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Clinical Research Directory

Browse clinical research sites, groups, and studies.

3 clinical studies listed.

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Nephropathy, Diabetic

Tundra lists 3 Nephropathy, Diabetic clinical trials. Each listing includes eligibility criteria, study locations, and direct links to research sites in the Tundra directory.

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NOT YET RECRUITING

NCT07749664

DEL-1 and Thromboxane A2 in Diabetic Nephropathy Patients

Diabetic nephropathy is one of the most common microvascular complications of diabetes mellitus and a leading cause of chronic kidney disease. Inflammation and platelet activation are believed to play a significant role in its pathogenesis and progression. Developmental endothelial locus-1 (DEL-1) is an anti-inflammatory protein that regulates leukocyte adhesion and endothelial function, while thromboxane A2 is a marker of platelet activation and contributes to vascular dysfunction. This study aims to evaluate serum levels of DEL-1 and thromboxane A2, and their relationship with platelet count in patients with diabetic nephropathy. Additionally, the study investigates the correlation between these biomarkers and disease severity. This observational cross-sectional study will be conducted on 80 participants, including patients with diabetic nephropathy and healthy controls, to explore the potential role of these biomarkers in disease progression and their possible use as diagnostic or prognostic indicators.

Gender: All

Ages: 18 Years - 70 Years

Updated: 2026-08-06

Nephropathy, Diabetic
COMPLETED

NCT07591077

SGLT2 Adjunct in T1D

Effect of Sodium-Glucose Cotransporter (SGLT) 2 Inhibitors on Diabetic Nephropathy Progression in Adolescents with Type 1 Diabetes Mellitus

Gender: All

Ages: 12 Years - 18 Years

Updated: 2026-05-18

Type 1 Diabetes
Nephropathy, Diabetic
COMPLETED

NCT06376240

The Effect of Pyridoxamine Supplementation on Microvascular Function in Type 2 Diabetes

Patients with type 2 diabetes have an increased risk of developing vascular complications. Microvascular dysfunction might be caused by the increased production of methylglyoxal under hyperglycaemic conditions. Methylglyoxal is a by-product of glycolysis and forms advanced glycation endproducts (AGEs) on proteins and DNA, thereby disrupting their function. Preventing methylglyoxal accumulation and AGEs formation may offer a therapeutic option for treating microvascular complications in diabetics. Pyridoxamine is a vitamin B6 vitamer that scavenges methylglyoxal and thereby inhibits the formation of AGEs. In this study, the researchers investigate whether pyridoxamine supplementation in type 2 diabetes improves microvascular function in the eye, kidney and skin, and reduces markers of endothelial dysfunction and glycation.

Gender: All

Ages: 18 Years - Any

Updated: 2026-04-27

Type 2 Diabetes
Microvascular Function
Retinopathy, Diabetic
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