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18 pages, 922 KB  
Review
SGLT2 Inhibitors in Hypertrophic Cardiomyopathy: Emerging Evidence and Putative Mechanisms
by Khrystyna Ryabenko, Valérie Schini-Kerth, Patrick Ohlmann and Elena Galli
Biomolecules 2026, 16(6), 873; https://doi.org/10.3390/biom16060873 - 15 Jun 2026
Viewed by 886
Abstract
Hypertrophic cardiomyopathy (HCM) is the most common inherited myocardial disorder and a major cause of heart failure (HF) and sudden cardiac death. Although sarcomeric gene mutations initiate the disease, increasing evidence identifies oxidative stress, mitochondrial dysfunction, and maladaptive nutrient signaling as key drivers [...] Read more.
Hypertrophic cardiomyopathy (HCM) is the most common inherited myocardial disorder and a major cause of heart failure (HF) and sudden cardiac death. Although sarcomeric gene mutations initiate the disease, increasing evidence identifies oxidative stress, mitochondrial dysfunction, and maladaptive nutrient signaling as key drivers of disease progression. Enhanced reactive oxygen species (ROS) production in HCM promotes energetic impairment, calcium mishandling, fibrosis, and the activation of pro-hypertrophic pathways, while disrupting protein quality control and endothelial function. Despite recent therapeutic advances, effective disease-modifying strategies targeting these molecular mechanisms remain limited. Sodium–glucose cotransporter 2 inhibitors (SGLT2i), originally developed for type 2 diabetes, have demonstrated robust cardioprotective effects in HF independent of glycemic control. Beyond their renal actions, SGLT2i modulate myocardial metabolism, reduce oxidative stress, improve mitochondrial function, restore sodium and calcium homeostasis, and attenuate inflammation and maladaptive mTOR activation. Emerging preclinical and translational data suggest that these pleiotropic mechanisms may counteract key pathophysiological processes underlying HCM. This review summarizes the molecular interplay between oxidative stress and hypertrophic remodeling in HCM and explores the rationale for SGLT2 inhibition as a potential disease-modifying therapeutic strategy. Full article
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25 pages, 2573 KB  
Article
SGLT2 Inhibitor Dapagliflozin Attenuates Cardiomyocyte Injury and Inflammation Induced by PI3Kα-Selective Inhibitor Alpelisib and Fulvestrant Under Hyperglycemia
by Vincenzo Quagliariello, Massimiliano Berretta, Matteo Barbato, Fabrizio Maurea, Maria Laura Canale, Andrea Paccone, Irma Bisceglia, Andrea Tedeschi, Marino Scherillo, Jacopo Santagata, Stefano Oliva, Christian Cadeddu Dessalvi, Pietro Forte, Cristiana D’Ambrosio, Tiziana Di Matola, Regina Parmentola, Domenico Gabrielli and Nicola Maurea
Int. J. Mol. Sci. 2026, 27(8), 3597; https://doi.org/10.3390/ijms27083597 - 17 Apr 2026
Cited by 1 | Viewed by 982
Abstract
Activating PIK3CA mutations occur in approximately 40% of hormone receptor-positive (HR+)/HER2-negative breast cancers and represent a major driver of endocrine resistance. The PI3Kα-selective inhibitor alpelisib, in combination with fulvestrant, significantly improves progression-free survival in patients with PIK3CA-mutant disease, as demonstrated in the SOLAR-1 [...] Read more.
