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Updated: Jun 2, 2026

Comparative Proteomic Analysis of Whole Kidney, Medulla, and Cortical Tubules in Diabetic Pathogenesis of Kidney Injury in Mice
Published on: May 2, 2025
Kidney in diabetes: from organ damage target to therapeutic target
Teresa Salvatore1, Ornella Carbonara, Domenico Cozzolino
1Dept. of Internal and Experimental Medicine Second University of Naples, Italy, Via F. Petrarca, 64, I- 80122 Naples, Italy.
Abstract:
Despite the growing of pharmacological options for the treatment of diabetes, epidemiological studies suggest that a substantial proportion of patients does not achieve glycemic goals and so suffers from the risk of chronic complications. This review explores the inhibition of renal glucose reabsorption as a novel approach to treat hyperglycemia. Sodium-glucose cotransporter 2 (SGLT2), a low-affinity high-capacity transporter located in the brush-border membrane of the early segment (S1) of the proximal renal tubule, accounts for about 90% of the reabsorption of glucose from tubular fluid. Competitive inhibitors of SGLT2 that are responsible for renal excretion of glucose provide a unique mechanism to potentially lower the elevated blood glucose levels in patients with diabetes. They act independently of insulin secretion, thereby minimizing the risk of hypoglycemia and weight gain, to control energy balance in a negative direction, a distinctive advantage of this class of drugs over existing oral hypoglycemic agents. Although this group of medications is still under investigation, it appears to be safe and generally well tolerated and it would be expected to improve the treatment of type 2 diabetes as monotherapy or in combination with other oral or parenteral agents. Dapagliflozin is the first agent within this class, which induces clinically meaningful reductions in FPG, PPG, HbA1c, and body weight in type 2 diabetes.
Insights
Inhibiting Sodium-glucose cotransporter 2 (SGLT2) in the kidneys offers a new way to lower blood sugar for diabetes patients. This approach helps reduce glucose levels independently of insulin, minimizing hypoglycemia risks.
Area of Science:
- Nephrology
- Endocrinology
- Pharmacology
Background:
- Many diabetes patients don't reach glycemic targets, increasing chronic complication risks.
- Novel therapeutic strategies are needed to improve diabetes management.
- Inhibiting renal glucose reabsorption presents a promising new approach.
Purpose of the Study:
- To explore the inhibition of renal glucose reabsorption as a novel therapeutic strategy for hyperglycemia.
- To review the mechanism of action and potential benefits of SGLT2 inhibitors.
Main Methods:
- Review of existing literature on renal glucose reabsorption and SGLT2 inhibition.
- Analysis of the mechanism of action of SGLT2 inhibitors.
- Evaluation of clinical data on SGLT2 inhibitors, including Dapagliflozin.
Main Results:
- Sodium-glucose cotransporter 2 (SGLT2) accounts for ~90% of renal glucose reabsorption.
- SGLT2 inhibitors promote glucose excretion, lowering blood glucose levels.
- These inhibitors act independently of insulin, reducing hypoglycemia and promoting negative energy balance.
Conclusions:
- SGLT2 inhibition is a viable approach for managing hyperglycemia in diabetes.
- SGLT2 inhibitors demonstrate safety and tolerability, with potential as monotherapy or combination treatment.
- Dapagliflozin, the first SGLT2 inhibitor, shows significant reductions in FPG, PPG, HbA1c, and body weight.
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