Study on the Effect and Mechanism of Fasting on Human Metabolism and Immunity
试验速览
- 阶段
- 不适用
- 状态
- 招募中
- 入组人数
- 30
- 试验地点
- 2
- 主要终点
- The change of cytokine levels in subjects' blood (and/or urine/stool) samples from T1 to T2, T3, T4, and T5.
研究概览
简要总结
This study aims to investigate the effects of 1-week fasting but not prohibiting water drink on human immune function, metabolic indicators, and brain function in human, and to explore the underlying mechanisms of these changes from a multi-omics perspective and/or other ways.
详细描述
As a historic practice, fasting has a place in religion, culture and modern medicine. In recent years, studies have found that moderate food interruption can positively affect metabolism, immunity, and brain function. It can promote cellular autophagy, improve insulin sensitivity, reduce inflammation, and may protect brain health. Intermittent fasting is thought to improve metabolic health, reduce the risk of obesity and type 2 diabetes, and promote cellular self-repair by regulating signaling pathways. Food fasting also improves insulin sensitivity, reduces blood glucose, reduces inflammatory markers, and improves fat oxidation rate, contributing in the prevention and treatment of metabolic diseases. Moreover, food fasting can regulate immune cell function, reduce chronic inflammation, and may regulate immune function by affecting gut microbiota diversity. In terms of brain function, fasting may improve cognitive function by promoting neuroplasticity and enhancing neuroprotective mechanisms. However, most of the existing studies focus on animal experiments, lack large-scale human clinical trials, and the mechanism of feeding is not completely clear. This study will explore the effects of complete fasting for 1 week (but can feel free to drink water) on human immune function, metabolic indicators and brain function in human, and analyze its change mechanism from a multi-omics perspective and/or other ways, so as to provide new data support for understanding the biological mechanism of fasting, and promote its application in disease prevention and treatment.
研究设计
- 研究类型
- Interventional
- 分配方式
- Na
- 干预模型
- Single Group
- 主要目的
- Other
- 盲法
- None
入排标准
- 年龄范围
- 18 Years 至 65 Years(Adult, Older Adult)
- 性别
- All
- 接受健康志愿者
- 是
入选标准
- •Age 18-65 years old, gender is not limited;
- •Can tolerate a certain degree of hunger;
- •Can voluntarily sign written informed consent.
排除标准
- •Women planning pregnancy, pregnancy and breastfeeding;
- •Previous liver disease, chronic kidney disease, heart disease and cerebrovascular disease;
- •Suffering from acute infectious diseases or chronic wasting diseases;
- •Have used antibiotic drugs in the past 3 months, and have used prebiotic or probiotic supplements or products in the past month;
- •Participate in other clinical investigators within 3 months before enrollment in this study.
结局指标
主要结局
The change of cytokine levels in subjects' blood (and/or urine/stool) samples from T1 to T2, T3, T4, and T5.
时间窗: T1 (Baseline/Pre-fasting): Day 0; T2 (End of one week fasting): Day 8; T3 (End of one week re-feeding): Day 15; T4 (End of four weeks re-feeding): Day 36; T5 (End of twelve weeks re-feeding): Day 92.
Cytokines measured included pro-inflammatory cytokines such as IL-1β, IL-6, and TNF-α, as well as anti-inflammatory cytokines such as IL-10 and TGF-β.
The change of metabolite levels in subjects' blood (and/or urine/stool) samples from T1 to T2, T3, T4, and T5.
时间窗: T1 (Baseline/Pre-fasting): Day 0; T2 (End of one week fasting): Day 8; T3 (End of one week re-feeding): Day 15; T4 (End of four weeks re-feeding): Day 36; T5 (End of twelve weeks re-feeding): Day 92.
Metabolites measured include metabolic levels of amino acids, short-chain fatty acids, steroid hormones, fat-soluble vitamins, and other substances.
次要结局
- The change in concentration of intestinal flora species,rate of change in bacterial diversity,abundance of functional genes in subjects' stool samples from T1 to T2, T3, T4, and T5.(T1 (Baseline/Pre-fasting): Day 0; T2 (End of one week fasting): Day 8; T3 (End of one week re-feeding): Day 15; T4 (End of four weeks re-feeding): Day 36; T5 (End of twelve weeks re-feeding): Day 92.)
- The change of homocysteine levels from T1 to T2, T3, T4, and T5(T1 (Baseline/Pre-fasting): Day 0; T2 (End of one week fasting): Day 8; T3 (End of one week re-feeding): Day 15; T4 (End of four weeks re-feeding): Day 36; T5 (End of twelve weeks re-feeding): Day 92.)
- The change of brain function from T1 to T2, T3, T4, and T5.(T1 (Baseline/Pre-fasting): Day 0; T2 (End of one week fasting): Day 8; T3 (End of one week re-feeding): Day 15; T4 (End of four weeks re-feeding): Day 36; T5 (End of twelve weeks re-feeding): Day 92.)
- The change of blood lipid levels from T1 to T2, T3, T4, and T5.(T1 (Baseline/Pre-fasting): Day 0; T2 (End of one week fasting): Day 8; T3 (End of one week re-feeding): Day 15; T4 (End of four weeks re-feeding): Day 36; T5 (End of twelve weeks re-feeding): Day 92.)
- The change of body fat percentage from T1 to T2, T3, T4, and T5.(T1 (Baseline/Pre-fasting): Day 0; T2 (End of one week fasting): Day 8; T3 (End of one week re-feeding): Day 15; T4 (End of four weeks re-feeding): Day 36; T5 (End of twelve weeks re-feeding): Day 92.)
- The change of insulin levels in subjects' blood samples from T1 to T2, T3, T4, and T5.(T1 (Baseline/Pre-fasting): Day 0; T2 (End of one week fasting): Day 8; T3 (End of one week re-feeding): Day 15; T4 (End of four weeks re-feeding): Day 36; T5 (End of twelve weeks re-feeding): Day 92.)
- The change of thyroid function level from T1 to T2, T3, T4, and T5.(T1 (Baseline/Pre-fasting): Day 0; T2 (End of one week fasting): Day 8; T3 (End of one week re-feeding): Day 15; T4 (End of four weeks re-feeding): Day 36; T5 (End of twelve weeks re-feeding): Day 92.)
