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The effects of glycine on subjective daytime performance in partially sleep-restricted healthy volunteers.

Makoto Bannai, Nobuhiro Kawai, Kaori Ono, Keiko Nakahara, Noboru Murakami
Other Frontiers in neurology 2012 27 trích dẫn

Thiết kế nghiên cứu

Loại nghiên cứu
Randomized Controlled Trial
Đối tượng nghiên cứu
Healthy volunteers with sleep restriction (25% less than usual sleep time for 3 consecutive nights)
Can thiệp
The effects of glycine on subjective daytime performance in partially sleep-restricted healthy volunteers. Glycine 3 g before bedtime
Đối chứng
placebo
Kết quả chính
Daytime sleepiness, fatigue, and psychomotor vigilance performance in sleep-restricted subjects
Xu hướng hiệu quả
Positive
Nguy cơ sai lệch
Moderate

Tóm tắt

Approximately 30% of the general population suffers from insomnia. Given that insomnia causes many problems, amelioration of the symptoms is crucial. Recently, we found that a non-essential amino acid, glycine subjectively and objectively improves sleep quality in humans who have difficulty sleeping. We evaluated the effects of glycine on daytime sleepiness, fatigue, and performances in sleep-restricted healthy subjects. Sleep was restricted to 25% less than the usual sleep time for three consecutive nights. Before bedtime, 3 g of glycine or placebo were ingested, sleepiness, and fatigue were evaluated using the visual analog scale (VAS) and a questionnaire, and performance were estimated by personal computer (PC) performance test program on the following day. In subjects given glycine, the VAS data showed a significant reduction in fatigue and a tendency toward reduced sleepiness. These observations were also found via the questionnaire, indicating that glycine improves daytime sleepiness and fatigue induced by acute sleep restriction. PC performance test revealed significant improvement in psychomotor vigilance test. We also measured plasma melatonin and the expression of circadian-modulated genes expression in the rat suprachiasmatic nucleus (SCN) to evaluate the effects of glycine on circadian rhythms. Glycine did not show significant effects on plasma melatonin concentrations during either the dark or light period. Moreover, the expression levels of clock genes such as Bmal1 and Per2 remained unchanged. However, we observed a glycine-induced increase in the neuropeptides arginine vasopressin and vasoactive intestinal polypeptide in the light period. Although no alterations in the circadian clock itself were observed, our results indicate that glycine modulated SCN function. Thus, glycine modulates certain neuropeptides in the SCN and this phenomenon may indirectly contribute to improving the occasional sleepiness and fatigue induced by sleep restriction.

Tóm lược

Glycine modulates certain neuropeptides in the SCN and this phenomenon may indirectly contribute to improving the occasional sleepiness and fatigue induced by sleep restriction.

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