Semaglutide 2.4mg for Low Responders After Bariatric Surgery
For patients and families
In plain language
An automatic summary of structured registry data. It is an orientation aid, not a substitute for the official protocol or a physician assessment.
- What is being studied
- The protocol lists: Placebo, Semaglutide 2.4 MG/0.75 ML Subcutaneous Solution [WEGOVY].
- Who it may be relevant to
- Registry conditions: Obesity, Obesity, Morbid, Weight Gain. Basic parameters: 18 years — 75 years · All.
- What needs checking
- Age, condition and sex are only basic indicators. Prior treatment, laboratory values and other mandatory requirements appear in the eligibility criteria below.
- Where it takes place
- Center list to be confirmed — check the primary protocol.
- Next step
- Save the trial, show it to the treating physician, and confirm current recruitment with the study center. Costs, documents and travel →
Unsure about the terms? Read our patient guide →
Overview
In 20 - 30% of the patients, the low responders, sufficient weight loss is not achieved after bariatric surgery. Secondary and/or tertiary bariatric procedures can lead to successful weight loss and resolution of comorbid conditions though, morbidity and mortality rates of these procedures are high. Therefore, additional pharmacotherapy has been suggested. Semaglutide is one of the medications that might improve outcome in the post-bariatric population. Semaglutide is a Glucagon-like peptide-1 (GLP-1) receptor analogue developed to treat type 2 diabetes. It causes glucose-dependent insulin secretion, promotes satiety and inhibits glucagon secretion. In obese (non-bariatric) patients, semaglutide has shown to improve glycemic control, decrease blood pressure, lower cardiovascular risk, and decrease body weight.
Detailed description
The treatment of obesity can be divided into three different fields: non-surgical interventions (e.g. endoscopic techniques, swallowable gastric balloon), pharmacological, and surgical treatment. All these different fields have, as their cornerstone of treatment, lifestyle interventions. Lifestyle interventions have an emphasis on regulation of energy intake and improvement of physical activity. All treatment options are adjunct to the lifestyle interventions. Besides, not all overweight or obese people are eligible for all types of treatment. For instance, pharmacological treatment options are advised in patients with a Body Mass Index (BMI) ≥ 30kg/m2 or a BMI ≥ 27kg/m2 with an obesity-related comorbidity, such as hypertension or diabetes mellitus. Several pharmaceutical agents have been developed for treatment of obesity. These medications generally affect appetite and cause weight loss only when the agent is taken in adjunct to lifestyle modification. Mean weight loss with pharmacological treatment ranges between 4.4 and 14.3%, depending on type of medication and treatment regime.
Bariatric surgery, also called metabolic surgery, includes a variety of surgical procedures in which the gastro-intestinal tract is altered. The most performed types of surgery are the Sleeve Gastrectomy (SG) and the Roux-en-Y gastric bypass (RYGB). All types of surgery cause changes in gut hormones, bile acids and microbiota, which subsequently induce changes in appetite and energy expenditure and thereby causing weight loss. Surgery is generally advised to patients with a BMI ≥ 40kg/m2 or a BMI ≥ 35kg/m2 with comorbid conditions. Compared to lifestyle intervention programs, bariatric surgery has proven to be a superior treatment for morbid obesity. Total weight loss (TWL) is about 20 - 30 %. In addition, bariatric surgery positively influences comorbid conditions, like type 2 diabetes, hypertension, cancer incidence, cardiovascular events and cardiovascular deaths. Thus, currently, bariatric surgery is the most effective treatment for morbid obesity.
However, there is a significant proportion of patients who do not reach "successful" weight loss after bariatric surgery. These patients can be divided in patients who do not reach sufficient weight loss, low responders, and patients who experience weight regain. Although there is no guideline to define who are low responders and what is significant weight regain, unsuccessful weight loss seems to occur in about 20-30% of the population. One of the best predictors of low weight loss in the long-term after surgery is 3-month weight loss. Therefore, this study's clinic provides an extra intervention for the patients who are considered low responders at the 3-month follow-up moment after surgery. The NOK defines a low responder by percentage total weight loss (%TWL) at the 3-month follow-up moment compared to expected weight loss. When %TWL is below the 25% quartile of expected weight loss the patient is considered a low responder. The expected weight loss is determined based on this clinics database of previous patients with the same baseline Body Mass Index (BMI above or below 50 kg/m2), gender and type of surgery. Thus, in the current treatment program patients have a medical consultation in which weight loss is determined three months after surgery. Based on baseline weight and exact number of days after surgery it is calculated whether the patient is a low responder with respect to a private database (currently about 6000 patients). If a patient is considered a low responder then the patient will receive three extra counselling sessions focusing on improving weight loss outcome. This extra intervention is called the plus module and is an addition to the standard program, which consists of multidisciplinary group counselling before and after surgery.
Secondary and/or tertiary bariatric procedures are performed in up to 25% of the patients with unsuccessful weight loss. Although additional surgery can lead to successful weight loss and resolution of comorbid conditions, morbidity and mortality rates of these procedures are higher. Therefore, attention has been focused on pharmacological treatment as an addition to bariatric surgery.
One of the agents that has been suggested for additional pharmacological treatment is semaglutide. Semaglutide is a Glucagon-like peptide-1 (GLP-1) receptor analogue which was initially developed to treat type 2 diabetes. GLP-1 is one of the incretins, a peptide hormone which is normally secreted from L cells in the distal ileum and colon. When secreted, GLP-1 causes an increase in insulin secretion of the beta-cells of the pancreas and a decrease of glucagon production of the alfa-cells. These changes cause a decrease of fasting and post prandial plasma glucose. In addition, GLP-1 also causes delayed gastric emptying. In non-bariatric patients, semaglutide has shown to improve glycaemic control, decrease blood pressure, lower cardiovascular risk and decrease body weight up to one year.
