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Updated: Sep 27, 2025

Comparative Proteomic Analysis of Whole Kidney, Medulla, and Cortical Tubules in Diabetic Pathogenesis of Kidney Injury in Mice
Published on: May 2, 2025
A Wide-Proteome Analysis to Identify Molecular Pathways Involved in Kidney Response to High-Fat Diet in Mice
Elena Dozio1, Elisa Maffioli2, Elena Vianello1
1Laboratory of Clinical Pathology, Department of Biomedical Sciences for Health, Università degli Studi di Milano, 20133 Milan, Italy.
Abstract:
The etiopathogenesis of obesity-related chronic kidney disease (CKD) is still scarcely understood. To this aim, we assessed the effect of high-fat diet (HF) on molecular pathways leading to organ damage, steatosis, and fibrosis. Six-week-old male C57BL/6N mice were fed HF diet or normal chow for 20 weeks. Kidneys were collected for genomic, proteomic, histological studies, and lipid quantification. The main findings were as follows: (1) HF diet activated specific pathways leading to fibrosis and increased fatty acid metabolism; (2) HF diet promoted a metabolic shift of lipid metabolism from peroxisomes to mitochondria; (3) no signs of lipid accumulation and/or fibrosis were observed, histologically; (4) the early signs of kidney damage seemed to be related to changes in membrane protein expression; (5) the proto-oncogene MYC was one of the upstream transcriptional regulators of changes occurring in protein expression. These results demonstrated the potential usefulness of specific selected molecules as early markers of renal injury in HF, while histomorphological changes become visible later in obesity-related CDK. The integration of these information with data from biological fluids could help the identification of biomarkers useful for the early detection and prevention of tissue damage in clinical practice.
Insights
A high-fat diet triggers molecular changes in mouse kidneys, indicating early renal injury before visible damage. These findings suggest potential biomarkers for early detection of obesity-related chronic kidney disease (CKD).
Area of Science:
- Nephrology
- Metabolic research
- Molecular biology
Background:
- Obesity-related chronic kidney disease (CKD) pathogenesis is not fully understood.
- High-fat (HF) diet's impact on kidney molecular pathways requires further investigation.
Purpose of the Study:
- To investigate the molecular mechanisms of HF diet-induced kidney damage.
- To identify early molecular markers of renal injury in obesity.
Main Methods:
- Mice were fed a high-fat diet or normal chow for 20 weeks.
- Kidney tissues underwent genomic, proteomic, histological, and lipid analyses.
Main Results:
- HF diet activated fibrosis and fatty acid metabolism pathways.
- A shift in lipid metabolism from peroxisomes to mitochondria was observed.
- Early kidney damage correlated with altered membrane protein expression, regulated by MYC.
- No histological signs of lipid accumulation or fibrosis were detected.
Conclusions:
- Molecular changes, including altered protein expression, precede histological damage in HF diet-induced kidney injury.
- Specific molecules may serve as early biomarkers for renal injury in obesity-related CKD.
- Integrating molecular data with biological fluids could aid early detection and prevention strategies.

