Effect of the Physical Inactivity Duration on Postprandial Lipid Metabolism the Morning After Exercise
试验速览
- 阶段
- 不适用
- 状态
- 已完成
- 入组人数
- 8
- 试验地点
- 2
- 主要终点
- Plasma triglyceride
研究概览
简要总结
The purpose of the study is to investigate the effect of different periods of physical inactivity on postprandial lipid metabolism in the morning after exercise by measuring plasma triglyceride levels and fat oxidation (burning). The study is a crossover intervention with all healthy participants performing three trials varying in length of physical inactive (12 hours, 24 hours, and 36 hours). All trials include a physical activity control phase (>10,000 steps/24hr), a physical inactive phase (<1,000 - 1,500 steps/12hr), a moderate intensity cycling session, and a high-fat tolerance test.
详细描述
Physical inactivity impairs health, including contributing to chronic diseases and increasing the risk of mortality, especially related to cardiovascular diseases. Regular exercise can help reduce the risk of cardiovascular diseases, but it is not enough on its own. Prolonged sitting and having too little of light intensity of physical activity (like stepping) means lacking physical activity and is harmful for health, even for those who meet the exercise guidelines. Although an acute bout of exercise is able to improve the postprandial lipid metabolism (i.e., attenuate postprandial lipemia), it has been found that this benefit is abolished after a period of physical inactivity. Specifically, taking 8,500 steps per day or more (i.e., being physical active) would assure the benefits in postprandial lipid metabolism from exercise, while taking 5,000 steps or less (i.e., being physical inactive) would abolish this benefit from exercise. Investigators termed this phenomenon 'exercise resistance'. However, it is still unknown of how long of the of a period of physical inactive will cause 'exercise resistance'. Therefore, investigators propose this study to focuses on the effect of the length of physical inactivity on postprandial lipid metabolism the following morning after exercise. Three intervention trials differentiate with different periods of physical inactivity (12 hours, 24 hours, and 36 hours) will be involved for this purpose. The study aims to determine how long a period of physical inactivity is required for 'exercise resistance' to occur.
Twelve male and female participants will be recruited from Austin community to participate this study. All participants will self-report that they have been medically cleared for exercise by submitting a health history questionnaire. Researchers will screen all forms filled out by participants and confirm that participants are eligible for this study. Participants will receive both written and verbal descriptions of the study procedures and measurements, and provide written informed consent.
The study requires at least 7 visits besides the day for questionnaire filling and informed consent signing. One for preliminary test, and 6 for the three trials (one cycling session and one high fat tolerance tests for each trial). All visits will take place in the Human Performance Lab (BEL 820) at the University of Texas at Austin. All participants will complete one preliminary test (incremental exercise test) on a cycle ergometer before three intervention trials in a randomized order.
During the incremental exercise test, participant will cycling on a cycle ergometer with a mask. Participant's breathing air will go through the tubes connecting with the mask. By analyzing the exhaled gas during the test, the maximal oxygen consumption (VO2max) will be measured for determining the cycling intensity for the cycling in the three trials. Between trials, there will be a washout period of at least five days. The three trials varies in length of physical inactive (12 hours, 24 hours, and 36 hours). Thus, the three trials are marked as 12-hr trial, 24-hr trial, and 36-hr trial. During the cycling sessions, participant will cycle for 1 hour at an intensity of 60-65% of VO2max (moderate intensity) on a cycling ergometer. The high fat tolerance test (HFTT) day will be the day for collecting primary data.
To highlight the effect of physical inactivity duration on causing exercise resistance, all HFTT will start at the same time on the testing day of each trial, which is 9 am on the final day of each trial. For easier understanding, the events sequence in each of the trails is listed below in a backward order,
研究设计
- 研究类型
- Interventional
- 分配方式
- Na
- 干预模型
- Crossover
- 主要目的
- Basic Science
- 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
- •Healthy male or female between the age of 18-65 years old
- •Untrained or recreationally active
- •No metabolic disease, no lactose intolerance, not taking medicines altering lipid or carbohydrate metabolism
- •No injury or disease affecting the cycling ability.
排除标准
- •On medications that alter lipid or carbohydrate metabolism
- •lactose intolerant
- •General health problems: Heart problems or coronary artery disease, hypertension, lung or respiratory problems.
- •Exercise problems: Chest pain, fainting, palpitations, told to give up sports because of health problems.
结局指标
主要结局
Plasma triglyceride
时间窗: A total of 5 measurements will be done, specifically are before the high fat meal (baseline) and each hour after the high fat meal for 4 hours. The whole test takes about 5 hours from 9 am to 2 pm on the last day of each trial.
Fingertip blood will be collected during the high fat tolerance test.
Fat oxidation (fat burning)
时间窗: A total of 5 measurements will be done, specifically are before the high fat meal (baseline) and each hour after the high fat meal for 4 hours. The whole test takes about 5 hours from 9 am to 2 pm on the last day of each trial.
Exhaled gas will be collected during the high fat tolerance test. Fat oxidation will be calculated based on the gas volume and CO2 and O2 proportion.
次要结局
未报告次要终点
