Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

SGLT2 Inhibitors: The First Endothelial-Protector for Diabetic Nephropathy

View through CrossRef
Sodium-glucose co-transporter type 2 inhibitors (SGLT2i) have emerged as a class of agents relevant for managing diabetic nephropathy and cardiopathy. In a previous report, we noticed that these drugs share, with other drugs with “nephroprotective” effects, the ability to reduce the glomerular filtration rate (GFR), thus suggesting the kidney hemodynamic effect as a proxy for optimal drug dosage. We also noticed that all known nephroprotective drugs exert cardioprotective functions, suggesting the possibility of activities not mediated by the kidney. Finally, we observe that nephroprotective drugs can be grouped according to their effects on hemoglobin levels, thus suggesting their mechanism of action. While the primary mechanism of SGLT2i involves glycosuria and natriuria, growing evidence suggests broader therapeutic effects beyond hemodynamic modulation. Specifically, the evidence that SGLT2 can be expressed in several atypical regions under pathological conditions, supports the possibility that its inhibition has several extratubular effects. Evidence supports the hypothesis that SGLT2i influence mitochondrial function in various cell types affected by diabetes, particularly in the context of diabetic nephropathy. Notably, in SGLT2i-treated patients, the extent of albumin-creatinine ratio (ACR) reduction post-treatment may be correlated with mitochondrial staining intensity in glomerular endothelial cells. This implies that the anti-proteinuric effects of SGLT2i could involve direct actions on glomerular endothelial cell. Our investigation into the role of SGLT2 inhibitors (SGLT2i) in endothelial function suggests that the aberrant expression of SGLT2 in endothelial cells in T2DM would lead to intracellular accumulation of glucose; therefore, SGLT2i are the first type of endothelial protective drugs available today, with potential implications for ageing-related kidney disease. The review reveals two major novel findings: SGLT2 inhibitors are the first known class of endothelial-protective drugs, due to their ability to prevent glucose accumulation in endothelial cells where SGLT2 is aberrantly expressed in Type 2 Diabetes. Additionally, the research demonstrates that SGLT2 inhibitors share a GFR-reducing effect with other nephroprotective drugs, suggesting both a mechanism for optimal drug dosing and potential broader applications in ageing-related kidney disease through their effects on mitochondrial function and glomerular endothelial cells.
Title: SGLT2 Inhibitors: The First Endothelial-Protector for Diabetic Nephropathy
Description:
Sodium-glucose co-transporter type 2 inhibitors (SGLT2i) have emerged as a class of agents relevant for managing diabetic nephropathy and cardiopathy.
In a previous report, we noticed that these drugs share, with other drugs with “nephroprotective” effects, the ability to reduce the glomerular filtration rate (GFR), thus suggesting the kidney hemodynamic effect as a proxy for optimal drug dosage.
We also noticed that all known nephroprotective drugs exert cardioprotective functions, suggesting the possibility of activities not mediated by the kidney.
Finally, we observe that nephroprotective drugs can be grouped according to their effects on hemoglobin levels, thus suggesting their mechanism of action.
While the primary mechanism of SGLT2i involves glycosuria and natriuria, growing evidence suggests broader therapeutic effects beyond hemodynamic modulation.
Specifically, the evidence that SGLT2 can be expressed in several atypical regions under pathological conditions, supports the possibility that its inhibition has several extratubular effects.
Evidence supports the hypothesis that SGLT2i influence mitochondrial function in various cell types affected by diabetes, particularly in the context of diabetic nephropathy.
Notably, in SGLT2i-treated patients, the extent of albumin-creatinine ratio (ACR) reduction post-treatment may be correlated with mitochondrial staining intensity in glomerular endothelial cells.
This implies that the anti-proteinuric effects of SGLT2i could involve direct actions on glomerular endothelial cell.
Our investigation into the role of SGLT2 inhibitors (SGLT2i) in endothelial function suggests that the aberrant expression of SGLT2 in endothelial cells in T2DM would lead to intracellular accumulation of glucose; therefore, SGLT2i are the first type of endothelial protective drugs available today, with potential implications for ageing-related kidney disease.
The review reveals two major novel findings: SGLT2 inhibitors are the first known class of endothelial-protective drugs, due to their ability to prevent glucose accumulation in endothelial cells where SGLT2 is aberrantly expressed in Type 2 Diabetes.
Additionally, the research demonstrates that SGLT2 inhibitors share a GFR-reducing effect with other nephroprotective drugs, suggesting both a mechanism for optimal drug dosing and potential broader applications in ageing-related kidney disease through their effects on mitochondrial function and glomerular endothelial cells.

Related Results

Transcription factor 7 like 2 gene polymorphism and advanced glycation end products as risk factors for diabetic nephropathy
Transcription factor 7 like 2 gene polymorphism and advanced glycation end products as risk factors for diabetic nephropathy
Diabetic nephropathy (DN) is the most serious and prevalent complication, being a major contributing factor to end-stage renal disease, that can lead to death in diabetic patients....
Flozins in Reducing Cardiovascular and Metabolic Risk: A Literature Review
Flozins in Reducing Cardiovascular and Metabolic Risk: A Literature Review
Introduction Cardiovascular diseases (CVD) are a significant worldwide health issue, impacting millions of patients and being the primary cause of global illness and death. The co...
Diabetic Nephropathy: Advancement in Molecular Mechanism, Pathogenesis, and Management by Pharmacotherapeutics and Natural Compounds
Diabetic Nephropathy: Advancement in Molecular Mechanism, Pathogenesis, and Management by Pharmacotherapeutics and Natural Compounds
The primary cause of End-stage Renal Disease (ESRD) and a possible chronic microvascular consequence of diabetes mellitus is Diabetic Nephropathy (DN). The early stages of diabetic...
The Number of Teeth Is Associated with Diabetic Nephropathy
The Number of Teeth Is Associated with Diabetic Nephropathy
Background: Progression of diabetic nephropathy has serious effects on the life expectancy of diabetic patients. Although diagnoses, lifestyle interventions, and treatment of diabe...
CD4 and CXCR5 in Patients with Diabetic Nephropathy
CD4 and CXCR5 in Patients with Diabetic Nephropathy
Background: Diabetes is a metabolic condition characterized by hyperglycemia caused by defects in insulin secretion, insulin activity, or both. Diabetic nephropathy (DN) is one of ...
Evaluating the Efficacy of SGLT2 Inhibitors in Preventing Diabetic Kidney Disease
Evaluating the Efficacy of SGLT2 Inhibitors in Preventing Diabetic Kidney Disease
Diabetic kidney disease (DKD) remains one of the leading causes of morbidity and mortality in diabetic patients, and there are very few therapeutic options that can halt its progre...

Back to Top