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Diabetes Mellitus, Type 2 clinical trials

View clinical trials related to Diabetes Mellitus, Type 2.

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NCT ID: NCT05074849 Not yet recruiting - Clinical trials for Diabetes Complications

Benefits of Insoles With Real-Time Alert and Foot Self-Care Education

Start date: October 20, 2024
Phase: N/A
Study type: Interventional

Novel approaches to promote adherence to diabetic footwear and prevent high incidence of diabetes foot ulcers are urgently needed. Investigators propose to translate an innovative and practical technology to supplement clinical and risk evaluation for patients with diabetes through wearable insoles and smart watch, along with foot self-care education, to improve adherence to prescribed footwear and reduce incidence of foot ulcers in those with diabetes and at risk for foot ulcers.

NCT ID: NCT05058690 Not yet recruiting - Diabetes Mellitus Clinical Trials

Artificial Intelligence to Improve Cardiometabolic Risk Evaluation Using CT Scans

ACRE-CT
Start date: March 1, 2024
Phase: N/A
Study type: Interventional

To validate the ability of the FatHealth algorithm to identify individuals with pre-diabetes and with type 2 diabetes mellitus

NCT ID: NCT05037058 Not yet recruiting - Diabetes Mellitus Clinical Trials

China Diabetes Cardiovascular Initiative

CDCV
Start date: September 1, 2021
Phase:
Study type: Observational

As a collaborative project between American Heart Association, Chinese Society of Cardiology, American Diabetes Association and Chinese Diabetes Society, the China Diabetes Cardiovascular Initiative aims to enhance the attention and awareness of cardiovascular health care professionals (HCPs) in the managements of cardiovascular diseases and diabetes, to reduce diabetes-related complication and minimize adverse events in patients with cardiovascular disease, and to reduce the risk of cardiovascular morbidity and mortality in diabetic patients.

NCT ID: NCT05029804 Not yet recruiting - Clinical trials for Diabetes Mellitus, Type 2

Effect of Walking Exercise Training on Adherence to Disease Management and Metabolic Control in Diabetes

Start date: September 30, 2021
Phase: N/A
Study type: Interventional

This study aims to determine the effects of a transtheoretical model-based walking exercise training and disease management and metabolic control in patients with type 2 diabetes. This randomized controlled trial will be conducted as a pre-test and post-test experiment with 30 intervention and 30 control individuals. The intervention group will receive the transtheoretical model-based exercise training. The intervention group will be followed-up for 6 months (from 0 to 6 months) to determine the patients' behavioral changes after the training will be completed.

NCT ID: NCT05023798 Not yet recruiting - Clinical trials for Diabetes Mellitus, Type 2

Study to Evaluate a Prototype Non-Invasive BG Measurement System

ATD
Start date: September 15, 2021
Phase:
Study type: Observational

1. Diabetes mellitus is a chronic disease currently affecting more than 425 million people, of which one-third are people older than 65 years. In the UK, the number of people currently diagnosed with diabetes surpassed 3.8 million in 2019, with someone being diagnosed with the illness every two minutes (Diabetes.org figures). The prototype device being tested is a non-invasive blood glucose measurement system worn on the wrist. This would help people with diabetes manage their condition better and help prevent complications. 2. The main objectives of the research are: 1. To determine how accurate and effective the Afon prototype non-invasive blood glucose measurement system is, as compared to a gold standard invasive method. 2. To chart the Afon device's predicted blood glucose levels over time. 3. The study will be done with 30-50 patients. Eligible patients will have been diagnosed with diabetes (type 1 or 2) at least one year prior, be between 18 and 80 years old, and with a BMI between 18-35 kg/m2. For details of the full list of inclusion and exclusion criteria, see accompanying documentation. 4. The trial will be conducted at the Joint Clinical Research Facility (JCRF), Institute of Life Science 2, Swansea University, SA2 8PP. 5. Participants will attend the site for a total of 5 visits, one for screening, and four study visits, no more than 7 days apart. The study will run for one year.

NCT ID: NCT04999722 Not yet recruiting - Diabetes Mellitus Clinical Trials

Establishment and Preliminary Evaluation of Digital Three Level Linkage Whole Process Diabetes Management System

Start date: August 25, 2021
Phase: N/A
Study type: Interventional

This study used Nan'an District of Chongqing, China as a pilot project to improve the comprehensive compliance rate of diabetic patients in China, and reduce the physical and economic harm caused by complications.

