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The Effect of Rimonabant on Energy Expenditure, Fat Metabolism and Body Composition

The Effect of Rimonabant on Energy Expenditure, Fat Metabolism and Body Composition

Status
Terminated
Phases
Phase 4
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT00584389
Enrollment
14
Registered
2008-01-02
Start date
2007-07-31
Completion date
2010-05-31
Last updated
2010-04-19

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

Conditions

Obesity

Keywords

Obesity, Energy expenditure, Fatty acid, Triglyceride

Brief summary

This study will determine in obese subjects the direct effects of the weight loss drug rimonabant (ie independent of weight loss) on energy expenditure, fat metabolism and and body fat distribution. We hypothesise that rimonabant will increase energy expenditure. The fuel for the increased energy expenditure will come from fat. As a result of burning more fat there will be a decrease in fat in blood and an improvement in the body's response to insulin.

Detailed description

In obese subjects (BMI 33-38kg/m2) completing 12 months of treatment with the CB1 antagonist rimonabant (SR141716) there was an average weight loss from baseline of approximately 8.5 kg. These studies also showed the weight loss was accompanied by a decrease in plasma triglyceride (TG), an increase in HDL cholesterol and an improvement in insulin sensitivity measured by HOMA-IR. When adjusted for weight loss 50% of the improvements in TG, HDL cholesterol, and insulin sensitivity was not attributable to weight loss. This suggests that rimonabant has direct effects on fat metabolism. This study will investigate the direct effects of rimonabant (ie independent of weight loss) in a 2 group randomised study. One group will receive rimonabant for 12 weeks and the other group will have a dietary intervention to match the weight loss in the rimonabant group. Measurements of energy expenditure (using indirect calorimetry and Actiheart monitors),fatty acid and triglyceride metabolism (using stable isotope techniques) and body fat distribution (by magnetic resonance imaging) will be made before and after the intervention. To determine the possible mechanisms of the changes in metabolism, gene expression of key regulators of fatty acid metabolism in adipose and muscle tissue and circulating levels of adipokines will be measured.

Interventions

DRUGrimonabant

20mg/d (oral) once daily for 12 weeks

BEHAVIORALDietary intervention

Dietary intervention to match weight loss in group 1. The energy prescription will be based on the estimate of the energy deficit estimated from the weight loss in group one. For example a weight loss of 5kg over 12 weeks equates to an approximate energy deficit of 30,000 kcal or a daily energy reduction of approximately 357 kcal. If this is achieved in group 1 the daily energy target for subjects in group 2 will be daily energy expenditure minus 357 kcal.For the subjects randomised to the dietary intervention group there will be a delay until group 1 subjects have completed the study.

Sponsors

European Foundation for the Study of Diabetes
CollaboratorOTHER
Royal Surrey County Hospital NHS Foundation Trust
CollaboratorOTHER
University of Surrey
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
BASIC_SCIENCE
Masking
NONE

Eligibility

Sex/Gender
FEMALE
Age
50 Years to 70 Years
Healthy volunteers
Yes

Inclusion criteria

* Healthy Caucasian postmenopausal women * BMI 30-38

Exclusion criteria

* Not currently weight-stable * Diagnosed with diabetes * Cardiovascular disease * Endocrine disease * Hepatic and renal disorders * Neurological/psychological illness/history of depression * Previous surgical procedures for weight loss * Medications known to alter body weight or appetite * β-blockers, fibrates and metformin * Severe under-reporting of food intake based on a 4 day food diary

Design outcomes

Primary

MeasureTime frame
The direct effect of rimonabant on energy expenditure12 weeks

Secondary

MeasureTime frame
Whole body fatty acid production and oxidation rate.12 weeks
Triglyceride synthesis and clearance rate.12 weeks
Whole body fat distribution.12 weeks
Adipose tissue and muscle mRNA levels of key regulators of fatty acid metabolism.12 weeks
Insulin sensitivity.12 weeks

Countries

United Kingdom

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026