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This is a multicenter, randomized, double-blind, placebo-controlled Phase III clinical study to evaluate the efficacy and safety of HS-20094 injection in subjects with type 2 diabetes who have inadequate glycemic control with diet and exercise alone. The primary objective of this study is to evaluate the effectiveness of HS-20094 compared to placebo in controlling blood glucose levels after 44 weeks and 52 weeks treatment.
This study is a multicenter, randomized, open-label, active-controlled clinical trial with a two-period crossover design, aimed at evaluating the efficacy and safety of Efsubaglutide Alfa Injection 3 mg administered Q2W in patients with Type 2 Diabetes Mellitus (T2DM) who have inadequate glycemic control despite dietary and exercise interventions. The primary endpoint is time in range (TIR; glucose concentration 3·9-10·0 mmol/L) during the period from Week 6 to Week 8 of Efsubaglutide Alfa Injection treatment.
In France, only the fasting blood glucose (FBG) measurement is recommended for diabetes screening. Ethnic heterogeneity and genetic polymorphisms specific to the Afro-Caribbean and Indo-Caribbean population in Guadeloupe justify the interest to early screen type 2 diabetes mellitus (T2DM). Our main objective is to estimate the prevalence of T2DM defined by oral glucose tolerance (OGTT) in subjects with risk factors for T2DM and not diagnosed with the FBG.
The objective of this study is to compare the effect of education through a mobile application with medical and nutritional reinforcement on the metabolic control of Mexican patients with type 2 diabetes attending primary care clinics in Mexico. The research question is: What is the effect of education through a mobile application with medical and nutritional reinforcement vs. nutritional and medical reinforcement, versus an educational platform to influence the metabolic control of patients with type 2 diabetes? Multicenter clinical trial in six family medicine units of the Mexican Institute of Social Security. These selected units are: UMF 9, UMF 28, UMF 7, UMF 1, UMF 9 and UMF 10. Patients with type 2 diabetes will be randomly assigned to the educational intervention through the educational site, (n=160 patients), two clinics will be assigned for the use of the mobile App and the educational site (n=160 patients), and two clinics will be part of the control group (n=160 patients).
Background and objective: Clozapine and olanzapine are some of the most effective antipsychotic drugs, but unfortunately, both drugs induce weight gain and conveys a high degree of metabolic disturbances. The antipsychotic-induced side-effects cause a major clinical problem among patients diagnosed with schizophrenia receiving antipsychotic treatment. Limited effects have been demonstrated for counteracting the side-effects by the switch of antipsychotic therapy, non-pharmacological/behavioural interventions or adjunct pharmacological treatments. Semaglutide, a glucagon-like peptide-1 receptor agonist (GLP-1RA,) is approved for the treatment of type 2 diabetes worldwide. The objective of the study is to investigate effects of semaglutide once-weekly vs. semaglutide placebo once-weekly on the metabolic state in prediabetic or diabetic patients with schizophrenia, who have initiated treatment with clozapine or olanzapine. Methods and analysis: Trial design, intervention and participants: The study is a 26-week, double-blinded, randomized, parallel-group, placebo-controlled, good clinical practice (GCP)-monitored, clinical trial. 104 prediabetic or diabetic patients diagnosed with a schizophrenia, age 18 years and 65 years, who have initiated of clozapine- or olanzapine-treatment within 5 years will be included in the study. The patients will be randomized to receive blinded treatment in one of the two study arms; semaglutide once-weekly vs. semaglutide placebo. All participants who complete the 26 weeks of intervention, will be invited for a follow up visit 1.5 yeras after study completion. The primary endpoint is the change from baseline in glycated haemoglobin A1c (HbA1c). Secondary endpoints include change in body weight, hip and waist circumference, vitals, and plasma levels of insulin, glucose, C-peptid, insulin sensitivity, beta cell function, glucagon, liver function, lipid profile, incretin hormones, lipid profile, bone makers, body composition, bone density and proteomic analyses. Additional endpoints include alcohol, tobacco and drug use, food preferences, psychopathology, activity and quality of life.
