Clinical Trials

Diabetes Clinical Trials

Browse actively recruiting Clinical Trials for type 2 diabetes, type 1 diabetes, insulin resistance, and prediabetes and apply in minutes.

20 active Clinical Trials

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Effect of Increased Physical Activity and Stopping Evening Snacking in Metabolic Health in Youth With Prediabetes

Non-healthy eating habits and a lack of exercise contribute to prediabetes and type 2 diabetes (T2D). Evening snacking is linked to abnormal weight gain in adults and healthy adolescents. Most adolescents do not get enough exercise. This study aims to look at the benefits of more exercise and stopping evening snacking in youth with prediabetes. The study lasts 8 weeks, and participants will be randomly assigned to either an intervention group or a standard of care group.

Prediabetes· Baylor College of Medicine· Houston, Texas· Ages 12–18
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Feasibility and Adherence to a Technology-assisted Home-based Strength Training Program in Adults With Type 2 Diabetes Mellitus and Mild Cognitive Impairment

This is a single-arm feasibility study employing a pre-post design with a 12-week intervention period. The study utilizes a telehealth-assisted home-based resistance exercise program, with a structured progression from supervised to unsupervised sessions over 12 weeks.

Type2diabetes· The University of Texas Medical Branch, Galveston· Galveston, Texas· Ages 55–80
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ACT Intervention for Type 2 Diabetes Management for Rural and Underserved Community

The purpose of this project is to examine the feasibility/acceptability of a one-day Acceptance and Commitment Therapy + Lifestyle Education group intervention paired with 12-weeks of Continuous Glucose Monitoring for patients with type 2 diabetes (T2D) living in rural communities. This study is being designed as a randomized control trial (RCT) comparing ACT+LE+CGM to LE+CGM to LE. The ultimate goal of this line of research is that a community-wide intervention of Acceptance and Commitment Therapy (ACT) with Continuous Glucose Monitoring (CGM) and Lifestyle Education (LE) will improve T2D outcomes in rural communities compared to CGM and LE, or LE alone. Our goal is to develop a scalable and sustainable program for diabetes management in rural areas that enables individual self-management and does not require extensive healthcare resources in an existing medical desert.

Type 2 Diabetes· Sam Houston State University· Conroe, Texas
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RESET System Pivotal Trial (Rev F)

A Randomized, Multi-Center, Pivotal Efficacy and Safety Study Evaluating the RESET System for Glycemic Improvement in Patients with Inadequately Controlled Type 2 Diabetes and Obesity, the STEP-1 Study. A multi-center, double-blinded, randomized, sham-controlled trial to evaluate the safety and effectiveness of the RESET System plus moderate intensity lifestyle and dietary counseling compliant with 2024 ADA Standard of Care as compared to a sham control receiving moderate intensity lifestyle and dietary counseling. Both the treatment and sham group will practice medical management compliant with STEP-1 Study Guidelines. Patients will be randomized 3 (RESET):1 (Sham).

Diabetes type2· Morphic Medical Inc.· Washington D.C., District of Columbia · Miami, Florida +5 more· Ages 22–65
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Comparing Healthcare Visit Recording and Open Notes to Improve Chronic iLlness Care Experience in Older Adults

CHRONICLE is a randomized trial assessing the comparative effectiveness of providing written visit information via the patient portal (NOTES) versus NOTES plus visit audio recording (AUDIO) to older adult patients with chronic diseases on quality of life and other outcomes. During the trial, the team will also invite caregivers identified by patients to join the project.

Diabetes Mellitus· Dartmouth-Hitchcock Medical Center· Manchester, New Hampshire · Nashville, Tennessee +1 more
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Immune Function and the Progression to T1D

To elucidate the mechanisms by which type 1 diabetes-associated genes; IFIH1, TYK2, IKZF4, as well as total genetic risk, impart functional immunoregulatory abnormalities that result in expansion of self-reactive adaptive immune cells, defective regulatory/effector mechanisms in T cells, inflammatory antigen presenting cells, and abnormal immune function in T cells and B cells.

