View clinical trials related to Metabolic Diseases.
Filter by:In this study, we aim to identify a well consumable butyrate/hexanoate-enriched oil that increases circulating SCFA concentrations and improves postprandial substrate metabolism, which could be further used for a long-term study.
Hormones that are produced by our stomach and intestines play a role in regulating our appetite and health, and are therefore of high interest for managing conditions such as obesity and Type 2 Diabetes (T2D). Two important hormones, called GLP-1 and PYY, are released from the same intestinal cell. The food we eat influences the release of these hormone and evidence suggests that protein and calcium are key nutrients that stimulate the secretion of GLP-1, while the influence of this combination on PYY release is less clear. Furthermore, gastric emptying affects the rate of absorption of nutrients and by manipulating the structural form of protein, in the absence or presence of calcium, we may be able to learn more about the processes mediating the gut hormone response. We hypothesise that gut hormone secretion will be enhanced following the ingestion of a partially digested protein in the presence of calcium versus a control protein without calcium. Additionally, the ingestion of the partially digested protein will result in faster gastric emptying compared to the control protein.
This study aims to evaluate the effects of oral glycine supplementation on plasma glycine concentration, intracellular glutathione (GSH) concentration, plasma acylglycine concentration, urine acylglycine concentration, and insulin resistance in subjects with morbid obesity. This is an open-labelled trial. 20 adults with morbid obesity will be recruited. Following screening and baseline metabolic evaluations, eligible subjects will be given oral glycine supplements for 14 ± 5 days. Upon completing glycine supplementation, subjects will return for their post-supplement metabolic assessment. The investigators hypothesize that oral glycine supplementation in morbidly obese patients normalizes plasma glycine concentration, increases intracellular GSH concentration, increases plasma and urinary acylglycine concentration, and improves insulin resistance.
We propose to set up a prospective randomized controlled trial to control the security and assess the efficacy of adjuvant treatment by rheopheresis in necrotizing-ulcered calciphylaxis in the hemodialysis population.
Multi-center, open-label, single arm study to Evaluate the preference regarding convenience of medication, efficacy and safety of Sugamet XR tab. 5/1000mg in patients with Type 2 diabetes and renal diseases
Colon cancer (CC) survivors have an increased risk of developing T2D. A recent study revealed that the surgical procedures per se may be causally involved. Hence, left-sided colon resections increased the risk of developing T2D. In addition, treatment with chemotherapy may play a role in the pathogenesis. Given the steadily improving survival rate after a CC diagnosis, prevention of secondary diseases such as T2D is important to improve quality of life in these patients and to reduce socioeconomic expenses. This study aims to elucidate the effect of resection of tumors located in the left part of the colon on pathophysiological intermediates, which may lead to T2D 12 months post-surgery or later. The physiological mechanism might be a changed postprandial secretion of gut hormones including glucagon-like peptide-1 (GLP-1) secreted from L-cells in the left part of the colon. The investigators will evaluate changes in primarily glucose homeostasis as well as in gastrointestinal hormones, microbiota, visceral fat accumulation and markers of low-grade inflammation etc. in CC survivors who underwent a left hemicolectomy or sigmoidectomy. Material and Methods: 60 patients will be included in this explorative clinical study. Patients will be divided into 4 groups depending on surgical procedure and treatment with chemotherapy. In the group of patients undergoing left hemicolectomy or sigmoidectomy ± treatment with chemotherapy 2 x 15 patients will be included, and in the group of patients scheduled to undergo right hemicolectomy ± treatment with chemotherapy another 2 x 15 patients will be included. During the 3 study visits (before surgery, 3-4 weeks post-surgery and 12 months post-surgery) the following tests will be performed: An oral glucose tolerance test, blood and fecal sampling, a DXA scan and an ad libitum meal test. Implications: With this study the investigators expect to obtain an insight in the pathogenesis behind the possible development of T2D in CC survivors who underwent a resection of the left part of the colon ± treatment with chemotherapy. This insight may also help scientists develop new ways of treating or preventing T2D in general.
