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Evolution of renal function abnormalities in the db/db mouse that parallels the development of human diabetic
M P Cohen1, R S Clements, E Hud
1Department of Biochemistry, University of Pennsylvania, Philadelphia, USA.
Abstract:
The db/db mutant mouse is a rodent model of genetic diabetes that develops renal glomerular lesions with striking mesangial matrix accumulation by the age of 16 weeks, after 8-10 weeks of sustained hyperglycemia. However, abnormalities in renal function that antedate or accompany the appearance of these pathologic changes, which resemble those found in human diabetes, have not been delineated. We therefore examined renal function in young db/ db mice and their nondiabetic db/m littermates from the age of 8 through 15 weeks. Serum creatinine and blood urea nitrogen concentrations at the onset of diabetes in db/db mice did not differ significantly from mean concentrations in db/m controls. An elevated creatinine clearance, due in large part to increased body weight, and increased urinary albumin excretion were observed in db/db compared with db/m mice soon after establishment of sustained hyperglycemia. A relative reduction in creatinine clearance was demonstrable in db/db mice at the age of 15 weeks, coincident with the appearance of overt compromise in renal function manifested by frank increases in the serum creatinine and blood urea nitrogen. The findings indicate that the well-documented glomerular pathology in db/db mice is accompanied by definable alterations in renal function, which are similar in chronology and nature to those found in human diabetes.
Insights
Genetic diabetes in db/db mice shows early kidney function changes, including increased albuminuria, before significant damage appears. Kidney function declines later, mirroring human diabetic kidney disease progression.
Area of Science:
- Nephrology
- Diabetology
- Animal Models
Background:
- The db/db mouse is a genetic diabetes model.
- Renal glomerular lesions and mesangial matrix accumulation occur by 16 weeks.
- Renal function abnormalities preceding pathology are not well-defined.
Purpose of the Study:
- To examine renal function in young db/db mice and db/m littermates from 8 to 15 weeks.
- To delineate renal function abnormalities that antedate or accompany glomerular pathology.
- To compare renal function changes with human diabetic kidney disease.
Main Methods:
- Studied db/db mice and nondiabetic db/m littermates.
- Assessed serum creatinine and blood urea nitrogen.
- Measured creatinine clearance and urinary albumin excretion.
Main Results:
- Elevated creatinine clearance and urinary albumin excretion observed in db/db mice post-hyperglycemia.
- Serum creatinine and blood urea nitrogen did not differ initially.
- Relative reduction in creatinine clearance and increased serum creatinine/BUN noted by 15 weeks.
Conclusions:
- Glomerular pathology in db/db mice is accompanied by functional alterations.
- Early changes include increased albuminuria and creatinine clearance.
- Later stages show compromised renal function, similar to human diabetic nephropathy.
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