NCT ID: NCT04999189 Not yet recruiting - Clinical trials for Diabetes Mellitus, Type 2

The Effectiveness of Using a Mobile Application for Type 2 Diabetes Self-care

Start date: September 1, 2021
Phase: N/A
Study type: Interventional

The purpose of the research is to evaluate and test the usefulness of the mobile application forDiabetes to improve the self-care of individuals with diabetes type 1. The investigators want to obtain the missing evidence from the field of application operation and their impact on individuals' self-care and study the acceptance of applications among healthcare staff, which plays an essential role in patient education.

NCT ID: NCT04998461 Not yet recruiting - Obesity Clinical Trials

Impact of Obesity, Chronic Kidney Disease and Type 2 Diabetes on Human Urinary Stem Cells

URISTEM
Start date: November 2021
Phase:
Study type: Observational

Obesity is at risk for the development of chronic kidney disease but the involved mechanisms are not known (Navarro et al. 2015). Establishing the link between obesity and kidney damage is difficult. Indeed, kidney function measurement lacks precision in obese people (Lemoine et al. 2014) and requires expensive methods such as measurement of 99mTc-DTPA clearance. Biopsies are too invasive for the detection of emerging kidney damage or for the following of the kidney function. Therefore new tools are required for the early identification of at risk individuals for the kidney damage complication. Mesenchymal stem cells may represent such a relevant tool. These cells are present in a large number of organs, including kidney (Costa et al. 2020). In addition to be differentiated cells progenitors (Dominici et al. 2006), they also support immunosuppressive, anti-fibrotic and pro-angiogenic functions that have been used for the treatment of kidney fibrosis (Usunier et al. 2014). Therefore, mesenchymal stem cells contribute to tissue homeostasis and their alterations may reflect organ dysfunctions. Indeed, mesenchymal stem cells from obese adipose tissue lose their immunosuppressive (Serena et al. 2016) and differentiation (Gustafson et al. 2009) functions and contribute to fibrosis (Keophiphath et al. 2009) and inflammation (Lee et al. 2010; Gustafson, Nerstedt, et Smith 2019). It is thus probable that kidney dysfunctions are associated with functional alterations of kidney mesenchymal stem cells. The collection of mesenchymal stem cells from kidney can easily be performed from urine and next cultivated for amplification. They are called urine stem cells (USC). From our experience with obese mouse adipose stem cells, we observed that functional changes of stem cells preceded adipose tissue dysfunctions. Functional signatures of mesenchymal stem cells are thus representative of changes occuring in the function of the tissue notably in answer to obesity. These features could be used to identify obese people presenting ongoing alterations of kidney function, before clinical manifestations of kidney dysfunction. Because kidney mesenchymal stem cells are easy to isolate from urine, their collection is compatible with the follow up of patients and can be applied to a large number of individuals, including the younger. USC could represent a valuable tool to detect progression towards kidney damage. In this project we plan to analyse USC alterations induced by obesity and to identify signatures associated with the progression towards kidney damage and type 2 diabetes. The goal is to evaluate USC as potential marker for the non invasive monitoring of patients in answer to a need that is not achieved by the present available approaches.

NCT ID: NCT04983277 Not yet recruiting - Clinical trials for Cardiovascular Diseases

Diabetes Complications and the Risk of Cardiovascular and Cerebrovascular Diseases

Start date: July 2021
Phase:
Study type: Observational [Patient Registry]

This study is intended to include 3000 diabetic patients in our hospital to collect complete medical history data, comprehensively improve the screening of diabetic complications and cardiovascular and cerebrovascular risk assessment.

NCT ID: NCT04976426 Not yet recruiting - Diabetes Mellitus Clinical Trials

Establishment and Clinical Validation of a New Technique for Early Diagnosis of Diabetic Nephropathy

Start date: January 1, 2022
Phase:
Study type: Observational

Diabetic kidney disease(DKD) is a leading cause of chronic kidney disease and end-stage renal disease across the world. Early identification of DKD is vitally important for the effective prevention and control of it. However, the available indicators are doubtful in the early diagnosis of DKD. This study aims to develop a novel system of multidimensional network biomarkers (MDNBs) to estimating early diabetic nephropathy, and further validating the performance of the novel systemin in prediction of the risk for early diabetic nephropathy by a nested case-control study.