Type 1 Diabetes· University of Florida· Gainesville, Florida · Columbus, Ohio +1 more0
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Adapting and Assessing the Feasibility of a Telehealth Diabetes Prevention Program for Hispanic Adolescents

Hispanic adolescents are disproportionately burdened by type 2 diabetes (T2D). Social determinants of health (SDoH) serve as barriers to behavior change and participation in disease prevention efforts, especially among vulnerable adolescents. Telehealth is a potentially effective approach for delivering disease prevention programs as it addresses some SDoH like transportation, childcare needs, and parent work schedules. Unfortunately, there are no theory- or evidence-based telehealth diabetes prevention program for Hispanic adolescents. Therefore the purpose of this study is to adapt an evidence-based diabetes prevention program for delivery via telehealth and to test the feasibility of this study among Hispanic adolescents (12-16 years) with obesity.

Obesity and Type 2 Diabetes· Baylor College of Medicine· Houston, Texas· Ages 14–16
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Phase 1Recruiting

A Randomized Phase 1/2 Trial of Low Dose Anti-thymocyte Globulin (ATG) With Subsequent Adalimumab or Verapamil in New Onset Type 1 Diabetes

This multi-center randomized controlled trial will assess the safety and efficacy of ATG followed by either adalimumab or verapamil in preserving insulin secretion 2 years from randomization in persons aged 9 to \<21 with recent-onset stage 3 T1D.

Type 1 Diabetes· City of Hope Medical Center· San Francisco, California · Gainesville, Florida +7 more· Ages 9–20
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PATHS-UP Health Behavior Self-monitoring Mobile App for Adolescents

Hispanic adolescents in the U.S. are disproportionately burdened by type 2 diabetes (T2D) compared to non-Hispanic white youth (0.079% vs. 0.017%) contributing to higher rates of T2D-related vascular complications, cardiovascular disease, and mortality, among this population. Disparities in T2D are driven in part by independent, modifiable risk factors including low levels of physical activity, sleep, and poor diet. Lifestyle interventions are the cornerstone for maintaining glucose control and managing T2D. However, few studies have developed and tested lifestyle interventions for Hispanic youth with T2D. Digital health interventions that promote healthy lifestyle behaviors like physical activity, sleep, and diet, have demonstrated effectiveness among adults. Studies that use health-based smartphone applications have demonstrated preliminary efficacy for improving health-related lifestyle behaviors as these digital tools leverage behavior change techniques (e.g. self-monitoring, goal-setting, feedback) that have proven effective. Use of digital technology allows for the continuous delivery of intervention content into the home environment extending the reach of clinical care while engaging youth in a format that is age-appropriate given that today's youth are digital frontrunners. Unfortunately, while the use of digital health interventions have increased, few studies have focused on adolescents with overweight and obesity who are at high risk for T2D. The purpose of this study is to 1) develop a mobile health platform for remote and continuous monitoring of activity, sleep, and nutrition and 2) conduct a pilot study (30 days) to evaluate the efficacy of a novel digital health platform in improving obesity-related health outcomes outcomes in Hispanic adolescents (12-18 years; N=30) population.

Obesity and Diabetes Mellitus, Type 2· Baylor College of Medicine· Houston, Texas· Ages 12–18
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Therapeutic Plantar Electrical Stimulation Intervention During Hemodialysis to Improve Balance and Mobility

