlie behavioural adaptation. In genetically predisposed individuals, an imbalance in this binary control mechanism can introduce a bias towards stress-related brain disease after adverse experiences. New candidate susceptibility genes that serve as markers for the prediction of vulnerable phenotypes are now being identified.

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How can we realize the promise of personalized antidepressant medicines

TL;DR: When data from genomics, proteomics, metabolomics, neuroimaging and neuroendocrinology are used in combination, they could lead to the development of effective personalized antidepressant treatment that is based on both genotypes and biomarkers.
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Depression: An Evolutionarily Conserved Mechanism to Terminate Separation Distress? A Review of Aminergic, Peptidergic, and Neural Network Perspectives

TL;DR: It is suggested that core factors form an interactive and even synergistic “depressive matrix,” which argues against any “single-factor” theory and suggests active synergisms between factors, as well as a complex recursive control architecture regulating both entry and exit from depression.
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Hippocampal volume reduction and HPA-system activity in major depression.

TL;DR: Hippocampal volumes were significantly reduced in the patient group even after adjusting for intracranial brain volume (ICV) and age, and age was significantly negatively correlated with uncorrected hippocampal volumes.
Journal ArticleDOI

Lifestyle Modulators of Neuroplasticity: How Physical Activity, Mental Engagement, and Diet Promote Cognitive Health during Aging.

TL;DR: The aims of this review are to evaluate the relationship between modifiable lifestyle factors, neuroplasticity, and optimal brain health during aging; to identify putative mechanisms that contribute positive brain aging; and to highlight future directions for scientists and clinicians.
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Adverse effects of psychosocial work factors on blood pressure: systematic review of studies on demand-control-support and effort-reward imbalance models.

TL;DR: A more consistent adverse effect of psychosocial work factors was observed among men than women and in studies of higher methodological quality, which contribute to the current effort of primary prevention of cardiovascular disease.
References
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Journal ArticleDOI

Influence of Life Stress on Depression: Moderation by a Polymorphism in the 5-HTT Gene

TL;DR: Evidence of a gene-by-environment interaction is provided, in which an individual's response to environmental insults is moderated by his or her genetic makeup.
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How do glucocorticoids influence stress responses? Integrating permissive, suppressive, stimulatory, and preparative actions.

TL;DR: This review considers recent findings regarding GC action and generates criteria for determining whether a particular GC action permits, stimulates, or suppresses an ongoing stress-response or, as an additional category, is preparative for a subsequent stressor.
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Epigenetic programming by maternal behavior.

TL;DR: It is shown that an epigenomic state of a gene can be established through behavioral programming, and it is potentially reversible, suggesting a causal relation among epigenomicState, GR expression and the maternal effect on stress responses in the offspring.
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Requirement of Hippocampal Neurogenesis for the Behavioral Effects of Antidepressants

TL;DR: It is shown that disrupting antidepressant-induced neurogenesis blocks behavioral responses to antidepressants, suggesting that the behavioral effects of chronic antidepressants may be mediated by the stimulation of neuroGenesis in the hippocampus.
Journal ArticleDOI

A Syndrome produced by Diverse Nocuous Agents

Hans Selye
- 01 Jul 1936 - 
TL;DR: If the organism is severely damaged by acute non-specific nocuous agents such as exposure to cold, surgical injury, production of spinal shock, excessive muscular exercise, or intoxications with sublethal doses of diverse drugs, a typical syndrome appears, the symptoms of which are independent of the nature of the damaging agent or the pharmacological type of the drug employed.
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