In this trial the effect of semaglutide 2.4 mg once weekly to the plus module for low responders on the improvement of weight loss compared to patient solely receiving the plus module will be evaluated.
Interventions
- Other Placebo
The placebo will be used in the allocated group in addition to our lifestyle program for the duration of 68 weeks in total. - Drug Semaglutide 2.4 MG/0.75 ML Subcutaneous Solution [WEGOVY]
The semaglutide will be used in the allocated group in addition to our lifestyle program for the duration of 68 weeks in total.
Primary outcome measures
- Weight change from start study at 3 months post operative until 15 months later [Time frame: 15 months]
- Difference between placebo group and treatment group in weight change [Time frame: 15 months]
Secondary outcome measures (12)
- Weight loss 3 months after surgery [Time frame: 3 months]
- Weight loss 6 months after surgery [Time frame: 6 months]
- Weight loss 12 months after surgery [Time frame: 12 months]
- Weight loss 18 months after surgery [Time frame: 18 months]
- Metabolic health before surgery (bloodpressure) [Time frame: Screening for surgery]
- Metabolic health before surgery (HbA1c) [Time frame: Screening for surgery]
- Metabolic health before surgery (glucose) [Time frame: Screening for surgery]
- Metabolic health before surgery (triglyceride) [Time frame: Screening for surgery]
- Metabolic health before surgery (LDL) [Time frame: Screening for surgery]
- Metabolic health before surgery (HDL) [Time frame: Screening for surgery]
- Metabolic health before surgery (total cholesterol) [Time frame: Screening for surgery]
- Metabolic health 3 months after surgery (Bloodpressure) [Time frame: 3 months]
Eligibility criteria
Inclusion criteria
- BMI before surgery was ≥ 35.0 kg/m2
- Patient is treated with group consultation at the NOK
- Patient has undergone a primary (banded) RYGB or (banded) sleeve gastrectomy (SG)
- Patient is in the lowest %TWL quartile, 3 months after surgery and will be enrolled in the plus module.
Exclusion criteria
- Gastropareses or gastro-intestinal complaints after bariatric surgery
- Type 1 or type 2 diabetes and/or diabetic retinopathy
- Decreased renal function (creatinine clearance < 30 ml/min)
- Liver failure (all)
- Congestive heart failure or angina pectoris NYHA class III and IV
- Malignancy in history
- Pancreatitis (in history)
- (expected) Pregnancy / breast-feeding
- Inflammatory Bowel Disease
- Thyroid malignancy in history
- Use of warfarin or other coumarin derivates
Criteria are shown verbatim from the registry (in English). Final eligibility is always assessed by the study center.
Healthy volunteers: No
Study design
- Allocation
- Randomized
- Model
- Parallel assignment
- Masking
- Double blind
- Primary purpose
- Treatment
Study locations
Center list to be confirmed — check the primary protocol.
Publications
- Yumuk V, Tsigos C, Fried M, Schindler K, Busetto L, Micic D, Toplak H; Obesity Management Task Force of the European Association for the Study of Obesity. European Guidelines for Obesity Management in Adults. Obes Facts. 2015;8(6):402-24. doi: 10.1159/000442721. Epub 2015 Dec 5. PMID 26641646
- Bray GA, Fruhbeck G, Ryan DH, Wilding JP. Management of obesity. Lancet. 2016 May 7;387(10031):1947-56. doi: 10.1016/S0140-6736(16)00271-3. Epub 2016 Feb 10. PMID 26868660
- Busetto L, Dicker D, Azran C, Batterham RL, Farpour-Lambert N, Fried M, Hjelmesaeth J, Kinzl J, Leitner DR, Makaronidis JM, Schindler K, Toplak H, Yumuk V. Practical Recommendations of the Obesity Management Task Force of the European Association for the Study of Obesity for the Post-Bariatric Surgery Medical Management. Obes Facts. 2017;10(6):597-632. doi: 10.1159/000481825. Epub 2017 Dec 6. PMID 29207379
- Apovian CM, Aronne LJ, Bessesen DH, McDonnell ME, Murad MH, Pagotto U, Ryan DH, Still CD; Endocrine Society. Pharmacological management of obesity: an endocrine Society clinical practice guideline. J Clin Endocrinol Metab. 2015 Feb;100(2):342-62. doi: 10.1210/jc.2014-3415. Epub 2015 Jan 15. PMID 25590212
- Nuffer W, Trujillo JM, Megyeri J. A Comparison of New Pharmacological Agents for the Treatment of Obesity. Ann Pharmacother. 2016 May;50(5):376-88. doi: 10.1177/1060028016634351. Epub 2016 Feb 17. PMID 26887340
- Madsbad S, Dirksen C, Holst JJ. Mechanisms of changes in glucose metabolism and bodyweight after bariatric surgery. Lancet Diabetes Endocrinol. 2014 Feb;2(2):152-64. doi: 10.1016/S2213-8587(13)70218-3. Epub 2014 Feb 3. PMID 24622719
- Sjostrom L. Review of the key results from the Swedish Obese Subjects (SOS) trial - a prospective controlled intervention study of bariatric surgery. J Intern Med. 2013 Mar;273(3):219-34. doi: 10.1111/joim.12012. Epub 2013 Feb 8. PMID 23163728
- Gloy VL, Briel M, Bhatt DL, Kashyap SR, Schauer PR, Mingrone G, Bucher HC, Nordmann AJ. Bariatric surgery versus non-surgical treatment for obesity: a systematic review and meta-analysis of randomised controlled trials. BMJ. 2013 Oct 22;347:f5934. doi: 10.1136/bmj.f5934. PMID 24149519
Identifiers
NCT: NCT06287307 · NOK000024