Stress and Sleep Disorder

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Kuem Sun Han, Lin Kim, Insop Shim
2012-12-30

cortisolhypothalamic-pituitary-adrenal axisneuroendocrine stress systemssleep regulationstress-induced insomnia
The purpose of this study was to review potential, physiological, hormonal and neuronal mechanisms that may mediate the sleep changes. This paper investigates the literatures regarding the activity of the hypothalamic-pituitary-adrenal (HPA) axis, one of the main neuroendocrine stress systems during sleep in order to identify relations between stress and sleep disorder and the treatment of stress-induced insomnia. Sleep and wakefulness are regulated by the aminergic, cholinergic brainstem and hypothalamic systems. Activation of the HPA and/or the sympathetic nervous systems results in wakefulness and these hormones including corticotropin-releasing hormone (CRH), adrenocorticotropic hormone (ACTH), cortisol or corticosterone, noradrenaline, and adrenaline, are associated with attention and arousal. Stress-related insomnia leads to a vicious circle by activating the HPA system. An awareness of the close interaction between sleep and stress systems is emerging and the hypothalamus is now recognized as a key center for sleep regulation, with hypothalamic neurontransmitter systems providing the framework for therapeutic advances. An updated understanding of these systems may allow researchers to elucidate neural mechanisms of sleep disorder and to develop effective intervention for sleep disorder.
1
Activation of the hypothalamic-pituitary-adrenal or sympathetic nervous systems promotes wakefulness through stress-related arousal hormones.
2
CRH, ACTH, cortisol or corticosterone, noradrenaline, and adrenaline are associated with attention and heightened arousal during stress.
3
Sleep and wakefulness are regulated by interacting aminergic, cholinergic brainstem, and hypothalamic systems.
4
Stress-related insomnia may create a vicious cycle by repeatedly activating the HPA axis and worsening sleep disruption.
5
The hypothalamus is identified as a central sleep-regulation site whose neurotransmitter systems may support development of treatments for stress-induced insomnia.

stress-related sleep disorder, particularly stress-induced insomnia

physiological, hormonal, and neuronal mechanisms linking stress-system activation—especially the HPA axis and sympathetic nervous system—to sleep–wake regulation and stress-induced insomnia

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2012-12-30
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Kuem Sun Han
Lin Kim
Insop Shim
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