Glomerular changes in the KK-Ay/Ta mouse: a possible model for human type 2 diabetic nephropathy

Nephrology (Carlton). 2006 Feb;11(1):29-35. doi: 10.1111/j.1440-1797.2006.00543.x.

Abstract

Background: In type 2 diabetic nephropathy, there is no animal model which has been completely matched with humans. Advanced glycation end products (AGE) and transforming growth factor-beta (TGF-beta) are closely related to hyperglycaemia and their pathobiochemistry could explain diabetic nephropathy. The objective of the present study was to evaluate the KK-A(y)/Ta mouse as a suitable model for type 2 diabetic nephropathy including pathological changes and immunohistochemical analyses of AGE and TGF-beta, compared with the non-diabetic BALB/cA mouse.

Methods: The urinary albumin/creatinine ratio (ACR), body weight (BW), fasting and casual blood glucose, blood haemoglobin A(1c) (HbA(1c)), creatinine clearance (Ccr) and blood pressure were measured for phenotypic characterisation. The pathological changes of glomeruli were evaluated by light microscopy, immunofluorescence and electron microscopy. AGE and TGF-beta accumulation were evaluated by immunoperoxidase staining.

Results: The mean levels of ACR, casual blood glucose, blood HbA(1c) and Ccr in KK-A(y)/Ta mice were higher than those in age-matched non-diabetic BALB/cA mice after 12 weeks of age. There were no significant changes in the levels of systemic blood pressure among all groups. The pathological changes of glomeruli in KK-A(y)/Ta mice were consistent with those in the early stage of human diabetic nephropathy. AGE and TGF-beta protein appeared to be localised in the glomerular mesangial matrices.

Conclusion: It appears that KK-A(y)/Ta mice, especially in terms of histopathological findings, are a suitable animal model for the early stage of type 2 diabetic nephropathy.

Publication types

  • Comparative Study

MeSH terms

  • Animals
  • Diabetes Mellitus, Type 2 / complications*
  • Diabetic Nephropathies*
  • Disease Models, Animal*
  • Glycation End Products, Advanced / analysis
  • Kidney Glomerulus / chemistry
  • Kidney Glomerulus / pathology*
  • Male
  • Mice
  • Mice, Inbred BALB C
  • Transforming Growth Factor beta / analysis

Substances

  • Glycation End Products, Advanced
  • Transforming Growth Factor beta