Postprandial Thermogenesis in Obese Adolescents: Effect of Meal Calorie Content
试验速览
- 阶段
- 不适用
- 状态
- 已完成
- 发起方
- 入组人数
- 15
- 试验地点
- 1
- 主要终点
- Postprandial energy expenditure (PEE) in response to meals.
研究概览
简要总结
The prevention and management of pediatric obesity require a thorough understanding and consideration of the different components of energy balance (i.e., intake and expenditure) and their interactions. Total energy expenditure (TEE) consists of resting metabolism (RM), energy expenditure induced by physical activity (EEPA), and dietary thermogenesis (DTE). While RM and EEPA are the two main contributors to TEE, DTE is often overlooked, even though it can account for around 10% of our daily energy expenditure. In fact, few studies have prioritized the evaluation of the thermic effect of food (TEF), defined as the increase in energy expenditure above the basal metabolic rate when fasting, despite the fact that it accounts for about 10% of total daily energy expenditure . It has been suggested that TEF may play a role in the development or maintenance of obesity.
Some studies indicate a reduction in TEF in individuals living with obesity , possibly due to lower postprandial activation of the sympathetic nervous system, thereby limiting the thermogenic response after meals . Conversely, several studies have reported no decrease in TEF in individuals living with obesity . Due to these contradictory results, no consensus has been reached on the FET response in individuals with obesity compared to those of normal weight.
The limited number of available results can be explained not only by a lack of interest in this TEF among scientists and clinicians, but also by the methodological difficulties involved in its assessment. Indeed, the latter requires indirect calorimetry measurements over a period of up to 5 to 6 hours after a meal, as well as careful calibration of the test meals used, their qualitative content, and their caloric content. These factors are all the more important to consider given that a systematic review has shown that TEF is influenced by the energy intake of the meal as well as its macronutrient composition, with proteins and carbohydrates inducing a higher TEF than lipids . However, several uncertainties remain, particularly regarding the choice of test meal, which could be standardized for all participants or adjusted according to their body composition.
While our team recently conducted a systematic review of the literature in this area, identifying a glaring lack of evidence, the few results available suggest a potential reduction in TEF in obese children and adolescents, contributing to a minimization of the optimization of their daily energy balance. In their study, Maffeis and colleagues show, for example, a significantly reduced TEF in adolescents with obesity compared to their normal-weight counterparts, despite a higher-calorie test meal adapted to their energy needs . These results are consistent with those proposed by Salas-Salvado the following year, who suggested a reduced TEF in obese adolescents, associated with their percentage of body fat . This research suggests the need to consider the effects of weight status, body composition, and the caloric composition of a meal in order to better understand TEF in this population.
Unfortunately, this area has not been explored in depth since the 1990s, even though the prevalence of pediatric obesity continues to rise.
In this context, the objective of this study is to explore dietary thermogenesis in response to meals of different caloric content in obese adolescents.
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
- 11 Years 至 17 Years(Child)
- 性别
- All
- 接受健康志愿者
- 否
入选标准
- •• Adolescents aged 11 to 17 (inclusive), at Tanner stage 3-5 of sexual maturation,
- •With obesity defined as a body mass index (BMI) above the 97th percentile according to national growth charts,
- •Adolescents affiliated with the social security system or equivalent,
- •Adolescents who have been informed and have given their written consent to participate in the study.
排除标准
- •Refusal to participate in the study,
- •Refusal of consent by legal guardians,
- •Regular consumption of tobacco or alcohol,
- •Special diet,
- •Participation in regular and intense physical and sporting activities,
- •Medical or surgical history deemed by the investigator to be incompatible with the study,
- •Presence of diabetes, and any other condition limiting the application of either strategy being tested,
- •Adolescents undergoing energy restriction or a weight loss program through physical activity at the time of inclusion or during the last 6 months,
- •Taking medication that may interfere with the study results.
- •Adolescents with cardiovascular problems, i.e., subjects with a history of cardiovascular and/or neurovascular disease, as well as subjects with cardiovascular and/or neurovascular risk factors (excluding obesity/overweight).
- •Surgery in the previous 3 months,
- •Adolescents who are currently excluded from another study,
- •Pregnant or breastfeeding adolescents,
- •Adolescents under guardianship/curatorship or legal protection,
- •Parents under guardianship/curatorship or legal protection.
研究组 & 干预措施
Adolescents aged 11 to 17 with obesity
干预措施: Energy expenditure and energy substrates (Other)
Adolescents aged 11 to 17 with obesity
干预措施: Food sensations (Other)
Adolescents aged 11 to 17 with obesity
干预措施: Liking & Wanting (Other)
结局指标
主要结局
Postprandial energy expenditure (PEE) in response to meals.
时间窗: Visit 1, Visit 2, Visit 3
Energy expenditure and energy substrates will be assessed in the morning upon arrival at the laboratory (20 minutes), then for 20 minutes before the test meal at noon, then for one hour immediately after the meal, then for 15 minutes every 45 minutes after the meal for 4 hours (a total of 5 hours of post-meal measurements). These measurements will be performed using portable indirect calorimetry (MetaMax, Inc.). Indirect calorimetry is one of the classic methods for measuring resting energy expenditure . The contribution of lipid and carbohydrate oxidation will be calculated indirectly by monitoring oxygen consumption and CO2 rejection according to double unknown equations, considering that protein oxidation is stable and around 15% . The MetaMax is a mask that causes no physical or respiratory discomfort and is connected to a gas analyzer. This technology has been used regularly in adolescents with and without obesity by our team and other teams .
次要结局
- Appetite sensations in response to meals(3 months)
- The hedonic response as measured by food liking and wanting(3 months)
- Appetite sensations in response to meals(Visit 1, Visit 2, Visit 3)
- The hedonic response as measured by food liking and wanting(Visit 1, Visit 2, Visit 3)
