New York Nutrition Obesity Research Center
New York, 10032, United States
NCT Number: NCT02347020
This study will test the hypothesis that a late sleep (Ls) and/or late meal (Lm) behavioral pattern, with equal sleep duration, will promote positive energy balance and insulin resistance (IR).
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Notify Me20 year–49 year
All sexes
Interventional
Not applicable
New York, 10032, United States
Sleeping patterns affect aspects of metabolism that may impact obesity risk; our lab is interested in studying whether sleep patterns play a role in the development of obesity. Individuals with late bedtimes and late rise times tend to have greater food intake which includes more fast food and sugar-sweetened beverages, less fruits and vegetables [1], larger portions, and later eating times [2] than those with earlier bedtimes. This sleeping pattern is highly prevalent: ~15 million Americans work on shifts other than regular day hours [3] and others subject themselves to 'social jetlag' (time difference between the middle of the sleep episode [midpoint of sleep] on work days and non-work days, similar to travel across time zones) [4]. The shift in sleep and meal times associated with these lifestyles results in misalignment of sleep and eating behaviors with the circadian clocks. These clocks, located in the brain and organs throughout the body, regulate metabolism and behavior and are affected by sleep and feeding. Disruption of clock genes in individual organs may be in part responsible for metabolic dysregulation [5]. Altering the coordination of sleep and meal timing may affect food reward valuation (brain) and metabolism (peripheral organs) to promote obesity and IR, observed more frequently in shift workers. This is the focus of this randomized, crossover, controlled study of 4 phases:
Aim 2: To determine whether neuronal responses to food stimuli in brain regions related to reward value explain differences in food intake.
Exploratory Aim 3: To determine whether meal or sleep timing affect glucose homeostasis and appetite-regulating hormones.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
The subject will be inpatient for 5 days, and sleep between the hours of 0000-0800 h, with meals at 1, 5, 11, and 12.5 (snack) h after awakening every day for 5 days. On night 3, we will insert a catheter in the participant's arm to facilitate multiple blood sampling overnight and the next day. On d 4, a frequently sampled i.v. glucose tolerance test (FSIVGTT) will be performed. A MTT will be performed at the scheduled lunch. At 1 h before dinner, participants will undergo fMRI scanning to assess neuronal responses to food stimuli and to examine functional connectivity with reward circuitry. On d 5, participants will be allowed to determine their own food intake at the scheduled meal and snack times. Participants will be discharged upon awakening on day 6.
The subject will be inpatient for 5 days and sleep between the hours of 0000-0800 h,with controlled meals at 4.5, 8.5, 14.5, and 16 (snack) h after awakening. On night 3, we will insert a catheter in the participant's arm to facilitate multiple blood sampling overnight and the next day. On d 4, at the scheduled breakfast time, a frequently sampled i.v. glucose tolerance test (FSIVGTT) will be performed. A MTT will be performed at the scheduled lunch. At 1 h before dinner, participants will undergo fMRI scanning to assess neuronal responses to food stimuli and to examine functional connectivity with reward circuitry. On d 5, participants will be allowed to determine their own food intake at the scheduled meal and snack times. Participants will be discharged upon awakening on day 6.
The subject will be inpatient for 5 days, and sleep between the hours of 0330-1130 h, with controlled meals at 1, 5, 11, and 12.5 (snack) h after awakening. On night 3, we will insert a catheter in the participant's arm to facilitate multiple blood sampling overnight and the next day. On d 4, at the scheduled breakfast time, a frequently sampled i.v. glucose tolerance test (FSIVGTT) will be performed. A MTT will be performed at the scheduled lunch. At 1 h before dinner, participants will undergo fMRI scanning to assess neuronal responses to food stimuli and to examine functional connectivity with reward circuitry. On d 5, participants will be allowed to determine their own food intake at the scheduled meal and snack times. Participants will be discharged upon awakening on day 6.
The subject will be inpatient for 5 days, and sleep between the hours o 0330-1130 h, with controlled meals at 4.5, 8.5, 14.5, and 16 (snack) h after awakening. On night 3, we will insert a catheter in the participant's arm to facilitate multiple blood sampling overnight and the next day. On d 4, at the scheduled breakfast time, a frequently sampled i.v. glucose tolerance test (FSIVGTT) will be performed. A MTT will be performed at the scheduled lunch. At 1 h before dinner, participants will undergo fMRI scanning to assess neuronal responses to food stimuli and to examine functional connectivity with reward circuitry. On d 5, participants will be allowed to determine their own food intake at the scheduled meal and snack times. Participants will be discharged upon awakening on day 6.
Time frame: 24 h
Energy, fat, protein, carbohydrate, sugar, fiber intakes by weighed intake measures
Time frame: 1 h
fMRI assessment of neuronal responses to food vs non-food stimuli and during the resting state
Time frame: 1 day
Frequently sampled i.v. glucose tolerance test; meal tolerance test (glucose and insulin) pattern of hormones regulating food intake (lower leptin and GLP-1; higher ghrelin, NPY and hypocretin-1
Columbia University
Other
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View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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