Femoral heads will be collected at University Hospital (London, ON, Canada) from individuals with type-2 diabetes, obesity, and no T2D/no obesity controls. The femoral head will be taken to the Robarts Research Institute (London, ON, Canada) for lineage-restricted progenitor cell expansion and analyses. There the femoral heads will be used to isolate three stem cell types - Multipotent Stromal Cells, Endothelial Colony Forming Cells, and Hematopoietic Progenitor Cells. The yield and cell surface markers expressed on these cells will be measured using flow cytometry. These cell types will then undergo further analyses of the secretome, tubule forming assays, vascular regenerative cell exhaustion assays, and will be transplanted into immune deficient mice with with femoral artery ligation. These experiments are to assess the differences in function and expression of these cell types between individuals with type-2 diabetes and/or obesity and/or healthy controls.
Insulin resistance is an early etiological factor in the development of type-2 diabetes (T2D), which constitutes a large societal health burden with an expected additional rise in the years to come. Skeletal muscle is the body's largest lean tissue mass and the major site of glucose disposal in response to insulin stimulation. Prior studies have suggested that a fast skeletal muscle phenotype, including a predominant fast muscle fiber composition, reduced capillary density, low fat oxidation and muscle oxidative capacity may be implicated in insulin resistance and TD2 development. However, key questions pertain in relation to the cause and effect of these relationships as well as the interaction with potential confounders and effect-modifiers including life-style factors (e.g. diet and physical activity levels) and general participant characteristics (e.g. body composition and training status). In the present project, we therefore aim to derive muscle fiber type and extensively map the proteomic signature of the early stages of insulin resistance in a large cross-sectional study using a young and apparently healthy cohort prior to T2D development, including a thorough participant characterization. We will recruit \~250 participants (men and women) in the age of 20-30 years and conduct extensive phenotyping and tissue sampling across one laboratory-based test day and a scan visit, as well as measurements of physical activity level and glucose handling in free-living conditions with wearable sensors. The study has a longitudinal aspect as participants will be re-invited at 5-year intervals for up to 20 years to delineate the trajectory of metabolic health in relation to muscle phenotype measures. The results of the project are expected to lead to significant advancements in our understanding of the importance of muscle phenotype for early-stage insulin resistance and metabolic health trajectories. Such understanding has potentially important clinical implications, as it can open new avenues for targeted interventions and individualized early preventive strategies to counter or delay the progression of insulin resistance and associated metabolic and cardiovascular disorders.
Type 2 diabetes is typically viewed as a chronic, progressive, and lifelong condition. Patients and their healthcare providers "manage" type 2 diabetes through lifestyle modifications and various types of medications designed to lower blood sugar. Exciting new research indicates that "remission" of type 2 diabetes - defined as returning blood sugar into the normal range without having to use medications - through therapeutic nutrition may be possible for many people living with the condition. We will examine the preference, adherence and clinical results of a low-calorie diet or low-carbohydrate diet in type 2 diabetes remission rates.
The present study aims to compare the effects on glycated hemoglobin (HbA1c) at 3 months of two care models in patients with type 2 diabetes referred due to poor glycemic control: a day hospital endocrinology care model versus a care model centered on follow-up by a dietitian-nutritionist.
The objective of this study is to investigate the efficacy and safety of the GOLO for Life® Plan (G4LP) and Release supplementation on glycemic control and weight in overweight and obese adults with Prediabetes or Type 2 Diabetes. The change in glycemic control from baseline at Days 90 and 180 following the G4LP and supplementation with Release will be assessed. Additionally, the safety and tolerability of the G4LP and Release supplementation will be measured by the occurrence of and/or changes in pre-emergent and post-emergent adverse events (AEs).
