Diabetes & Nutritional Sciences Division, King's College London, Franklin-Wilkins Buiding, 150 Stamford St.
London, England, SE1 9NH, United Kingdom
NCT Number: NCT02679989
An intermittent energy restricted (IER) diet may modify cardio-metabolic disease risk factors compared to an energy-matched continuous energy restricted (CER) diet. A randomised controlled parallel design trial will determine the impact of a short-term IER diet (2 consecutive days of very low calorie diet (VLCD), 5 days moderate energy restriction each week for a 4 week period), compared to a CER diet, on insulin sensitivity in healthy (disease-free) subjects with central obesity.
Looking for future studies?
Notify Me35 year–75 year
All sexes
Interventional
Not applicable
London, England, SE1 9NH, United Kingdom
Prediabetes rates in England have showed a marked increase, more than tripling between 2003 and 2011. It is characterised by an impaired fasting glucose or impaired glucose tolerance that increases the risk of progression to type 2 diabetes (T2D). It has been estimated that approximately 90% of T2D is attributed to excess weight. Central obesity is a primary driver of increased cardiometabolic risk due to its lipotoxicity effects, promoting a proinflammatory state that facilitates insulin resistance and beta cell dysfunction. A high waist circumference measurement, indicative of central obesity, is associated with increased risk of cardiovascular diseases and T2D, and is a stronger predictor of T2D than BMI. BMI has limitations as an indicator of adiposity since it doesn't distinguish lean from fat mass, and does not indicate body fat distribution. Conventionally, continuous energy restriction (CER) diets have been used for weight loss, which consist of a constant daily energy deficit relative to total energy expenditure. The impact on weight loss and health of an intermittent energy restriction (IER) approach has only rarely been investigated (although the "5:2 diet" has been popularised in lifestyle books aimed at the general public). An IER diet consists of a predefined period of time severely restricting energy intake, alternated with a period of greater energy intake. This approach was shown to confer metabolic benefits in overweight and obese women at risk of breast cancer with baseline BMI of 2445 (Harvie et al., 2013; Harvie et al., 2011).
Rationale: An IER diet using meal replacements (VLCD foodpacks used as total dietary replacements for 2 consecutive days each week, and a food-based energy-restricted diet for the other 5 days of the week) may modify cardio-metabolic disease risk factors compared to an energy-matched CER diet.
Research question: In centrally obese subjects, assessed by a high waist circumference measurement, does adherence to an IER diet have enhanced cardio-metabolic benefits compared to a CER diet? Hypothesis: Increases in insulin sensitivity following a 4 week dietary intervention with an IER weight loss programme will be greater compared to a standard CER programme.
Objectives:
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
REFERENCES Misra A, Chowbey P, Makkar BM, Vikram NK, Wasir JS, Chadha D, et al. (2009). Consensus statement for diagnosis of obesity, abdominal obesity and the metabolic syndrome for Asian Indians and recommendations for physical activity, medical and surgical management. The Journal of the Association of Physicians of India 57: 163170.
WHO (2008). Waist circumference and waist-hip ratio: report of a WHO expert consultation. Geneva, 8-11 December 2008.
