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临床试验/NCT03188835
NCT03188835已完成不适用

Brown Fat Energy Metabolism During Cold Exposure: Effects of Fructose- or Glucose-rich Diet in Healthy Subjects

Université de Sherbrooke2 个研究点 分布在 1 个国家目标入组 15 人开始时间: 2017年5月23日最近更新:
适应症

试验速览

阶段
不适用
状态
已完成
入组人数
15
试验地点
2
主要终点
BAT triglyceride content

研究概览

简要总结

Activating brown and beige adipose tissue (herein described as BAT) has been recently recognized as a potential means to increase energy expenditure and lower blood glucose, however, BAT activity appears to be reduced with obesity, aging or Type 2 Diabetes (T2D). BAT has the unique capability to burn large amounts of sugar and fat and effectively dissipate this energy as heat due to the expression of uncoupling protein 1 (UCP1) which is controlled by a thermogenic gene program of transcription factors, co-activators and protein kinases. Thus, enhancing the thermogenic gene program may be beneficial for treating obesity and T2D. Despite the importance of BAT in regulating metabolism our understanding of the factors which suppress its metabolic activity with obesity, aging and T2D are largely unknown. Recently, it was shown that peripheral serotonin, which is regulated by the tryptophan hydroxylase 1 (Tph1), is a negative regulator of BAT metabolic activity. In addition to serotonin, other studies have indicated that pro-inflammatory stimuli may also inhibit BAT metabolic activity. These data suggest that reduced activation of BAT may be due to increases in peripheral serotonin and inflammation. Importantly, the gut microbiome has recently been recognized as an important regulator of serotonin and inflammatory pathways suggesting the observed effects of the microbiome on obesity, T2D may be mediated in part through reductions in BAT activity.

One mechanism by which the environment may impact BAT activity and the thermogenic gene program over the last 3 decades involves changes in our food supply as result of changes in agricultural production (chlorpyrifos, glyphosphate) and the addition of food additives (fructose). These agents have been reported to alter inflammation, serotonin metabolism and the gut microbiome indicating a potential bimodal (direct and indirect via the microbiome) mechanism by which they may alter the thermogenic gene program and contribute to chronic metabolic disease. Thus, our overarching hypothesis is that environmental agents and additives related to food production may contribute to the reduced metabolic activity of BAT. The objective is to identify and characterize how food production agents and additives reduce the metabolic activity of BAT.

详细描述

Each subject will follow 3 metabolic studies (A, B and C), each lasting 7.5h which includes a 3h acute cold exposure.

These studies will be almost identical: same perfusion of tracers, same number of Positron Emission Tomography (PET) acquisitions and same number of Magnetic Resonance Imaging (MRI) associated with Magnetic Resonance Spectroscopy (MRS) acquisitions .

The difference will be in the diet ingested by the subjects two weeks before each metabolic study: during protocol A, the subjects will follow an isocaloric diet; during protocol B, the subjects will follow the same isocaloric diet supplemented with a daily beverage containing +25% of energy intake from fructose; and during protocol C, the subjects will follow the same isocaloric diet supplemented with a daily beverage containing +25% of energy intake from glucose.

Stool samples will be collected for each metabolic study for microbiome flora and metabolites.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Parallel
主要目的
Basic Science
盲法
Double (Participant, Outcomes Assessor)

入排标准

年龄范围
20 Years 至 35 Years(Adult)
性别
Male
接受健康志愿者

入选标准

  • Healthy subjects: subjects with normal glucose tolerance determined according to an oral glucose tolerance test and with a BMI < 27 kg/m2 without first degree of familial history of type 2 diabetes (parents, siblings).

排除标准

  • Plasma triglycerides > 5.0 mmol/L at fasting;
  • More than 2 alcohol consumption per day;
  • More than 1 cigarette per day;
  • History of total cholesterol level > 7 mmol/L, of cardiovascular disease, hypertensive crisis;
  • Treatment with fibrates, thiazolidinedione, insulin, beta-blockers or other drugs with effects on insulin resistance or lipid metabolism (exception for anti-hypertensive drugs, statins or metformin);
  • Presence of a non-controlled thyroid disease, renal or hepatic disease, history of pancreatitis, bleeding diatheses, cardiovascular disease or any other serious medical conditions;
  • History of serious gastrointestinal disorders (malabsorption, peptic ulcer, gastroesophageal reflux having required a surgery, etc.);
  • Presence of a pacemaker;
  • Have undergone of PET study or CT scan in the past year;
  • Chronic administration of any medication;

结局指标

主要结局

BAT triglyceride content

时间窗: 4 months

will be determined by radiodensity or MRS

Microbiome metabolites

时间窗: 4 months

assessed from stool samples

Microbiome flora

时间窗: 4 months

assessed from stool samples

BAT oxidative metabolism

时间窗: 4 months

will be determined using i.v. injection of 11C-acetate during dynamic PET/CT scanning

次要结局

  • Whole-body glucose partitioning(4 months)
  • BAT blood flow(4 months)
  • BAT volume of metabolic activity(4 months)
  • metabolites appearance rate(12 months)
  • energy metabolism (whole body production)(4 months)
  • BAT net glucose uptake(4 months)
  • hormonal responses(12 months)

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

André Carpentier

tenured professor

Université de Sherbrooke

研究点 (2)

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