Activating PIK3CA mutations occur in approximately 40% of hormone receptor-positive (HR+)/HER2-negative breast cancers and represent a major driver of endocrine resistance. The PI3Kα-selective inhibitor alpelisib, in combination with fulvestrant, significantly improves progression-free survival in patients with PIK3CA-mutant disease, as demonstrated in the SOLAR-1 trial. However, this therapeutic strategy is frequently complicated by treatment-induced hyperglycemia, a metabolic disturbance that promotes oxidative stress, mitochondrial dysfunction, and inflammatory signaling, thereby increasing cardiovascular vulnerability. Sodium–glucose cotransporter-2 (SGLT2) inhibitors have emerged as cardiometabolic modulators with benefits extending beyond glucose lowering. In this study, we used a human cardiomyocyte in vitro model designed to recapitulate the hyperglycemic metabolic milieu observed in breast cancer patients receiving PI3Kα-targeted therapy, to investigate whether the SGLT2 inhibitor dapagliflozin directly protects cardiomyocytes from alpelisib- and fulvestrant-induced injury. Human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CMs) were cultured under hyperglycemic conditions (25 mM glucose) to mimic the metabolic environment associated with PI3Kα inhibitor-induced dysglycemia. Cells were exposed to alpelisib (100 nM) and fulvestrant (100 nM), alone or in combination, in the absence or presence of dapagliflozin (1 μM). Cardiomyocyte viability was assessed using the MTS assay, mitochondrial function by TMRM-based mitochondrial membrane potential (ΔΨm) measurements, and apoptosis by caspase-3 quantification. Cardiomyocyte injury was evaluated by release of cardiac troponin I and heart-type fatty acid binding protein (H-FABP). Lipid peroxidation markers (MDA and 4-HNE) were measured to assess oxidative membrane damage. Intracellular inflammasome-related signaling (NLRP3 and MyD88) and secreted inflammatory mediators (IL-1β, IL-18, IL-6, TNF-α, and CCL2) were quantified by ELISA. Exposure to alpelisib, particularly in combination with fulvestrant, significantly reduced cardiomyocyte viability, induced mitochondrial depolarization, and increased caspase-3-mediated apoptotic signaling. These alterations were accompanied by elevated lipid peroxidation (MDA and 4-HNE) and increased release of cardiac injury biomarkers (troponin I and H-FABP). Alpelisib-based treatments also activated inflammasome-related signaling, as indicated by increased intracellular NLRP3 and MyD88 levels and enhanced secretion of pro-inflammatory mediators (IL-1β, IL-18, IL-6, TNF-α, and CCL2). Co-treatment with dapagliflozin significantly attenuated these alterations, preserving mitochondrial membrane potential, reducing apoptotic signaling, limiting oxidative membrane damage, and suppressing inflammatory cytokine release. This study provides evidence that alpelisib-based therapy under hyperglycemic conditions is associated with oxidative, mitochondrial, and inflammatory stress responses in human cardiomyocytes, recapitulating key features of cardiometabolic stress relevant to PI3Kα-targeted therapy. Importantly, dapagliflozin markedly attenuated these alterations, supporting a potential cardioprotective role that may extend beyond glycemic control. These findings provide a mechanistic rationale for further investigation of SGLT2 inhibition as a cardiometabolic protective strategy in patients receiving PI3Kα inhibitor-based cancer therapy. Full article
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13 pages, 978 KB  
Article
Gliflozins in Practice: Real-Life Use of Dapagliflozin and Empagliflozin in HFrEF Versus Clinical Trial Data
by Massimo Mapelli, Rebecca Caputo, Massimo Valenti, Filippo Maria Rubbo, Elisabetta Salvioni, Irene Mattavelli, Arianna Galotta, Arianna Piotti, Fiorella Puttini, Laura Manfrin, Carlo Vignati, Simona Costantino and Piergiuseppe Agostoni
Diagnostics 2026, 16(5), 769; https://doi.org/10.3390/diagnostics16050769 - 4 Mar 2026
Viewed by 1038
Abstract
Background: Sodium/glucose cotransporter-2 inhibitors (SGLT2is), such as dapagliflozin and empagliflozin, are currently a standard therapy for heart failure (HF) patients. We report the real-world use of SGLT2is in a monocentric cohort of HF patients with reduced ejection fraction (HFrEF) and improved ejection fraction [...] Read more.
