4.7 Article

Shorter sleep time relates to lower human defensin 5 secretion and compositional disturbance of the intestinal microbiota accompanied by decreased short-chain fatty acid production

Journal

GUT MICROBES
Volume 15, Issue 1, Pages -

Publisher

TAYLOR & FRANCIS INC
DOI: 10.1080/19490976.2023.2190306

Keywords

Short sleep; alpha-defensin; Paneth cell; Intestinal microbiota; Short-chain fatty acid; Sleep disorder

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Sleep is crucial for our health, and insufficient sleep can increase the risk of diseases due to imbalanced intestinal microbiota. However, the mechanisms through which short sleep leads to dysbiosis remain unknown. This study aims to investigate the effects of short sleep on HD5 secretion and the intestinal microbiota.
Sleep is essential for our health. Short sleep is known to increase disease risks via imbalance of intestinal microbiota, dysbiosis. However, mechanisms by which short sleep induces dysbiosis remain unknown. Small intestinal Paneth cell regulates the intestinal microbiota by secreting antimicrobial peptides including a-defensin, human defensin 5 (HD5). Disruption of circadian rhythm mediating sleep-wake cycle induces Paneth cell failure. We aim to clarify effects of short sleep on HD5 secretion and the intestinal microbiota. Fecal samples and self-reported sleep time were obtained from 35 healthy middle-aged Japanese (41 to 60-year-old). Shorter sleep time was associated with lower fecal HD5 concentration (r = 0.354, p = 0.037), lower centered log ratio (CLR)-transformed abundance of short-chain fatty acid (SCFA) producers in the intestinal microbiota such as [Ruminococcus] gnavus group (r = 0.504, p = 0.002) and Butyricicoccus (r = 0.484, p = 0.003), and lower fecal SCFA concentration. Furthermore, fecal HD5 positively correlated with the abundance of these genera and SCFA concentration. These findings suggest that short sleep relates to disturbance of the intestinal microbiota via decreased HD5 secretion.

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