ArticleInternational journal of molecular sciences2021
Sympatholytic Mechanisms for the Beneficial Cardiovascular Effects of SGLT2 Inhibitors: A Research Hypothesis for Dapagliflozin's Effects in the Adrenal Gland.
Article in International journal of molecular sciences, 2021. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 29 papers, 1 of them a synthesis that pooled it.
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Who cites it
29 citing papers in PubMed, 1 synthesis or guideline pooled it, 44 citations in OpenAlex.
- Cost Effectiveness of Adding Dapagliflozin to Standard Care in Heart Failure Patients with Reduced Ejection Fraction: A Systematic Review.American journal of cardiovascular drugs : drugs, devices, and other interventions · 2023Pooled it
- Effects of empagliflozin and metformin on biofilm formation and pathogenicity factors of urinary Escherichia coli isolates.Folia microbiologica · 2026Article
- The Conventional and Alternative Therapeutic Approaches in Arterial Stiffness Management.Pharmaceutics · 2026Review
- Urea cycle modulation by combined SGLT2 inhibitors and metformin.BMC medicine · 2026Article
- Article
- Effects of SGLT2 ablation or inhibition on corticosterone secretion in high-fat-fed mice: exploring a nexus with cytokine levels.Diabetologia · 2025Article
- Protective Mechanisms of SGLTi in Ischemic Heart Disease.Journal of cardiovascular translational research · 2024Review
- Free Fatty Acids and Free Fatty Acid Receptors: Role in Regulating Arterial Function.International journal of molecular sciences · 2024Review
- The Off-Target Cardioprotective Mechanisms of Sodium-Glucose Cotransporter 2 Inhibitors: An Overview.International journal of molecular sciences · 2024Review
- Sodium glucose cotransporter-2 inhibitors and heart disease: Current perspectives.World journal of cardiology · 2024Review
- Safety of SGLT-2 inhibitors in the management of heart failure in the adult congenital heart disease patient population.International journal of cardiology. Congenital heart disease · 2024Article
- Immunomodulation and immunopharmacology in heart failure.Nature reviews. Cardiology · 2024Review
- Identification of CDK1, PBK, and CHEK1 as an Oncogenic Signature in Glioblastoma: A Bioinformatics Approach to Repurpose Dapagliflozin as a Therapeutic Agent.International journal of molecular sciences · 2023Article
- Neurohumoral Activation in Heart Failure.International journal of molecular sciences · 2023Review
- Renoprotective potential of concomittant medications with SGLT2 inhibitors and renin-angiotensin system inhibitors in diabetic nephropathy without albuminuria: a retrospective cohort study.Scientific reports · 2023Article
- SGLT2 Inhibitors as Potential Anticancer Agents.Biomedicines · 2023Review
- Review
- Editorial to theInternational journal of molecular sciences · 2023Article
- Cardiac RGS Proteins in Human Heart Failure and Atrial Fibrillation: Focus on RGS4.International journal of molecular sciences · 2023Review
- Dapagliflozin versus empagliflozin in patients with chronic kidney disease.Frontiers in pharmacology · 2023Article
Corrections and comments
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Authors and funding
4 authors at 1 institution in 1 country.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Heart failure (HF) remains the leading cause of morbidity and death in the western world, and new therapeutic modalities are urgently needed to improve the lifespan and quality of life of HF patients. The sodium-glucose co-transporter-2 (SGLT2) inhibitors, originally developed and mainly indicated for diabetes mellitus treatment, have been increasingly shown to ameliorate heart disease, and specifically HF, in humans, regardless of diabetes co-existence. Indeed, dapagliflozin has been reported to reduce cardiovascular mortality and hospitalizations in patients with HF and reduced ejection fraction (HFrEF). This SGLT2 inhibitor demonstrates these benefits also in non-diabetic subjects, indicating that dapagliflozin's efficacy in HF is independent of blood glucose control. Evidence for the effectiveness of various SGLT2 inhibitors in providing cardiovascular benefits irrespective of their effects on blood glucose regulation have spurred the use of these agents in HFrEF treatment and resulted in FDA approvals for cardiovascular indications. The obvious question arising from all these studies is, of course, which molecular/pharmacological mechanisms underlie these cardiovascular benefits of the drugs in diabetics and non-diabetics alike. The fact that SGLT2 is not significantly expressed in cardiac myocytes (SGLT1 appears to be the dominant isoform) adds even greater perplexity to this answer. A variety of mechanisms have been proposed over the past few years and tested in cell and animal models and prominent among those is the potential for sympatholysis, i.e., reduction in sympathetic nervous system activity. The latter is known to be high in HF patients, contributing significantly to the morbidity and mortality of the disease. The present minireview first summarizes the current evidence in the literature supporting the notion that SGLT2 inhibitors, such as dapagliflozin and empagliflozin, exert sympatholysis, and also outlines the main putative underlying mechanisms for these sympatholytic effects. Then, we propose a novel hypothesis, centered on the adrenal medulla, for the sympatholytic effects specifically of dapagliflozin. Adrenal medulla is responsible for the production and secretion of almost the entire amount of circulating epinephrine and of a significant percentage of circulating norepinephrine in the human body. If proven true experimentally, this hypothesis, along with other emerging experimental evidence for sympatholytic effects in neurons, will shed new light on the pharmacological effects that mediate the cardiovascular benefits of SGLT2 inhibitor drugs, independently of their blood glucose-lowering effects.
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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.