Management of Gut Microbiota to Improve Sleep Dysfunction for Children with Autism-Spectrum Disorders

V. Senthilraja, E. Yang, A. Reddy, E. Liu, Himanshu Wagh
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引用次数: 1

Abstract

Many children with Autism-Spectrum Disorders (ASD) struggle with sleep dysfunction. This can be caused by a lack of important gut microbiota (GM) that have the ability to influence functions of the nervous system through the gut-brain axis. The metabolites of GM function are responsible for influencing the production of pertinent sleep hormones, such as melatonin and serotonin. The research has identified lower abundance levels of the gut microbiota species Faecalibacterium and Agathobacter in children with ASD that struggled with sleep disorders. When exploring their impact on sleep hormone production, a positive correlation was identified between these species of GM and melatonin levels, which regulates circadian sleep cycles. In addition, a negative correlation was observed between these species of GM and serotonin levels, which high levels of can lead to wakefulness and sleep dysfunction. To improve GM levels in children with ASD, a Bimuno® galactooligosaccharide (B-GOS®) prebiotic intervention was tested in children with ASD. While this intervention led to improved GM levels and increased levels of Faecalibacterium growth, a significant difference was not noticed between groups. Furthermore, an analysis of probiotic intervention studies in various individuals revealed the ability to improve sleep metric scores through consumption of probiotics. These findings can be further explored in children with ASD for potential treatments for sleep disorders.
肠道菌群管理改善自闭症谱系障碍儿童睡眠功能障碍
许多患有自闭症谱系障碍(ASD)的儿童都在与睡眠障碍作斗争。这可能是由于缺乏能够通过肠-脑轴影响神经系统功能的重要肠道微生物群(GM)造成的。转基因功能的代谢物负责影响相关睡眠激素的产生,如褪黑激素和血清素。该研究发现,患有睡眠障碍的ASD儿童的肠道微生物群中,粪杆菌和无杆菌的丰度较低。在探索它们对睡眠激素产生的影响时,发现这些转基因物种与调节昼夜睡眠周期的褪黑激素水平呈正相关。此外,研究还发现这些GM与血清素水平呈负相关,血清素水平高会导致清醒和睡眠障碍。为了提高ASD儿童的GM水平,在ASD儿童中测试了Bimuno®半乳糖低聚糖(B-GOS®)益生元干预。虽然这种干预导致转基因水平的提高和Faecalibacterium生长水平的增加,但两组之间没有发现显著差异。此外,对不同个体的益生菌干预研究的分析显示,通过食用益生菌可以改善睡眠指标得分。这些发现可以在自闭症儿童中进一步探索睡眠障碍的潜在治疗方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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