Background: Sodium/glucose cotransporter-2 inhibitors (SGLT2is), such as dapagliflozin and empagliflozin, are currently a standard therapy for heart failure (HF) patients. We report the real-world use of SGLT2is in a monocentric cohort of HF patients with reduced ejection fraction (HFrEF) and improved ejection fraction (HFimpEF), comparing patient characteristics and outcomes with those observed in large-scale randomized clinical trials (RCTs). Methods: We retrospectively analyzed a cohort of 370 stable patients with HFrEF or HFimpEF who initiated therapy with dapagliflozin or empagliflozin between June 2019 and November 2023. Baseline data, including medical history, concomitant diseases, therapy, laboratory tests, echocardiographic results and cardiopulmonary exercise tests (CPETs), were collected at the start of the therapy with SGLT2is. After a median period of 18 months, follow-up data on treatment adherence, adverse events, hospitalizations, and mortality were also reviewed. A comparison was made between patients taking dapagliflozin and those taking empagliflozin and then individual populations were compared with those from the trials. Results: Among 370 patients (81% HFrEF, 19% HFimpEF), 276 received dapagliflozin and 94 empagliflozin. Empagliflozin patients were older, had higher NYHA class and LVEF, and higher incidence of diabetes, while dapagliflozin users had greater use of sacubitril/valsartan and mineralocorticoid receptor antagonists. Both groups were older than the RCT cohorts. Dapagliflozin patients had LVEF comparable to DAPA-HF, while empagliflozin patients had higher LVEF than EMPEROR-Reduced. HF hospitalizations were more frequent in the real-world groups, but mortality was lower than in RCTs. The composite outcome of death and worsening HF was higher in the real-world dapagliflozin cohort vs. DAPA-HF but similar between the real-world empagliflozin cohort and EMPEROR-Reduced. Conclusions: In this real-world cohort, the use of empagliflozin was associated with cardio-nephro-metabolic comorbidities and dapagliflozin being prescribed more frequently for patients with isolated cardiac symptoms. While outcomes were generally favorable, they differed from those seen in RCTs, highlighting the importance of real-world data in understanding the practical application of these therapies. Full article
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14 pages, 318 KB  
Review
SGLT1 and SGLT2 Modulation in Antidiabetic Therapy—Comparative Insights into Gliflozins and Natural Compounds Resveratrol and Viniferin
by Diana Petra Matei, Alina Dușanca Ghișe, Liliana Cărpinișan, Ioan Huțu, Adrian Stancu, Kalman Imre and Eugenia Dumitrescu
Pharmaceuticals 2026, 19(3), 376; https://doi.org/10.3390/ph19030376 - 27 Feb 2026
Viewed by 1441
Abstract
Glucose transport dysregulation plays a central role in pathophysiology of diabetes mellitus. Synthetic agents like sotagliflozin or canagliflozin have been discovered recently and are currently used as antidiabetic therapy, providing great efficacy in modulation of glucose transport. However, the search for additional compounds [...] Read more.
