View clinical trials related to Diabetes Mellitus, Type 2.
Filter by:QUDOS is a cross-sectional population study aiming to answer key questions about diabetes and its complications in Qatar as well as identify factors associated with the development and progression of diabetes complications.
Prospective, randomized, controlled, multicenter, open-label study to compare everolimus-eluting bioresorbable vascular scaffolds to everolimus-eluting stents in patients with diabetes mellitus.
Diabetes mellitus type 1 (DM1) is an autoimmune metabolic disease in which the insulin producing cells in the pancreas are destroyed and the subject is left totally dependent of external supply of insulin. There is no known cure for DM1 except for in very specific situations. Thus, management of DM1 concentrates on keeping blood glucose levels as close to normal levels. As an aid to subjects with DM1 for managing their blood glucose levels as close to normal as possible, blood glucose monitoring systems have been developed. Available blood glucose monitoring systems today require a capillary blood sample that is analysed by a glucose meter. Subjects are normally advised by health care professionals on the appropriate blood glucose monitoring regime for their condition. However, many subjects fail to measure blood glucose as often as needed to achieve good blood glucose control despite every effort from health care professionals. Research and development of non-invasive interstitial blood glucose monitoring methods is ongoing. All attempts to develop a non-invasive continuous glucose measuring device have so far failed. Prediktor Medical AS has developed a non-invasive sensor, GlucoPred, based on the combination of several non-invasive measurement principles and multivariate analysis and dynamic models of glucose/insulin interaction. The device will be body mounted in the form of a bracelet or a watch communicating with a mobile phone or a tablet for data presentation and collection. Development of GlucoPred is now at a stage where testing of the sensor in subjects under controlled settings is required before further development can take place. If successful, this will be a major step ahead for all patients with diabetes and markedly increase their possibility to take care of their disease on a day to day basis without the burden of frequent blood sampling or wearing an invasive device.
This study will evaluate if periodontal mechanical treatment is capable to alter immunological and genetical parameters related to systemic health in patients with chronic periodontitis ant diabetes type 2.
The purpose of this two-part study is to measure how much of the study drug gets into the blood stream and how long it takes the body to get rid of it. In Part A, each participant will receive two treatments, a single dose and a single dose with continuous infusion of U-500R insulin, both administered just under the skin. Participants who complete Part A will continue into Part B where they will be assigned to 1 of 2 treatments with U-500R insulin, injected either twice or three times daily under the skin for 5-10 days. This study can last from 7-14 weeks including initial screening and follow up.
Diabetic foot ulceration (DFU) is a common complication with a 25% lifetime risk in patients with diabetes. While most of these ulcers can be treated successfully on an outpatient basis, some will persist and become infected. Nearly one fifth of patients with lower-extremity diabetic ulcers will require amputation of the affected limb, resulting in staggering costs for both the patient and the healthcare system. Therapies that promote rapid and complete healing and reduce the need for expensive surgical procedures impact these costs substantially. The standard of care for the treatment of diabetic foot ulcers is the removable cast walker (RCW). RCW use has demonstrated plantar pressure reduction yet is typically perceived as having compliance issues due to its removable nature. In addressing this limitation, a modified version of the RCW has been developed by wrapping it in a layer of cohesive or plaster bandage. This technique has been termed the "instant" total contact cast (iTCC) derived from the seldom-used, gold standard treatment, the total contact cast (TCC). While ease of application and potential clinical equivalence are clear benefits, the iTCC carries disadvantages on account of its irremovability. For example, frequent dressing changes impractical, yet may be necessary for complex wound care. The goal of this research is to continue inquiry and innovation in this most basic aspect of care, whilst addressing the limitations of past research and failures in this domain. The investigators propose examining the capability of the SurroSense Rx® smart insole and smartwatch system (Orpyx Medical Technologies Inc., Calgary AB) in managing and monitoring adherence to plantar pressure offloading through alert-based feedback. The insoles are embedded with pressure sensors, which wirelessly communicate with a smartwatch that provides feedback on modifying activity or pressure profile over time. This smartwatch transmits audio, visual, and tactile notifications when excessive pressure-time thresholds under plantar regions of interest have been met. This feedback allows patients to be educated on their plantar pressure, and engages them and their caregivers to manage adherence to offloading. The investigators also propose comparing the healing rates of active neuropathic ulcers using RCWs coupled with the SurroSense Rx® smart insole system to assess whether adjunctive use of the two interventions improves the efficiency of neuropathic ulcer treatment.