A high prevalence of diabetes has been reported in Qatar with nearly 23% population suffering from the pandemic, thereby increasing the associated healthcare cost. Low compliance with exercise and physical activity in patients with diabetes increases foot risk complications, deteriorates health, and further increases economic costs. This is particularly true among patients with diabetes who are undergoing hemodialysis (HD) process. Exercise interventions have been shown to improve mobility and balance, reduce the incidence of falls, and improve peripheral blood flow, which is essential to reduce foot problems and peripheral arterial disease. However, uptake of exercise programs for individuals who are undergoing HD treatment has been limited. The three main factors limiting uptake and adherence among HD patients are time availability, post-dialysis fatigue, and transportation to exercise programs, which are usually offered in rehabilitation departments or cardiovascular centers but not in nephrology departments or in free-standing dialysis clinics. Many of these patients visit clinics 3 times a week to receive hemodialysis, providing an optimal opportunity for intervention. Thus the investigators are proposing an innovative intervention based on plantar electrical stimulation treatment during HD (3 times per week) to enhance balance and quality of life while reducing the risk of peripheral arterial diseases and diabetic foot ulcers, which are highly prevalent among people with diabetes and chronic kidney disease. This interdisciplinary study is based on preliminary studies, in which the investigators demonstrated that regular plantar electrical stimulation is an effective and practical therapy to enhance motor performance and plantar sensation in patients with diabetes. The scientific premise of the proposed intervention has been also supported by literature as well as three systematic reviews suggesting the effectiveness of electrical stimulation to reduce pain, improve balance, improve skin perfusion, and improve plantar sensation. In the context of this study, the investigators propose to bring an innovative technology based on an FDA-cleared bio-electric stimulation technology (BEST®) microcurrent platform, named Tennant Biomodulator® (Avazzia Inc., Dallas, TX, USA), which is a transcutaneous electrical nerve stimulator (TENS) and has been designed for symptomatic relief and management of chronic pain. However, the system was modified to provide electrical stimulation to the plantar area via two electrodes placed on the hind and forefoot area instead of the leg. The device has a 60-minute run cycle after which it automatically turns off. In the context of a previous study funded by QNRF, the investigators developed and tested 50 electrical stimulation units (which will be used in the context of the study), including 25 active systems and 25 placebo systems. The placebo systems are similar to active systems in the appearance and functioning of lights and indicators. However, they were programmed not to provide any electrical current. In a preliminary study, the proof of concept of this revised technology was tested in the context of enhancing balance and skin perfusion in ambulatory patients with diabetes and peripheral neuropathy. In the context of this study, the investigators plan to translate this technology for routine treatment during HD sessions for patients with diabetes who are undergoing regular HD treatment. Using a double-blinded randomized-controlled model, the investigators will validate the effectiveness of this technology to enhance balance, reduce pain, and improve skin perfusion. One hundred (n=100) HD volunteers with diabetes will be recruited and randomized to either intervention (n=50) or control (CG: n=50) group for the purpose of this study. Plantar electrical stimulation will be provided during HD sessions, 3 times per week and for 12 weeks. Outcomes will be assessed at baseline, 6 weeks, and 12 weeks to examine the effectiveness of the proposed intervention to enhance balance, improve quality of life, and improve lower extremity skin perfusion among HD patients with diabetes. This proposal is in line with Qatar National Priorities Research goals and if successful the result will open new doors to managing diabetes and kidney failure. In a setting where no therapeutic agents or interventions effectively address poor balance and loss of protective sensation among HD patients with diabetes and where affected individuals life with a heightened risk of developing a debilitating foot ulcer and quite possibly a disabling amputation, the potential impact from the plantar electrical stimulation system may offer the potential for significant clinical benefit, with very low risk, and with ease of implementation in routine care application for patients who are undergoing HD treatment.

Diabetes Mellitus· Hamad Medical Corporation· Houston, Texas
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Phase 3Recruiting

AMAZE 2: A Research Study Investigating How Well the Medicine NNC0487-0111 Helps People With Excess Body Weight and Type 2 Diabetes Lose Weight

The purpose of this clinical study is to find out if NNC0487-0111 is safe and effective for treating people who have excess body weight and type 2 diabetes. There are 2 study treatments in this study taken as injections under the skin once a week. Participants will either get NNC0487-0111 (the treatment being tested) or Placebo (treatment that has no active medicine in it). Which treatment participants get is decided by chance.

Diabetes Mellitus· Novo Nordisk A/S· Houston, Texas
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iGlucose® Remote Patient Monitoring Device as an Adjunct to Routine Glucose Meter Devices for Glycemic Management and Control in Gestational Diabetes

The purpose of this study is to investigate whether automation of glucose monitoring data to facilitate the total number of recommended and completed SMBG checks improve clinical outcomes for women living with gestational and type 2 diabetes during pregnancy? This is a RCT

Gestational Diabetes· The University of Texas Health Science Center, Houston· Houston, Texas
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N/AStarting soon

Produce Rx in High Risk Pregnant Mothers at Harris Health

The purpose of this study is to assess the effectiveness of a "Food is Medicine" (FIM) intervention on incidence of gestational diabetes mellitus (GDM) among pregnant women at risk for GDM within the Harris Health system.

