Empagliflozin reduces podocyte lipotoxicity in experimental Alport syndrome

Author:

Ge Mengyuan12ORCID,Molina Judith12,Kim Jin-Ju12,Mallela Shamroop K12,Ahmad Anis3,Varona Santos Javier12,Al-Ali Hassan12,Mitrofanova Alla12,Sharma Kumar4,Fontanesi Flavia5,Merscher Sandra12,Fornoni Alessia12ORCID

Affiliation:

1. Katz Family Division of Nephrology and Hypertension, Department of Medicine, University of Miami Miller School of Medicine

2. Peggy and Harold Katz Family Drug Discovery Center, University of Miami Miller School of Medicine

3. Department of Radiation Oncology, University of Miami Miller School of Medicine

4. Center for Precision Medicine, School of Medicine, University of Texas Health San Antonio

5. Department of Biochemistry and Molecular Biology, University of Miami

Abstract

Sodium-glucose cotransporter-2 inhibitors (SGLT2i) are anti-hyperglycemic agents that prevent glucose reabsorption in proximal tubular cells. SGLT2i improves renal outcomes in both diabetic and non-diabetic patients, indicating it may have beneficial effects beyond glycemic control. Here, we demonstrate that SGLT2i affects energy metabolism and podocyte lipotoxicity in experimental Alport syndrome (AS). In vitro, we found that the SGLT2 protein was expressed in human and mouse podocytes to a similar extent in tubular cells. Newly established immortalized podocytes from Col4a3 knockout mice (AS podocytes) accumulate lipid droplets along with increased apoptosis when compared to wild-type podocytes. Treatment with SGLT2i empagliflozin reduces lipid droplet accumulation and apoptosis in AS podocytes. Empagliflozin inhibits the utilization of glucose/pyruvate as a metabolic substrate in AS podocytes but not in AS tubular cells. In vivo, we demonstrate that empagliflozin reduces albuminuria and prolongs the survival of AS mice. Empagliflozin-treated AS mice show decreased serum blood urea nitrogen and creatinine levels in association with reduced triglyceride and cholesterol ester content in kidney cortices when compared to AS mice. Lipid accumulation in kidney cortices correlates with a decline in renal function. In summary, empagliflozin reduces podocyte lipotoxicity and improves kidney function in experimental AS in association with the energy substrates switch from glucose to fatty acids in podocytes.

Funder

National Institutes of Health

Miami Clinical and Translational Science Institute, University of Miami

Army Research Office

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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