Gastrointestinal (GI) symptoms including vomiting, nausea, abdominal pain, constipation or chronic diarrhea affect a large number of patients with diabetes mellitus (DM). Furthermore, abnormal GI transit times restrict correct dosing of medication. Two new methods, in combination only available at Aarhus University Hospital (AUH), allow examination of human whole-gut function with a high degree of detail: PET-scans (positron emission tomography scans) of cholinergic signaling in the bowel wall The most important nerve fibers stimulating GI peristalsis use acetylcholine as neurotransmitter. The novel PET technique, [11C] Donepezil PET/CT (Donepezil PET/CT scan based on a carbon isotope), developed at AUH, allows in vivo quantification of cholinergic cells within the bowel wall. 3D-Transit With 3D-Transit electromagnetic capsules are followed during their passage through the GI tract. The novel method provides highly detailed information about regional and whole-gut passage times and contractility patterns. Study protocol 20 healthy subjects and 25 diabetic patients with severe GI symptoms will be included. 1. With [11C]donepezil PET/CT, we aim to describe the degree of cholinergic denervation of the intestine in DM patients with GI severe symptoms. 2. Using 3D-Transit in DM patients before and during intervention with acetyl cholinesterase inhibitor we aim to determine how cholinergic denervation of the intestine contributes to abnormal GI transit patterns. 3. Comparing the transit times of DM patients with either vomiting or diarrhea as main symptoms, we aim to provide pilot data on phenotypes of diabetic GI dysfunction. 4. We aim to explore various aspects of "pan-enteric" dysfunction in DM, including prolonged gastric emptying secondary to severe constipation and delayed small intestinal transit in patients with symptoms of gastroparesis with or without delayed gastric emptying Perspectives Detailed information about cholinergic denervation in DM and objective classification of the pathophysiology of diabetic GI dysfunction may allow targeted future treatment of individual patients.
The management goals of diabetic ketoacidosis (DKA) in the pediatric type 1 diabetes (T1DM) population are fluid and electrolyte repletion, insulin administration, and correction of acidosis in order to stabilize the patient. Traditionally, a rapid-acting insulin IV infusion is begun immediately and continued until the acidosis is corrected and hyperglycemia normalized. Once the acidosis is corrected, patients are able to be transitioned to a subcutaneous insulin regimen. The role that a subcutaneous long-acting insulin such as glargine has in the acute treatment of DKA has not been extensively studied. While giving glargine during the treatment of DKA is becoming more common place, few studies have examined the potential risks and benefits of its use. This study will investigate the effects of early administration of glargine during DKA in patients with newly diagnosed TIDM. The design of this study is a prospective, double-blind study of children ages 2-21 who are admitted to the hospital in DKA with a diagnosis of T1DM. The control group will receive all traditional methods of treatment for DKA, including a placebo subcutaneous injection. The study group will receive the same treatment, but will be supplemented with a subcutaneous glargine injection.
Type 2 diabetes results in a host of neuromuscular, muscular, and autonomic system impairments that accelerate age-associated limitations in functional independence and the risk of falls. Diabetic peripheral neuropathy (DPN) contributes to functional declines in balance and mobility because of limitations metabolic abnormalities. The constellation of impairments accompanying type 2 diabetes diminishes muscle function and performance including strength and power. Loss of strength at higher speeds of movement (deficit in power) occurs in neural activation of muscles, changes in muscle properties, and through in older individuals with DPN compared to older controls. Consequently, this deficit in speed dependent muscle power production leads to limitations in rapidly responding to sudden loss of balance stability to prevent falling. The goal of this pilot research program is to determine the feasibility and effectiveness of a mechanism-based therapeutic intervention fro improving balance and mobility functions and preventing falls in older adults with DPN. The investigators pan to use the results from this pilot study to design and implement a larger randomized control trial.
Type 2 diabetes mellitus (T2DM) is associated with an increased risk of kidney failure, with high levels of glycohaemoglobin (HbA1c) presenting a sharper decline in renal function and an increase in the risk of mortality and end-stage renal disease (ESRD). Polyphenols may improve renal insufficiency in patients with diabetes with chlorogenic acids (CGA) one of the principle polyphenol groups in the diet - coffee/tea, stone fruits (especially plums/prunes) and some vegetables (artichoke, chicory). CGA (3-4 cups of coffee) has been associated with 25% lower risk of T2DM and a favourable reduction of HbA1c, blood pressure, and oxidative stress levels. This randomised controlled trial, therefore, aims to evaluate the effect of high CGA food on glycation and oxidative stress in T2DM subjects with early renal insufficiency (glomerular filtration rate of 35-60 mL/min) as well as progression of renal insufficiency and the risk of cardiovascular diseases. The study will have two phases - phase I, an interventional study of 3 months followed by phase II, an observational study of 21 months. In phase I, subjects will be randomized into 2 groups: CGA-enriched diet group, or control (habitual) diet group. The treatment group will be provided with a chlorogenic acid-rich food (coffee) with instructions to achieve an intake of 400 mg per day (equivalent to 3-4 coffee cups per day) for 12 weeks. The control group will receive a conventional coffee low in chlorogenic acid. Participants will attend three sessions during phase I; baseline, 6 weeks, and 12 weeks. At baseline, general information, medical history, dietary habits and medication use will be recorded and a Food Frequency Questionnaire completed. Urine and blood samples will be collected and blood pressure, waist circumference, height and weight recorded. Participants' diet over the previous 3 days will be assessed by estimated food diary analysis. In phase II, written dietary recommendations will be provided at three time points (months 6, 12 and 24) - treatment group to achieve a CGA-rich diet (total polyphenol intake of at least 1g per day, and at least 400mg per day of CGA) and standard dietary advice for the control group. Anthropometric/dietary data will be collected as well as blood and urine samples to assess markers of renal function, glycation and oxidative stress, and proteomic markers of cardiovascular disease, coronary artery disease and diabetes.