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Effects of Impaired Sleep on Energy Balance

Effects of Impaired Sleep on Energy Balance: A Randomized, 2-Condition, Crossover Study in Adolescents

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT01198431
Acronym
SLOPUS
Enrollment
21
Registered
2010-09-10
Start date
2009-10-31
Completion date
2011-02-28
Last updated
2011-08-10

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Obesity, Sleep

Keywords

Appetite regulation, Physical activity, Energy balance

Brief summary

The main aim of this study is to examine the effects of restricted sleep on energy and substrate metabolism as well as relevant hormonal systems that might be involved in the underlying mechanisms. The investigators hypothesize that short-term sleep curtailment in adolescents is accompanied by 1) increased hunger and desire to eat; 2) increased spontaneous energy intake; 3) reduced spontaneous physical activity; and 4) increased fluctuation in hormones in a way that could favour a positive energy balance and potentially weight gain on the long run.

Detailed description

The background for this project is that despite considerable knowledge of the mechanisms regulating body weight, the prevalence of obesity has not declined. The individual and environmental factors that play a part in energy balance are still not completely understood, and current methods for loosing and maintaining body weight are generally unsuccessful. Knowledge about what brings about changes in metabolism and lifestyle is lacking. Reduced sleep duration has been observed in parallel with increases in body weight. Lack of sleep has become a hallmark of modern man, and both children and adults sleep less today than just a few decades ago. Research suggests that both too much and too little sleep can lead to obesity, but correlations between sleep deprivation and other lifestyle-related ailments have also been observed. The reasons for these correlations are far from clear, especially in children and adolescents. The main purpose of SLOPUS is to investigate the effects of reduced sleep on energy and substrate metabolism, and the relevant hormonal systems involved in the underlying mechanisms. Our hypothesis is that acute sleep deprivation in teenagers leads to increased hunger and desire to eat, increased spontaneous energy intake, decreased spontaneous physical activity, and increased fluctuation in the hormones that control energy metabolism. The investigators aim to recruit twenty-four healthy, normal weight boys aged 15-19 years with normal sleep pat-terns. The study will be conducted as a randomized, crossover study with two conditions. Each participant will be subjected to short sleep (4 hours) and normal sleep (9 hours), in random order, for three consecutive nights in a respiration chamber. They will stay in the chamber for the 24 hours before the last night. In the respiration chamber energy turnover is measured - both how much energy and also the type of substrate combusted. The chamber is equipped with a bed, toilet, television, computer, and communication. Food and drink can be supplied via an airlock. Measurements in the chamber include volitional activities and sleep duration/quality. Energy turnover will be measured using a ventilated hood system on the first and last day. Here the participants lie down on a bed with their heads under a transparent canopy for 25-minute intervals during the morning. Blood samples will also be taken during these periods. Meal tests will be served, where we measure the amount of food ingested, and subjects will be given questionnaires about hunger and satiety to fill out. Physical activity and heart rate will be measured throughout the trial. Thus, the present study is likely to result in a number of new and important findings regarding the impact of impaired sleep on energy balance and it might improve the recommendations for optimal sleep in adolescents.

Interventions

BEHAVIORALSleep duration

Duration of sleep per night

Sponsors

University of Copenhagen
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
CROSSOVER
Primary purpose
PREVENTION
Masking
NONE

Eligibility

Sex/Gender
MALE
Age
15 Years to 19 Years
Healthy volunteers
Yes

Inclusion criteria

* normal weight (5th percentile to less than the 85th percentile)

Exclusion criteria

* self-reported sleep problems (Pittsburgh Sleep Quality Index score \>5); * night work; * variable sleep habits or habitual daytime naps; * regular physical exercise (\>3 hours/week); * excessive intake of alcohol (\>7 drinks/week); * excessive intake of caffeine (\>300 mg/day); * smoking; * substance abuse; * use of prescription medications or over-the-counter drugs affecting sleep or metabolism; * chronic diseases (e.g. cancer, asthma, back pain, thyroid disease, heart disease, diabetes, etc.) * history of neurological, medical or sleep disorders; * trans-meridian travelling the last month; * eating disorder; * irregular eating schedule (e.g. skipping breakfast); * unable to comply with the protocol.

Design outcomes

Primary

MeasureTime frameDescription
Energy expenditureOver the course of 24 hours on day 3Energy expenditure and substrate oxidation rate will be assessed by 24-hour indirect whole-body calorimetry (respiration chamber) on the basis of measurements of oxygen consumption, carbon dioxide production, and nitrogen excretion in urine.

Secondary

MeasureTime frameDescription
Spontaneous energy intakeMeasured after a maximum of 30 minutes meal time on day 1 and day 4In an attempt to measure spontaneous energy intake in an experimental context, the participant will be given an ad libitum lunch at noon. The ad libitum meal is a homogenous meal with a macronutrient composition of: 15 E%; fat: 30 E%; carbohydrate: 55 E%.The portion of pasta is larger than the expected participant's intake. The meal will be weighted before and after the lunch and ad libitum energy intake is assessed from the amount of the meal consumed by a food technician.
Spontaneous physical activity24 hours for 3 consecutive daysSpontaneous physical activity is measured by a wrist worn actigrpahy device during the three days of intervention. Moreover, spontaneous activity in the respiration chamber will be assessed by in-biuld microwave radar detectors
Appetite regulating hormones and stress hormonesMeasured every half hour over the course of 4 hours on day 1 and day 4Hormones are sampled from blood, saliva, and urine.
Hunger and desire to eatMeasured every hour or half hour over the course of 9 hours on day 1 and day 4Hunger and desire to eat is measured using visual analogue scales before and after a standardized breakfast meal challange and before and after an ad libitum meal.
Stress hormone (cortisol)Measured at 7 am and 7.30 am on day 1 and day 4Hormones are sampled saliva.

Countries

Denmark

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Mar 26, 2026