No additional risk factors have been identified in patients with Inherited Metabolic Diseases (IMD) for contracting or presenting complications of COVID-19 compared to the general population. Yet, IMD patients have cell/tissue alterations that could constitute a potential direct or indirect target for the virus. We do not know the impact of this infection on patients suffering from MHM, nor the possible effect of specific treatment of MHM on the evolution of COVID-19. This study will collect French IMD patients having or having had COVID-19 infection. The main objective is to estimate among IMD patients contracting COVID-19 the frequency of disease aggravation or metabolic decompensation. The secondary objectives will be : a. to evaluate the incidence of COVID-19 diagnosed in a given group of IMD when the number of patients with this IMD is known (Urea Cycle Deficiency, Gaucher Disease). b. to evaluate the impact of IMD on the and severity of COVID-19 infection
This is a single-arm study to investigate 1-year treatment related mortality (TRM) in patients with life threatening non-malignant and malignant hematologic disorders who do not have a matched related donor for allogeneic transplantation.
The main purpose of this study is to understand the impact of lifestyle coaching on the risk of future cardiometabolic disease, workability and self-assessed wellbeing. The data gathered during the study helps in the future to better identify different focus groups for more tailored interventions. The study consists of two main stages: screening and coaching phase. Screening Aava and the pension will recruit 2000 participants for screening from the employer companies. Screening participants are invited to answer a wellbeing questionnaire (Aava Virta questionnaire, Work Ability Index questionnaire) and give blood samples and physiological measurements, including weight, height, waist circumference, neck circumference and blood pressure. All subjects participating in screening will receive the results from wellbeing questionnaire immediately and they receive the results from blood test within few weeks. Of these 2000 screened persons, a total of 300 high-risk (according to ApoB/ApoA1) individuals and 600 medium-risk individuals will be selected to participate in the coaching phase. These participants are randomly split into treatment and control groups, so that eventually 150 high-risk and 300 medium-risk individuals are placed in both groups. Therefore, a total of 900 subjects carry forward to the coaching phase and in 1100 subjects the study ends. All 900 subjects entering coaching phase receive home a Firstbeat Bodyguard 2 device with instructions for performing Firstbeat wellbeing analysis. After the measurement the device is posted back for analysis according to instructions. The results and feedback from this test is received in the end of the study after the coaching phase. Stage 2: Coaching phase Within the coaching groups, participants in the high-risk category and treatment group undergo an individual coaching program. Participants in the medium-risk category undergo a group coaching program with similar aims. Both coaching programs last 10 weeks during which there are 8 almost weekly coaching sessions at the subjects worksite or near vicinity. Both coaching programs aim in reducing cardiometabolic risk factors and improving subjective well-being. The topics of the lifestyle coaching are 1) nutrition, 2) physical activity, 3) sleep and stress and 4) the long-term maintenance of lifestyle changes. The aims and methods in each coaching topic is based on Finnish recommendations on the topic. The coaching sessions include mostly discussions but in the sessions focusing more on physical activity there are also sessions including activity. In the halfway (5 weeks) of coaching phase, a second blood sampling and Aava wellbeing questionnaire are taken from all subjects (both coaching and control groups). In the end of the coaching phase (10 weeks) blood samples, Aava wellbeing questionnaire, Work Ability Index -questionnaire and physiological measurements are taken the last time. At this stage a second Firstbeat analysis is also performed. BBI-15 questionnaire is administered before and after the coaching phase. An open ended questionnaire regarding lifestyle change motivators and experiences before, during and after the coaching phase is administered to all participants. Also, a small subset (20 persons) of subjects takes in interviews to delve more detailed to the experiences during the study. End of coaching phase and study - start of feedback and analysis After the coaching phase has ended and the subjects (coaching and their control groups) have received all the results (wellbeing questionnaire, blood tests and Firstbeat results) for the study and feedback sessions will be held for all. Willing subjects also receive the results from the gene test in form of PRS scores ie. total genetic risk for three areas of health: heart disease, type 2 diabetes and obesity. THL gene results do not identify single gene variants. After this feedback session the study has ended for the subject. After all data in the study has been gathered starts the analysing and reporting phase for the researchers. At this stage the researchers can retrieve data from Aava patient records to analyse the effect of earlier diagnoses and findings. The information retrieved relate to ICD-10 diagnosis codes C00-C97 (malignant neoplasms), E00-E89 (endocrine, nutritional and metabolic diseases), F00-F99 (mental, behavioral and neurodevelopmental disorders), I00-I99 (diseases of the circulatory system) and M00-M99 (diseases of the musculoskeletal system and connective tissue) as these diagnostic codes can be important background factors for biomarkers of CVD and Type 2 diabetes risk and to some of the secondary endpoints like workability.
Evaluation of the effectiveness of comprehensive non-pharmacological treatment on metabolic disorders in type 2 diabetic patients