Glucose transport dysregulation plays a central role in pathophysiology of diabetes mellitus. Synthetic agents like sotagliflozin or canagliflozin have been discovered recently and are currently used as antidiabetic therapy, providing great efficacy in modulation of glucose transport. However, the search for additional compounds with antidiabetic potential continues, as researchers aim to identify new molecules that may complement or enhance existing therapies. Numerous plant-derived compounds are currently under investigation and have demonstrated promising effects, while others remain far less studied yet could hold meaningful potential. In this context, resveratrol and its oligomers, including ε-viniferin, have gained attention due to promising in vitro findings, particularly due to influencing glucose homeostasis through direct SGLT interaction, indirect metabolic pathways, or a combination of both. This review examines their molecular mechanisms, absorption profiles, and inhibitory activity on sodium–glucose cotransporters SGLT1 and SGLT2. While resveratrol demonstrates high cellular uptake and metabolic conversion, ε-viniferin exhibits poor intestinal permeability, suggesting limited systemic bioavailability but potential local activity at the intestinal epithelium. Gliflozins are clinically validated dual SGLT1/SGLT2 inhibitors that offer superior glucose-lowering efficacy and organ protection. In regard to stilbenoids, they offer promising in vitro results, though in vivo studies and clinical trials are scarce. Understanding resveratrol and viniferin pharmacokinetics, target interactions, and limitations is vital for their development as potential complementary or even alternative antidiabetic therapies. Full article
(This article belongs to the Section Biopharmaceuticals)
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11 pages, 425 KB  
Article
Assessing Potential Valve-Preserving Effects of SGLT2 Inhibitors in Degenerative Aortic Stenosis: A Propensity-Matched Study
by Olivier Morel, Michael Guglieri, Antonin Trimaille, Benjamin Marchandot, Arnaud Bisson, Amandine Granier, Valérie Schini-Kerth, Anne Bernard and Laurent Fauchier
J. Clin. Med. 2026, 15(2), 714; https://doi.org/10.3390/jcm15020714 - 15 Jan 2026
Cited by 5 | Viewed by 1508
Abstract
Background: Sodium–glucose cotransporter 2 inhibitors (SGLT2 inhibitors), initially developed for glycemic control in type 2 diabetes, have demonstrated robust cardiovascular and renal benefits. Emerging evidence suggests that these agents may also affect valvular pathobiology, particularly in degenerative aortic stenosis (AS), through anti-inflammatory and [...] Read more.
Background: Sodium–glucose cotransporter 2 inhibitors (SGLT2 inhibitors), initially developed for glycemic control in type 2 diabetes, have demonstrated robust cardiovascular and renal benefits. Emerging evidence suggests that these agents may also affect valvular pathobiology, particularly in degenerative aortic stenosis (AS), through anti-inflammatory and antifibrotic mechanisms. Objectives: This study evaluated whether SGLT2 inhibitor use is associated with improved clinical outcomes in degenerative AS, including all-cause mortality and the need for SAVR or TAVR, recognizing that these endpoints represent surrogate rather than direct measures of valve hemodynamic progression. Methods: A retrospective cohort analysis was conducted using TriNetX, a federated electronic medical record-based research network. Diagnoses are captured using ICD-9/ICD-10-CM codes and medications using ATC codes. Adults with non-rheumatic AS were stratified by SGLT2 inhibitors use. Propensity score matching (1:1) was performed to balance baseline characteristics between treated and untreated groups (n = 10,912 per group). Primary outcomes included all-cause mortality, TAVR, and SAVR during follow-up. Echocardiographic parameters (AVA, Vmax, mean gradient) were not systematically available. Results: After adjustment for comorbidities, SGLT2 inhibitor use was independently associated with lower all-cause mortality (6.15% vs. 9.34% HR 0.595; 95% CI 0.552–0.641; p < 0.001), TAVR (2.81% vs. 2.89% HR 0.835; 95% CI 0.746–0.934; p = 0.002), SAVR (1.28% vs. 1.90% HR 0.514; 95% CI 0.442–0.599; p < 0.001), cardiac arrest (0.82% vs. 1.21% HR 0.71; 95% CI 0.582–0.867; p < 0.001), and end-stage kidney disease (0.40% vs. 1.0% HR 0.292; 95% CI 0.222–0.384; p < 0.001). Although these associations may suggest slower disease progression, interpretation is limited by the lack of systematic echocardiographic follow-up. Conclusions: In addition to their established benefits in heart failure and renal protection, SGLT2 inhibitors may have valve-preserving effects in degenerative AS. Because true hemodynamic progression could not be evaluated, these results should be viewed as associations with surrogate clinical endpoints. Prospective studies with standardized imaging are required to determine whether SGLT2 inhibition can directly alter the course of this currently untreatable disease Full article
