Related Experiment Video
Updated: Jun 23, 2026

White and Brown Adipose Grafts: An Approach to Correct Reproductive, Metabolic, and Renal Deficits in Black and Tan Brachyury (BTBR) Obese Mice
Published on: September 9, 2025
Effect of lowering uric acid on renal disease in the type 2 diabetic db/db mice
Tomoki Kosugi1, Takahiro Nakayama, Marcelo Heinig
1Division of Nephrology, University of Florida, Gainesville, Florida, USA.
Abstract:
Hyperuricemia has recently been recognized to be a risk factor for nephropathy in the diabetic subject. We tested the hypothesis that lowering uric acid with a xanthine oxidase inhibitor might reduce renal injury in the diabetic mouse. Diabetic (db/db) mice were treated with allopurinol or no treatment for 8 wk. Serum uric acid, renal function, and histology were assessed at death. The direct effect of uric acid in human proximal tubular epithelial cells was also evaluated under normal or high glucose condition. We found that db/db mice developed hyperuricemia, albuminuria, mesangial matrix expansion, and mild tubulointerstitial disease. Allopurinol treatment significantly lowered uric acid levels, reduced albuminuria, and ameliorated tubulointerstitial injury, but it did not prevent mesangial expansion. The mechanism for protection was shown to be due to a reduction in inflammatory cells mediated by a reduction in ICAM-1 expression by tubular epithelial cells. Interestingly, allopurinol did not reduce oxidative stress in the kidney. An inflammatory role of uric acid on tubular cells was also confirmed by our in vitro evidence that uric acid directly induced ICAM-1 expression in the human proximal tubular cell. In conclusion, hyperuricemia has a pathogenic role in the mild tubulointerstitial injury associated with diabetic nephropathy but not glomerular damage in db/db mice. Lowering uric acid may reduce tubulointerstitial injury in diabetes.
Insights
Lowering uric acid with allopurinol reduced kidney injury in diabetic mice by decreasing inflammation. This suggests hyperuricemia contributes to tubulointerstitial damage in diabetic nephropathy.
Area of Science:
- Nephrology
- Endocrinology
- Pharmacology
Background:
- Hyperuricemia is an emerging risk factor for diabetic nephropathy.
- Diabetic kidney disease involves complex pathological changes including glomerular and tubulointerstitial damage.
Purpose of the Study:
- To investigate if reducing uric acid levels with a xanthine oxidase inhibitor (allopurinol) can mitigate renal injury in diabetic mice.
- To elucidate the mechanisms by which uric acid may impact kidney damage in diabetes.
Main Methods:
- Diabetic (db/db) mice were treated with allopurinol for 8 weeks.
- Assessed serum uric acid, renal function, and kidney histology.
- Evaluated the direct effect of uric acid on human proximal tubular epithelial cells in vitro.
Main Results:
- Allopurinol treatment lowered serum uric acid, reduced albuminuria, and ameliorated tubulointerstitial injury.
- Mesangial matrix expansion was not prevented by allopurinol.
- Protection was linked to reduced inflammatory cell infiltration and ICAM-1 expression, not reduced oxidative stress.
- In vitro studies confirmed uric acid directly induces ICAM-1 expression in tubular cells.
Conclusions:
- Hyperuricemia plays a pathogenic role in tubulointerstitial injury in diabetic nephropathy.
- Lowering uric acid may be a therapeutic strategy to reduce tubulointerstitial damage in diabetic kidney disease.
- Allopurinol's protective effects in this model are mediated by anti-inflammatory mechanisms rather than antioxidant effects.