Gestational Diabetes Mellitus· The University of Texas Health Science Center, Houston· Houston, Texas· Ages 18–44
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Phase 2Recruiting

HP-211 Safety and Proof of Concept Dose Ranging Study in Patients With Type 2 Diabetes

Blood sugar levels are controlled by insulin, a hormone made by cells in the pancreas. After a meal, carbohydrates are broken down into glucose which is absorbed from the intestine into the blood leading to a rise in glucose (blood sugar) which triggers the secretion of insulin. Insulin binds to cells in several tissues including liver, muscle, and fat, triggering cells to take up glucose and bring the blood glucose level back to normal. A high blood sugar level is known as diabetes. The most common form of diabetes, type 2 diabetes, is caused by insulin resistance; that is, a reduced ability of insulin to stimulate glucose uptake into cells. The body compensates for insulin resistance by making more insulin; type 2 diabetes occurs when the pancreas can no longer make enough insulin to control blood glucose. The high blood glucose and insulin levels lead to long-term complications such as heart attacks, kidney failure, reduced sensation and poor circulation in the feet and legs. High insulin levels also increase the incidence of cancers, stroke, and dementia. Reducing blood glucose levels with oral medications and insulin reduces risk of diabetic complications. There are several types of oral medications available for treating diabetes; however, they do not always control blood glucose adequately. In addition, these drugs have complications and are not used to treat insulin resistance and prediabetes - a condition when blood glucose is higher than normal but not high enough to be classified as diabetes. Prediabetes often progresses to diabetes over a period of months or years. Effective and safe treatments for insulin resistance may prevent the onset of diabetes or even reverse diabetes if diagnosed in its early stages before substantial damage to the pancreas has occurred. HP-211 is a botanical extract whose active ingredients are derived from herbs and vegetables present in normal diets. HP-211 has been shown in laboratory studies in cell culture, in animal studies, and in a previous Phase 1 study to enhance the ability of insulin to stimulate glucose uptake into cells. Thus, HP-211 may reduce the blood glucose and circulating insulin levels of subjects with type 2 diabetes after a meal. HP-211 may also reduce glucose and insulin responses to a greater extent in insulin-resistant as compared to insulin-sensitive subjects. Subjects will take 0, 1, 2 or 3 tablets of HP-211 in the morning and evening for 90 days. Hemoglobin A1c (HbA1c, or "A1c"), a measure of the average amount of glucose present in the blood, will be measured during the trial period.

Type 2 Diabetes· Housey Healthcare ULC· Canoga Park, California · Doral, Florida +22 more
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Phase 2Recruiting

INHALE-1st: Afrezza® For Youth With Newly-Diagnosed Type 1 Diabetes

INHALE-1st is a Phase 2, single-arm, multi-center, clinical study evaluating the safety and efficacy of Afrezza in combination with subcutaneously-injected basal insulin (BI) for youth 6 to \<18 years old with newly diagnosed stage 3 type 1 diabetes (T1D). The study will also evaluate the effect of an Afrezza plus BI reigmen on participant and parent/legally authorized representative satisfaction. Participants will be followed for 13 weeks during the main phase followed by an optional Extension Phase for participants continuing to use Afrezza in combination with BI for up to 26 weeks.

Type 1 Diabetes Mellitus· Mannkind Corporation· Los Angeles, California · San Francisco, California +8 more· Ages 6–17
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N/AStarting soon

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

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.

Diabetes Complications· Texas Woman's University· Houston, Texas
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Sleep and Glycemic Control in Type 2 Diabetes Adolescents

The primary objective is to determine the cross-sectional relationship between sleep duration (as measured by 14 days of actigraphy) and glycemic control in an adolescent Type 2 Diabetes (T2DM) cohort (age 12-20y, n=67). A secondary objective is to determine if a loss-framed incentive for achieving sleep goals can increase sleep duration in 15 adolescent patients diagnosed with T2DM with insufficient sleep. Another secondary objective is to test if increasing sleep duration leads to improved glycemic control in 15 adolescents with T2DM identified in Aim 1 as having \<8 hr sleep/evening. A focus group will be conducted prior to this intervention with patients ineligible for the intervention in order to determine appropriate text messaging.

Type 2 Diabetes· Children's Hospital of Philadelphia· Philadelphia, Pennsylvania· Ages 12–20
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