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27 pages, 4157 KB  
Article
LASSBio-1986 as a Multifunctional Antidiabetic Lead: SGLT1/2 Docking, Redox–Inflammatory Modulation and Metabolic Benefits in C57BL/6 Mice
by Landerson Lopes Pereira, Raimundo Rigoberto B. Xavier Filho, Gabriela Araújo Freire, Caio Bruno Rodrigues Martins, Maurício Gabriel Barros Perote, Cibelly Loryn Martins Campos, Manuel Carlos Serrazul Monteiro, Isabelle de Fátima Vieira Camelo Maia, Renata Barbosa Lacerda, Luis Gabriel Valdivieso Gelves, Damião Sampaio de Sousa, Régia Karen Barbosa De Souza, Paulo Iury Gomes Nunes, Tiago Lima Sampaio, Gisele Silvestre Silva, Deysi Viviana Tenazoa Wong, Lidia Moreira Lima, Walter José Peláez, Márcia Machado Marinho, Hélcio Silva dos Santos, Jane Eire Silva Alencar de Menezes, Emmanuel Silva Marinho, Kirley Marques Canuto, Pedro Filho Noronha Souza, Francimauro Sousa Morais, Nylane Maria Nunes de Alencar and Marisa Jadna Silva Fredericoadd Show full author list remove Hide full author list
Int. J. Mol. Sci. 2026, 27(2), 829; https://doi.org/10.3390/ijms27020829 - 14 Jan 2026
Viewed by 1324
Abstract
Type 2 diabetes mellitus (T2DM) involves chronic hyperglycemia, insulin resistance, low-grade inflammation, and oxidative stress that drive cardiometabolic and renal damage despite current therapies. Sodium–glucose cotransporter (SGLT) inhibitors have reshaped the treatment landscape, but residual risk and safety concerns highlight the need for [...] Read more.
Type 2 diabetes mellitus (T2DM) involves chronic hyperglycemia, insulin resistance, low-grade inflammation, and oxidative stress that drive cardiometabolic and renal damage despite current therapies. Sodium–glucose cotransporter (SGLT) inhibitors have reshaped the treatment landscape, but residual risk and safety concerns highlight the need for new agents that combine glucose-lowering efficacy with redox–inflammatory modulation. LASSBio-1986 is a synthetic N-acylhydrazone (NAH) derivative designed as a gliflozin-like scaffold with the potential to interact with SGLT1/2 while also influencing oxidative and inflammatory pathways. Here, we integrated in silico and in vivo approaches to characterize LASSBio-1986 as a multifunctional antidiabetic lead in murine models of glucose dysregulation. PASS and target class prediction suggested a broad activity spectrum and highlighted transporter- and stress-related pathways. Molecular docking indicated high-affinity binding to both SGLT1 and SGLT2, with a modest energetic preference for SGLT2, and ADME/Tox predictions supported favorable oral drug-likeness. In vivo, intraperitoneal LASSBio-1986 improved oral glucose tolerance and reduced glycemic excursions in an acute glucose challenge model in C57BL/6 mice, while enhancing hepatic and skeletal muscle glycogen stores. In a dexamethasone-induced insulin-resistance model, LASSBio-1986 improved insulin sensitivity, favorably modulated serum lipids, attenuated thiobarbituric acid-reactive substances (TBARS), restored reduced glutathione (GSH) levels, and rebalanced pro- and anti-inflammatory cytokines in metabolic tissues, with efficacy broadly comparable to dapagliflozin. These convergent findings support LASSBio-1986 as a preclinical, multimodal lead that targets SGLT-dependent glucose handling while mitigating oxidative and inflammatory stress in models relevant to T2DM. Chronic disease models, formal toxicology, and pharmacokinetic studies, particularly with oral dosing, will be essential to define its translational potential. Full article
(This article belongs to the Section Molecular Endocrinology and Metabolism)
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21 pages, 1207 KB  
Review
Beyond SGLT2: Exploring the Therapeutic Potential of Lesser-Known SGLT Isoform Inhibitors
by Anna Berecka-Rycerz, Anna Gumieniczek, Julia Skroban and Katarzyna Wicha-Komsta
Appl. Sci. 2025, 15(21), 11603; https://doi.org/10.3390/app152111603 - 30 Oct 2025
Viewed by 1631
Abstract
This paper presents a review of studies on SGLT protein inhibitors, based on literature published between 2000 and 2025, sourced from the Scopus, ScienceDirect, Google Scholar and PubMed databases. The individual isoforms of SGLT proteins are briefly described, with attention to their distribution [...] Read more.