Exclusion criteria
Dietary advice to follow 5:2 diet supported by physical activity advice and motivational group support sessions
Dietary advice to follow daily energy restricted diet supported by physical activity advice and motivational group support sessions
Time frame: Baseline
Marker of insulin sensitivity
Time frame: day 29
Marker of insulin sensitivity
Time frame: day 31
Marker of insulin sensitivity
Time frame: Baseline
Fasting
Time frame: day 29
Fasting
Time frame: day 31
Fasting
Time frame: Baseline
Fasting
Time frame: day 29
Fasting
Time frame: day 31
Fasting
Time frame: Baseline
Fasting
Time frame: day 29
Fasting
Time frame: day 31
Fasting
Time frame: Baseline
Fasting
Time frame: day 29
Fasting
Time frame: day 31
Fasting
Time frame: Baseline
Fasting
Time frame: day 29
Fasting
Time frame: day 31
Fasting
Time frame: Baseline
Fasting
Time frame: day 29
Fasting
Time frame: day 31
Fasting
Time frame: Baseline
Fasting
Time frame: day 29
Fasting
Time frame: day 31
Fasting
Time frame: Baseline
Fasting
Time frame: day 29
Fasting
Time frame: day 31
Fasting
Time frame: Baseline
Fasting (calculated from insulin and glucose)
Time frame: day 29
Fasting (calculated from insulin and glucose)
Time frame: day 31
Fasting (calculated from insulin and glucose)
Time frame: Baseline
Fasting
Time frame: day 29
Fasting
Time frame: day 31
Fasting
Time frame: Baseline
Fasting
Time frame: day 29
Fasting
Time frame: day 31
Fasting
Time frame: Baseline
Fasting
Time frame: day 29
Fasting
Time frame: day 31
Fasting
Time frame: Baseline
Fasting
Time frame: day 29
Fasting
Time frame: day 31
Fasting
Time frame: Baseline
Fasting
Time frame: day 29
Fasting
Time frame: day 31
Fasting
Time frame: Baseline
Fasting
Time frame: day 29
Fasting
Time frame: day 31
Fasting
Time frame: Baseline
Time frame: day 29
Time frame: day 31
Time frame: Baseline
Time frame: day 29
Time frame: day 31
Time frame: Baseline
Time frame: day 29
Time frame: day 31
Time frame: Baseline
Time frame: day 29
Time frame: day 31
Time frame: Baseline
Time frame: day 29
Time frame: day 31
Time frame: Baseline
Time frame: day 29
Time frame: day 31
Time frame: Baseline
supine
Time frame: day 29
supine
Time frame: day 31
supine
Time frame: 24 h recording at baseline
Time frame: 24 h recording on day 29
Time frame: 24 h recording on day 31
Time frame: Baseline
Time frame: day 29
Time frame: day 31
Time frame: Baseline
Time frame: day 29
Time frame: day 31
Time frame: 24 h analysis at baseline
Time frame: Daytime analysis at baseline
Time frame: Night-time analysis at baseline
Time frame: 24 h analysis on day 29
Time frame: daytime analysis on day 29
Time frame: night-time analysis on day 29
Time frame: 24 h analysis on day 31
24 h
Time frame: Daytime analysis on day 31
day time
Time frame: Night-time analysis on day 31
night-time
Time frame: Baseline
Stiffness index
Time frame: day 29
Stiffness index
Time frame: day 31
Stiffness index
Time frame: Baseline
reflection index
Time frame: day 29
reflection index
Time frame: day 31
reflection index
Time frame: Baseline
Time frame: day 29
Time frame: day 31
Time frame: Baseline
questionnaire
Time frame: day 29
questionnaire
Time frame: day 31
questionnaire
Time frame: Baseline
questionnaire
Time frame: day 29
questionnaire
Time frame: day 31
questionnaire
Time frame: Baseline until endpoint: day 31 (+/-1 day)
King's College London
Other
A Randomised Controlled Trial Assessing The Impact Of An Intermittent Energy Restricted Diet On Weight Loss, Insulin Sensitivity and Heart Rate Variability In Men and Women With Central Obesity
Acronym: Met-IER
OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.
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.
Published trials that share one or more normalized conditions with this study.
NCT03527290
Blood Pressure, Body Weight
Irvine, California, United States
View Trial DetailsNCT05972109
Body Weight, Glucose Metabolism Disorders
San Francisco, California, United States
View Trial DetailsNCT03733132
Body Weight, Cognition Disorders
Rochester, Minnesota, United States
View Trial DetailsNCT05770076
Body Weight, Glucose Metabolism Disorders
Kyiv, Ukraine
View Trial Details