Study summary · research use only
Biochemical regulation of non-rapid-eye-movement sleep
Plain-language summary
Paraphrased from the published abstract below — not a verdict on whether anything works.
This review discusses biochemical substances proposed to regulate non-rapid-eye-movement sleep, an idea originating from classical endocrinology and supported by transfer experiments in which tissue fluids from sleeping animals induced sleep when injected into recipient animals across various species. The authors describe four substances identified through transfer experiments (delta sleep-inducing peptide, uridine, oxidized glutathione, and a muramyl peptide), and separately describe adenosine, prostaglandin D2, growth hormone-releasing hormone, interleukin-1, and tumor necrosis factor as substances with stronger experimental evidence for a role in promoting non-REM sleep by acting in the basal forebrain/anterior hypothalamus-preoptic region. A third group, including oleamide, cortistatin, cholecystokinin, insulin, and nitric oxide, is described as having less clear but suggestive evidence for a role in modulating this sleep stage.
Abstract
The concept, that sleep regulatory substances (sleep factors) exist, stems from classical endocrinology and is supported by positive transfer experiments in which tissue fluids obtained from sleepy or sleeping animals elicited sleep when injected into recipient animals. The transfer experiments concluded with the identification of four sleep factors: delta sleep-inducing peptide (DSIP), uridine, oxidized glutathione, and a muramyl peptide. A physiological sleep regulatory role, however, has not been determined for these substances. In contrast, transfer experiments did not play a part in the development of the strong experimental evidence that implicated the currently known sleep factors in sleep regulation. These substances include adenosine, prostaglandin D2 (PGD2), growth hormone-releasing hormone (GHRH), interleukin-1 (IL1) and tumor necrosis factor (TNF). They promote non-REMS in various species, inhibition of their action or endogenous production results in loss of spontaneous sleep, and their synthesis and/or release display variations correlating with sleep-wake activity. Although the source of these substances vary they all enhance sleep by acting in the basal forebrain/anterior hypothalamus--preoptic region. It is also characteristic of these substances that they interact in multiple ways often resulting in mutual stimulation or potentiation of each other. Finally, there is a third group of substances whose significance in sleep regulation is less clear but for which there are two or more lines of evidence suggesting that they may have a role in modulating non-REM sleep (NREMS). This group includes oleamide, cortistatin, cholecystokinin (CCK), insulin, and nitric oxide (NO). More sleep regulatory substances are likely to be discovered in the future although it is a long and difficult process requiring multiple laboratories to generate sufficient convincing data to implicate any one of them in sleep regulation.
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