The overarching goal of the current study is to investigate the effect of one acute bout of exercise on the brain insulin responsiveness in a cross-over study design. To this end, investigators will compare the effect of two single endurance exercise sessions with different intensities, namely moderate intensity continuous training (MICT) and high-intensity-interval-training (HIIT), which will be performed in a randomized order. This will be compared to a waiting control condition.
Investigate one acute bout of exercise on the brain insulin responsiveness using functional magnetic resonance imaging in combination with intranasal insulin in healthy participants of normal-weight and overweight/obesity. Two single endurance exercise sessions with different intensities will be evaluated, namely moderate intensity continuous training (MICT) and high-intensity interval training (HIIT). This will be compared to a waiting control condition. In a cross-over design, investigators will compare cerebral response from before to after intranasal insulin administration after a single bout of HIIT or MICT compared to a control condition without exercise. Cerebral response is defined as the cerebral blood flow and resting state functional connectivity in response to intranasal insulin. Secondary outcomes include changes in blood metabolites and proteins and changes in eating behavior.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
BASIC_SCIENCE
Masking
SINGLE
Enrollment
40
the MICT consists of 60 min continuous cycling
HIIT consists of 10-min warm-up at the power output corresponding to 50% peak power output (PPO), 4 x 4-min intervals at a power output corresponding to 75% PPO with a 4-min active resting period at 30% PPO to recover
sitting in a waiting room for 60 min
University Clinic Tübingen, Department of Internal Medicine IV
Tübingen, Germany
RECRUITINGCerebral response after intranasal insulin administration
The resting-state cerebral response from before to after intranasal insulin administration after a single bout of HIIT or MICT exercise compared to a control condition without exercise (i.e., waiting control)
Time frame: 1 hour after exercise or waiting control
Task based brain activation after high-intensity-interval-training (HITT) or moderate intensity continuous training (MICT) compared to control condition
Food cue reactivity after a single bout of HIIT or MICT exercise compared to a control condition without exercise (i.e., waiting control)
Time frame: 1 hour after exercise or waiting control
Subjective feeling of hunger and food craving
Questionnaire assessment before and after exercise or waiting control.
Time frame: baseline, 1 hour after breakfast, 1 hour, 2 hour, 3 hours after exercise or waiting control
Changes in Blood-brain barrier integrity
Robust multiple echo-time arterial spin labelling based Blood Brain Barrier integrity measurements from before to after intranasal insulin administration after a single bout of HIIT or MICT exercise compared to a control condition without exercise (i.e., waiting control)
Time frame: 1 hour after exercise or waiting control
Performance during cognitive tasks
Cambridge Cognition Tests Battery to assess memory and inhibitory control using the paired associates learning task, the pattern recognition memory task and the stop-signal reaction task.
Time frame: 1 hour after exercise or waiting control
Changes in exerkines from plasma samples
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Blood sampling at 5 time points before and after a single bout of HIIT or MICT exercise compared to a control condition without exercise (i.e., waiting control)
Time frame: baseline, 1 hour after breakfast, 1 hour, 2 hour, 3 hours after exercise or waiting control
Change in incretins from plasma samples
Blood sampling at 5 time points before and after a single bout of HIIT or MICT exercise compared to a control condition without exercise (i.e., waiting control)
Time frame: baseline, 1 hour after breakfast, 1 hour, 2 hour, 3 hours after exercise or waiting control