db/db Mouse Model of Diabetic Nephropathy
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db/db Mouse Model of Diabetic Nephropathy

db/db mice have a mutation deletion of the leptin receptor and an underlying genetic background that is susceptible to diabetic complications such as nephropathy. Db/db mice represent a model of type 2 diabetes leading to the development of diabetic nephropathy(DN). It is a good model of early to moderately advanced changes in human DN.
Research Models

This brochure provides a comprehensive overview of our db/db mouse model of diabetic nephropathy, designed to support preclinical research and drug development for diabetic complications.

What You'll Find Inside

  • Model Characteristics & Disease Progression: Detailed information on the genetic background (leptin receptor mutation) and the natural progression of diabetic nephropathy in db/db mice.
  • Key Endpoint Data: Quantitative demonstration of model success, including serum creatinine and BUN levels, body weight and fasting blood glucose (FBG) measurements, and urinary protein/creatinine ratios, with statistical comparisons between control, model, and positive control groups.
  • Customizable Services: Beyond the parameters shown in the brochure, we offer tailored model modifications and study designs to meet your specific drug targets and research needs.

This model plays a crucial role in elucidating disease pathogenesis, exploring therapeutic strategies, and developing pharmacological interventions.

Please download the brochure for complete diabetic nephropathy modeling methods, key readout assays, and representative data. Our preclinical experts will contact you to discuss how this model can be customized and integrated into your diabetes drug discovery projects.

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Ace Therapeutics has a team of experts in the field of endocrine and metabolic research, aiming to provide innovative preclinical contract research solutions to cope with diabetes and its complications. We provide customized solutions and technical support, enabling the transformation of promising concepts into innovative treatments, thus accelerating the drug development process of diabetes.

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