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Completed

NCT Number: NCT06014684

Timing Exercise Training as Strategy to Improve Insulin Sensitivity and Substrate Metabolism in Men and Woman With Pre-diabetes

n a retrospective analysis of an exercise training program performed either in the morning or afternoon, we found that the afternoon training group improved their peripheral insulin sensitivity and fasting plasma glucose levels to a greater extent than the morning group. However, underlying mechanisms are unclear.

The primary study endpoint is nocturnal glucose levels measured by a continuous glucose monitor (CGM).

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Key information

Age range

40 year–75 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

Maastricht University

Maastricht, Limburg, 6229 ER, Netherlands

About this study

Rationale: Various metabolic processes, including resting metabolic rate, insulin sensitivity and insulin secretion, follow a recurring 24-hour cycle. These rhythms are shown to be disturbed in in pre-diabetes volunteers compared to young healthy volunteers. In a retrospective analysis of an exercise training program performed either in the morning or afternoon, we found that the afternoon training group improved their peripheral insulin sensitivity and fasting plasma glucose levels to a greater extent than the morning group. However, underlying mechanisms are unclear.

Objective: The main objective of this study is to determine whether prolonged exercise training in the afternoon (15:00-17:00 PM) differs from exercise training in the morning (07:00-09:00 AM) in improving insulin sensitivity in individuals with pre-diabetes, and to investigate its underlying mechanisms.

Study design: The present study is a randomized double arm longitudinal intervention study in a pre and post design.

Study population: 24 pre-diabetic individuals (men and postmenopausal women aged 40 - 75 years and with BMI ≥ 25 and ≤ 38 kg/m2) will complete this study (12 participants in the morning training group and 12 participants in the afternoon training group). From experience with similar studies, we estimate a drop-out rate of 20% and a screening failure of 70% (because individuals often do not know they are pre-diabetic). This results in maximally 30 participants that have to be included and 100 participants that have to be screened (maximally).

Intervention (if applicable): Participants will perform a 12-weeks supervised high intensity interval training (HIIT) program with three ~30 min exercise sessions per week. Participants will be randomly assigned to the morning or afternoon training time. To assess the outcomes, participants will come to the university for a 43h measurement period both before and after the 12-week training program.

Main study parameters/endpoints: The primary study endpoint is nocturnal glucose levels measured by a continuous glucose monitor (CGM). The secondary outcomes are 24h energy and substrate metabolism. Exploratory outcomes are body composition, intrahepatic lipid content and composition, hepatic insulin sensitivity, hepatic glycogen levels, maximal aerobic capacity, skeletal muscle oxidative capacity, visceral and subcutaneous adipose tissue volume, sleeping metabolic rate, blood glucose levels (continuously measured over 7days) and immune responses.

Who can participate

Healthy volunteers accepted: Yes

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Aged 40-75 years.
  • Body mass index (BMI) ≥25 kg/m2
  • Male, or postmenopausal (at least 1 year post cessation of menses) female
  • Pre-diabetes based on one or a combination of the following criteria:
  • Impaired Glucose Tolerance (IGT): plasma glucose values ≥ 7.8 mmol/l and ≤ 11.1 mmol/l 120 minutes after glucose drink consumption during OGTT in screening
  • ImpairedFastingGlucose(IFG):Fastingplasmaglucose≥6.1mmol/land≤6.9 mmol/l
  • Insulin Resistance: glucose clearance rate ≤ 360 mL/kg/min, as determined during the OGTT using OGIS120.
  • HbA1cof5.7-6.4%

Exclusion criteria

  • Type 2 diabetes
  • Patients with active congestive heart failure and and/or severe renal and or liver insufficiency
  • Uncontrolled hypertension
  • Any contra-indication for MRI scanning
  • Alcohol consumption of >3 servings per day for man and >2 servings per day for woman
  • Smoking
  • Unstable body weight (weight gain or loss > 5kg in the last 3 months)
  • Previous enrolment in a clinical study with an investigational product during the last 3 months or as judged by the Investigator which would possibly hamper our study results.
  • Medication use known to hamper subject's safety during the study procedures.
  • Subjects who do not want to be informed about unexpected medical findings.
  • Men: Hb <8.0 mmol/L, Women: Hb <7.0 mmol/l
  • Heavily varying sleep-wake rhythm (i.e. night shift work and travels across time zones).
  • Significant food allergies/intolerance (seriously hampering study meals)
  • Blood donation during or within 2 months prior to the study

Treatment and study plan

Timing of exercise

Behavioral

High Intensity Interval Training (HIIT) program for 12 weeks (3 per week/36 sessions in total)

Primary outcomes

  1. nocturnal glucose levels

    Time frame: measured before and after the 12 weeks training program

    The main objective of this study is to determine whether prolonged exercise training in the afternoon differs from exercise training in the morning in improving nocturnal glucose levels insulin sensitivity in individuals with pre-diabetes.

Secondary outcomes

  1. 24h whole body energy expenditure

    Time frame: measured before and after the 12 weeks training program

    energy expenditure as measured by a 24h stay in the respiration chamber

  2. 24h substrate metabolism

    Time frame: measured before and after the 12 weeks training program

    24h substrate metabolism as measured by a 24h stay in the respiration chamber

Other outcomes

  1. Body composition by Dual Energy X-ray Absorptiometry (DEXA)

    Time frame: measured before and after the 12 weeks training program

    fat-free mass (kg and percentage)

  2. Body composition by Dual Energy X-ray Absorptiometry (DEXA)

    Time frame: measured before and after the 12 weeks training program

    fat mass (kg and percentage)

  3. Intrahepatic lipid content and composition

    Time frame: measured before and after the 12 weeks training program

  4. Hepatic glycogen levels

    Time frame: measured before and after the 12 weeks training program

  5. VO2 max cycling test

    Time frame: measured before and after the 12 weeks training program

    measurement of participants' maximal aerobic capacity, absolute (L/min) and relative (ml/min/kg)

  6. Skeletal muscle oxidative capacity

    Time frame: measured before and after the 12 weeks training program

    Ex vivo high-resolution respirometry using a two chamber Oxygraph (OROBOROS Instruments) will be performed. Multiple substrate/inhibitor titration protocols will be applied to extensively characterize the mitochondrial capacity of skeletal muscle fibers

  7. Sleeping metabolic rate

    Time frame: measured before and after the 12 weeks training program

  8. Blood glucose levels measured continuously over 7 days.

    Time frame: measured before and at the end the 12 weeks training program

Sponsors and collaborators

Lead sponsor

Maastricht University Medical Center

Other

Registry information

Acronym: Timed Training

Important dates

Study start
2023
Primary completion
2026
Study completion
2026
First posted
Aug 28, 2023
Registry last updated
Apr 17, 2026

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

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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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