桑叶对小鼠的睡眠改善作用及其潜在机制

IF 2.5 3区 医学 Q3 CHEMISTRY, MEDICINAL Fitoterapia Pub Date : 2024-09-08 DOI:10.1016/j.fitote.2024.106205
Xiaoran Kong , Xiaolu Zhou , Rui Li , Qiaozhen Kang , Limin Hao , Jiaqing Zhu , Jike Lu
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引用次数: 0

摘要

由于睡眠不足已成为现代社会普遍关注的问题,本研究探讨了桑叶乙醇提取物(MLE)潜在的改善睡眠作用及其相关机制。结果表明,桑叶乙醇提取物能通过增加小鼠血清、下丘脑和海马中5-羟色胺和GABA的释放,使小鼠的睡眠潜伏期明显缩短33%,睡眠持续时间延长56%,睡眠比率增加。代谢分析表明,苯丙氨酸代谢、精氨酸和脯氨酸代谢可能是 MLE 改善睡眠的潜在途径。网络药理学和LC-MS分析表明,MLE中改善睡眠的主要活性成分可能是木犀草素、山奈酚、柚皮苷、吗啉、豆甾醇和β-谷甾醇。进一步的分子对接和 qRT-PCR 结果表明,MLE 改善睡眠的关键靶点可能是 MAOA、GABRA1 和 GABRA2。总之,MLE 表现出了突出的改善睡眠效果,在作为新型改善睡眠功能食品方面具有巨大的应用潜力。
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Sleep-improving effect and the potential mechanism of Morus alba L. on mice

As insufficient sleep has become a widespread concern in modern society, potential sleep-improving effect of mulberry (Morus alba L.) leaf ethanol extract (MLE) and the related mechanism were investigated in the present study. According to the results, MLE could significantly shorten sleep latency by 33 %, extend sleep duration by 56 % and increase sleep ratio of mice through increasing 5-HT and GABA release in serum, hypothalamus and hippocampus. Metabonomic analysis showed that phenylalanine metabolism, arginine and proline metabolism might be the potential pathways of MLE to improve sleep. Network pharmacological and LC-MS analysis suggested that the key sleep-improving active ingredients in MLE might be luteolin, kaempferol, naringenin, morin, stigmasterol and β-sitosterol. Further molecular docking and qRT-PCR results demonstrated that the key targets for MLE to improve sleep might be MAOA, GABRA1 and GABRA2. In conclusion, MLE showed outstanding sleep-improving effect and great potential for the application as novel sleep-improving functional food.

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来源期刊
Fitoterapia
Fitoterapia 医学-药学
CiteScore
5.80
自引率
2.90%
发文量
198
审稿时长
1.5 months
期刊介绍: Fitoterapia is a Journal dedicated to medicinal plants and to bioactive natural products of plant origin. It publishes original contributions in seven major areas: 1. Characterization of active ingredients of medicinal plants 2. Development of standardization method for bioactive plant extracts and natural products 3. Identification of bioactivity in plant extracts 4. Identification of targets and mechanism of activity of plant extracts 5. Production and genomic characterization of medicinal plants biomass 6. Chemistry and biochemistry of bioactive natural products of plant origin 7. Critical reviews of the historical, clinical and legal status of medicinal plants, and accounts on topical issues.
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