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Updated: Aug 21, 2025

Comparative Proteomic Analysis of Whole Kidney, Medulla, and Cortical Tubules in Diabetic Pathogenesis of Kidney Injury in Mice
Published on: May 2, 2025
The Pathophysiological Basis of Diabetic Kidney Protection by Inhibition of SGLT2 and SGLT1
Yuji Oe1,2, Volker Vallon1,2,3
1Division of Nephrology and Hypertension, Department of Medicine, University of California San Diego, La Jolla, CA 92161, USA.
Abstract:
SGLT2 inhibitors can protect the kidneys of patients with and without type 2 diabetes mellitus and slow the progression towards end-stage kidney disease. Blocking tubular SGLT2 and spilling glucose into the urine, which triggers a metabolic counter-regulation similar to fasting, provides unique benefits, not only as an anti-hyperglycemic strategy. These include a low hypoglycemia risk and a shift from carbohydrate to lipid utilization and mild ketogenesis, thereby reducing body weight and providing an additional energy source. SGLT2 inhibitors counteract hyperreabsorption in the early proximal tubule, which acutely lowers glomerular pressure and filtration and thereby reduces the physical stress on the filtration barrier, the filtration of tubule-toxic compounds, and the oxygen demand for tubular reabsorption. This improves cortical oxygenation, which, together with lesser tubular gluco-toxicity and improved mitochondrial function and autophagy, can reduce pro-inflammatory, pro-senescence, and pro-fibrotic signaling and preserve tubular function and GFR in the long-term. By shifting transport downstream, SGLT2 inhibitors more equally distribute the transport burden along the nephron and may mimic systemic hypoxia to stimulate erythropoiesis, which improves oxygen delivery to the kidney and other organs. SGLT1 inhibition improves glucose homeostasis by delaying intestinal glucose absorption and by increasing the release of gastrointestinal incretins. Combined SGLT1 and SGLT2 inhibition has additive effects on renal glucose excretion and blood glucose control. SGLT1 in the macula densa senses luminal glucose, which affects glomerular hemodynamics and has implications for blood pressure control. More studies are needed to better define the therapeutic potential of SGLT1 inhibition to protect the kidney, alone or in combination with SGLT2 inhibition.
Insights
Sodium-glucose cotransporter 2 (SGLT2) inhibitors protect kidneys by increasing glucose excretion, offering benefits beyond blood sugar control. These agents reduce kidney strain and inflammation, preserving function in patients with and without type 2 diabetes.
Area of Science:
- Nephrology
- Endocrinology
- Pharmacology
Background:
- Sodium-glucose cotransporter 2 (SGLT2) inhibitors are primarily used for managing type 2 diabetes.
- Emerging evidence suggests SGLT2 inhibitors offer significant renal protection.
- Their mechanism involves blocking glucose reabsorption in the kidneys, leading to glycosuria.
Purpose of the Study:
- To elucidate the multifaceted renal protective mechanisms of SGLT2 inhibitors.
- To explore the potential benefits of SGLT1 inhibition, alone or in combination with SGLT2 inhibition, for kidney health.
- To understand how SGLT2 inhibition impacts glomerular hemodynamics and tubular function.
Main Methods:
- Review of existing literature on SGLT2 and SGLT1 inhibitor pharmacology and renal effects.
- Analysis of proposed mechanisms including metabolic shifts, hemodynamic changes, and cellular protection.
- Discussion of clinical implications for patients with and without diabetes.
Main Results:
- SGLT2 inhibition reduces glomerular pressure and filtration stress, mitigating damage.
- It improves renal cortical oxygenation and reduces pro-inflammatory and pro-fibrotic signaling.
- SGLT1 inhibition influences intestinal glucose absorption, incretin release, and glomerular hemodynamics.
Conclusions:
- SGLT2 inhibitors provide substantial renal protection through unique metabolic and hemodynamic pathways, slowing end-stage kidney disease progression.
- Combined SGLT1 and SGLT2 inhibition may offer additive benefits for glycemic control and renal protection.
- Further research is warranted to fully define the therapeutic role of SGLT1 inhibition in kidney protection.
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