The aim of the study is to explore short and longer-term effects of the Endobarrier™ implantation on insulin resistance and beta-cell function assessed by repeated Botnia clamps. In addition changes in gut peptides and gut permeability after implantation of a removable duodeno-jejunal bypass device to induce diabetes remission in obese subjects with sub-optimally controlled type 2 diabetes mellitus will be determined. Further changes in body weight and body composition, the change in global cardiovascular risk from baseline to 12 months, estimated using the UKPDS risk engine will be recorded.
Obesity and diabetes probably represent the most challenging threat to public health in the 21st century. Obesity has multiple deleterious effects on health, significantly increasing the risk of fatal and non-fatal diseases including type 2 diabetes (T2DM). Bariatric surgery is a well-established method for the treatment of morbid obesity and has increasingly been recognized as an effective, long-lasting treatment option for T2DM. Recently a potential, non-invasive alternative to bariatric surgery, a duodenal-jejunal bypass liner (EndoBarrierTM) has been introduced. It is an endoscopically implantable and removable device that prevents contact between partially digested nutrients and the proximal intestine. This device was shown to reduce body weight and to improve glycaemic control in subjects with diabetes. Small pilot studies suggested a change in incretin levels, similar to that observed after gastric surgery with an improvement of insulin sensitivity and glucose metabolism. To better understand and characterize the hormonal and/or metabolic effects after the implantation and removal of the EndoBarrierTM, this monocentric, prospective, trial is being performed. The primary objective of this study is to clarify the changes in gut peptides and gut permeability after implantation the EndoBarrierTM in obese subjects with sub-optimally controlled type 2 diabetes mellitus. Additionally, the investigators aim to determine the changes in body weight and measure of adiposity, the change in global cardiovascular risk from baseline to 12 months as well as the changes in insulin sensitivity and beta-cell function over time.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
TREATMENT
implantation of a duodeno-jejunal bypass liner for weight reduction in obese subjects with type 2 diabetes mellitus
Dept. of Internal Medicine, Medical University of Graz
Graz, Austria
Changes in Insulin Sensitivity
insulin sensitivity: measured by mean glucose infusion rate (in a hyperinsulinaemic-euglycaemic clamp) (value at 9 months minus value at baseline)
Time frame: Baseline and 9 months
Changes in Glucagon Like Peptide -1 Levels
Glucagon like peptide -1 levels measured before the Meal Tolerance Test (value at 9 months minus value at baseline)
Time frame: Baseline and 9 months
Changes in Gut Permeability
Gut permeability measured by the Lactulose/Mannitol Test (value at 9 months minus value at baseline)
Time frame: Baseline and 9 months
Changes in Weight
Dual-energy X-ray absorptiometry fat mass (value at 9 months minus value at baseline)
Time frame: Baseline and 9 months
Changes in UKPDS Risk Score for Coronary Heart Disease
The UKPDS Risk Engine provides risk estimates and 95% confidence intervals, in individuals with type 2 diabetes not known to have heart disease, for non-fatal coronary heart disease These can be calculated for any given duration of type 2 diabetes based on current age, sex, ethnicity, smoking status, presence or absence of atrial fibrillation and levels of HbA1c, systolic blood pressure, total cholesterol and HDL cholesterol. Units on a scale: 10 year risk to suffer non-fatal coronary heart disease (in %) lower scores mean a better outcome (value at 9 months minus value at baseline)
Time frame: Baseline and 9 months
This platform is for informational purposes only and does not constitute medical advice. Always consult a qualified healthcare professional.
Masking
NONE
Enrollment
10