Goal: The goal of this clinical trial is to learn if the investigational drug HTD1801 can slow the progression of kidney damage in adults diagnosed with both Type 2 Diabetes (T2DM) and Chronic Kidney Disease (CKD). Main Question it Aims to Answer: ▪ Does HTD1801 result in a greater reduction (or a smaller increase) in urine albumin-to-creatinine ratio (UACR) compared to a placebo? Researchers will compare the group receiving HTD1801 to the group receiving a placebo to see if HTD1801 is more effective in slowing kidney function decline. Participants will: * Undergo screening tests to determine eligibility. * Be randomly assigned to receive either HTD1801 capsules or matching placebo capsules twice daily for 12 weeks. * Take the study medication twice daily for 12 weeks. * Attend scheduled clinic visits (weekly for the first 4 weeks, then every 4 weeks) for assessments and check-ups. * Have their safety monitored through reporting of any health changes and routine lab tests.
This is a prospective, exploratory, observational study aimed at investigating the mechanisms of glycemic homeostasis by comparing continuous glucose monitoring (CGM) data with results from the oral glucose tolerance test (OGTT). The study plans to enroll approximately 225 participants aged 18-70 years who are at risk for or suspected of having glucose metabolism disorders, but without a prior diagnosis of diabetes. Participants will be equipped with a blinded CGM device for 10-14 days. During this period, they will perform two standardized mixed-meal tolerance tests (MMTT) at home. Subsequently, they will undergo a standard 75g OGTT at the hospital, where blood samples will be collected at multiple time points to measure glucose, insulin, C-peptide, and gastrointestinal hormones (GLP-1, GIP). Based on the 2-hour blood glucose value from the OGTT, participants will be naturally categorized into three groups for comparative analysis: Normal Glucose Tolerance (NGT), Pre-diabetes (Pre-DM), and Newly Diagnosed Type 2 Diabetes (T2DM). The primary objective is to establish a quantitative relationship between CGM-derived parameters (e.g., glycemic variability, time-in-range) after the MMTT and the OGTT diagnostic results. Secondary objectives include assessing the feasibility and correlation between home-based MMTT and standard OGTT, exploring the impact of gastrointestinal hormone responses on daily glucose fluctuations, and investigating the association between postprandial glucose dynamics and vascular reactivity (e.g., postprandial hypotension).
This study will examine how two types of exercise programs affect nerve health in people with diabetic peripheral neuropathy. Diabetic peripheral neuropathy is a common complication of type 2 diabetes that can cause numbness, pain, balance problems, and reduced quality of life. Exercise is often recommended for people with diabetes, but it is not yet clear which types of exercise are most effective for improving nerve function. In this randomized controlled trial, participants with type 2 diabetes and confirmed peripheral neuropathy will be assigned to one of three groups. One group will perform a combined program of aerobic and resistance exercises (concurrent training). Another group will perform soleus push-up exercises, a seated ankle movement designed to activate the soleus muscle and improve glucose metabolism. The third group will continue with standard diabetes care and general lifestyle advice without a structured exercise program. The study will evaluate whether these exercise interventions influence biological markers related to nerve repair and neuroplasticity, including brain-derived neurotrophic factor (BDNF), nerve growth factor (NGF), and the Schwann cell marker S100B. In addition, the study will assess changes in neuropathy symptoms, balance and postural stability, blood sugar control, and quality of life. Participants will complete assessments before the intervention and again during follow-up after the exercise program. The findings of this study may help identify effective and feasible exercise strategies to support nerve health, improve physical function, and reduce the impact of diabetic peripheral neuropathy.
The goal of this clinical trial is to test a behavioral health program (Interventions for Stressful Transitions in Later Life, InSTILL, for Individuals) for skilled nursing facility residents. The main questions it aims to answer is whether the program is program is feasible, satisfactory, and helpful. Participants will join 6 bi-weekly sessions of the InSTILL program. Participants will complete assessments at three timepoints (all) and a brief-exit interview.
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