Background: Sodium-glucose cotransporter-2 inhibitors reduce blood pressure (BP) and renal and cardiovascular events in patients with type 2 diabetes through not fully elucidated mechanisms. Aim of this study was to investigate whether dapagliflozin is able to acutely modify systemic and renal vascular function, as well as putative mechanisms.
Methods: Neuro-hormonal and vascular variables, together with 24 h diuresis, urinary sodium, glucose, isoprostanes and free-water clearance were assessed before and after a 2-day treatment with dapagliflozin 10 mg QD in sixteen type 2 diabetic patients; data were compared with those obtained in ten patients treated with hydrochlorothiazide 12.5 mg QD. Brachial artery endothelium-dependent and independent vasodilation (by flow-mediated dilation) and pulse wave velocity were assessed. Renal resistive index was obtained at rest and after glyceryl trinitrate administration. Differences were analysed by repeated measures ANOVA, considering treatment as between factor and time as within factor; Bonferroni post hoc comparison test was also used.
Results: Dapagliflozin decreased systolic BP and induced an increase in 24 h diuresis to a similar extent of hydrochlorothiazide; 24 h urinary glucose and serum magnesium were also increased. 24 h urinary sodium and fasting blood glucose were unchanged. Oxidative stress was reduced, as by a decline in urinary isoprostanes. Flow-mediated dilation was significantly increased (2.8 ± 2.2 to 4.0 ± 2.1%, p < 0.05), and pulse-wave-velocity was reduced (10.1 ± 1.6 to 8.9 ± 1.6 m/s, p < 0.05), even after correction for mean BP. Renal resistive index was reduced (0.62 ± 0.04 to 0.59 ± 0.05, p < 0.05). These vascular modifications were not observed in hydrochlorothiazide-treated individuals.
Conclusions: An acute treatment with dapagliflozin significantly improves systemic endothelial function, arterial stiffness and renal resistive index; this effect is independent of changes in BP and occurs in the presence of stable natriuresis, suggesting a fast, direct beneficial effect on the vasculature, possibly mediated by oxidative stress reduction.
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http://dx.doi.org/10.1186/s12933-017-0621-8 | DOI Listing |
BMC Cardiovasc Disord
December 2024
Department of Internal Medicine, AdventHealth Sebring, Sebring, FL, USA.
Background: Acute Heart Failure (AHF) presents as a serious pathophysiological disease with significant morbidity and mortality rates, requiring immediate medical intervention. Traditional treatment involves diuretics and vasodilators, but a subset of patients develop resistance due to acute cardiorenal syndrome. Dapagliflozin, categorized as a sodium-glucose cotransporter-2 inhibitor (SGLT2i), has emerged as a promising therapy for AHF, demonstrating substantial benefits in reducing both mortality and morbidity among patients.
View Article and Find Full Text PDFWorld J Clin Cases
December 2024
Department of Geriatrics, The First Affiliated Hospital of Guangzhou University of Chinese Medicine, Guangzhou 510405, Guangdong Province, China.
Coronary heart disease and type 2 diabetes mellitus (T2DM) often co-occur, presenting substantial health risks, particularly following acute myocardial infarction (AMI). While percutaneous coronary intervention (PCI) is a prevalent treatment, complications such as microvascular dysfunction may lead to heart failure, necessitating additional therapies. This editorial examines the emerging roles of sacubitril/valsartan and sodium-glucose co-transporter 2 inhibitors in managing post-PCI.
View Article and Find Full Text PDFJ Clin Invest
December 2024
Department of Internal Medicine (Endocrinology), Yale School of Medicine, New Haven Connecticut, USA.
Previous studies highlight the potential for sodium-glucose cotransporter type 2 (SGLT2) inhibitors (SGLT2i) to exert cardioprotective effects in heart failure by increasing plasma ketones and shifting myocardial fuel utilization toward ketone oxidation. However, SGLT2i have multiple in vivo effects and the differential impact of SGLT2i treatment and ketone supplementation on cardiac metabolism remains unclear. Here, using gas chromatography-mass spectrometry (GC-MS) and liquid chromatography-tandem mass spectrometry (LC-MS/MS) methodology combined with infusions of [13C6]glucose or [13C4]βOHB, we demonstrate that acute SGLT2 inhibition with dapagliflozin shifts relative rates of myocardial mitochondrial metabolism toward ketone oxidation, decreasing pyruvate oxidation with little effect on fatty acid oxidation in awake rats.
View Article and Find Full Text PDFCurr Mol Pharmacol
December 2024
Department of Pharmacology and Toxicology, College of Pharmacy, King Saud University, Riyadh 11451, Saudi Arabia.
Background: Recent research has validated the efficacy of sodium-glucose cotransporter-2 inhibitors (SGLT2i) in reducing glucose levels and exerting a nephroprotective role.
Objective: This study aimed to examine the impact of dapagliflozin in preventing sepsis-induced acute kidney injury (AKI) and related consequences. The study used both normal and diabetic rat models to investigate whether the effectiveness of dapagliflozin is influenced by glycemia levels.
Nefrologia (Engl Ed)
December 2024
Servicio de Nefrología, Hospital Universitario Infanta Leonor, Madrid, Spain.
Background And Objectives: Chronic kidney disease (CKD) is a serious health problem with an increasing clinical, social and economic impact in advanced stages. Dapagliflozin is a sodium-glucose cotransporter-2 inhibitor that reduces the risk of CKD progression, in addition to provide cardiovascular benefits and reduce all-cause mortality. The aim of this study was to determine the short-term clinical and economic impact of dapagliflozin as an add-on to renin-angiotensin-aldosterone system inhibitors (RAASi) standard therapy for CKD in Spain.
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