This paper presents a review of studies on SGLT protein inhibitors, based on literature published between 2000 and 2025, sourced from the Scopus, ScienceDirect, Google Scholar and PubMed databases. The individual isoforms of SGLT proteins are briefly described, with attention to their distribution in the body and biological functions. Representative inhibitors and their potential biological effects are also discussed. Beyond the well-established glucose-lowering properties, characteristic of the extensively studied SGLT2 inhibitors, this review explores additional effects, including anticancer, anti-inflammatory, antioxidant, and neuroprotective activities. The analysis encompasses synthetic SGLT inhibitors, computer-designed molecules, and a wide range of naturally derived compounds, including medicinal plants and food-based substances. Importantly, the review deliberately excludes SGLT2 inhibitors, such as the well-known gliflozin class due to the abundance of existing reviews focused specifically on them. This review focuses on potential inhibitors of the SGLT1, SGLT3, SGLT4, SGLT5, and SGLT6 isoforms, emphasizing their diverse physiological roles beyond diabetes and cardiovascular disease, including applications in cancer therapy and neuroprotection. Particular attention is given to the SGLT1 isoform, for which numerous synthetic inhibitors with promising therapeutic potential have been identified. Additionally, natural compounds, especially those derived from medicinal plants and dietary sources, are extensively documented for their inhibitory effects. For the remaining isoforms (SGLT3–SGLT6), all available data on selective inhibitors were examined, alongside an evaluation of their possible therapeutic applications in light of current scientific knowledge. Full article
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32 pages, 1274 KB  
Review
Sodium-Glucose Cotransporter-2 Inhibitors in Diabetes and Beyond: Mechanisms, Pleiotropic Benefits, and Clinical Use—Reviewing Protective Effects Exceeding Glycemic Control
by Julia Hanke, Katarzyna Romejko and Stanisław Niemczyk
Molecules 2025, 30(20), 4125; https://doi.org/10.3390/molecules30204125 - 18 Oct 2025
Cited by 19 | Viewed by 8367
Abstract
Sodium-glucose cotransporter-2 (SGLT2) inhibitors, also known as gliflozins, are a class of antidiabetic agents that act independently of insulin by promoting renal glucose excretion. They modulate glucose reabsorption in proximal renal tubules. Initially, they were used for the treatment of type 2 diabetes [...] Read more.
Sodium-glucose cotransporter-2 (SGLT2) inhibitors, also known as gliflozins, are a class of antidiabetic agents that act independently of insulin by promoting renal glucose excretion. They modulate glucose reabsorption in proximal renal tubules. Initially, they were used for the treatment of type 2 diabetes mellitus (T2DM); however, numerous pleiotropic benefits beyond glycemic control were observed. Large clinical trials confirmed their efficacy in reducing cardiovascular mortality, heart failure hospitalizations, and progression of chronic kidney disease. SGLT2 inhibitors reduce oxidative stress and inflammation and induce favorable metabolic adaptations, including lowering ketosis and upregulation of erythropoiesis. They also exert protective effects on hepatic and cognitive function. Additionally, SGLT2 inhibitors lower serum uric acid and reduce adipose tissue mass, which usually results in weight loss. Although generally well-tolerated, they are associated with increased risk of urogenital infections, euglycemic ketoacidosis, and a potentially enlarged amputation risk. Current guidelines worldwide recommend their use not only for T2DM but also for heart failure and chronic kidney disease, marking a paradigm shift toward organ-protective therapies. This review provides a comprehensive synthesis of current evidence on the mechanisms, clinical benefits, and safety profile of SGLT2 inhibitors, highlighting their expanding role in cardiometabolic and multisystem disease management. Full article
(This article belongs to the Special Issue Natural Compounds for Disease and Health, 3rd Edition)
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10 pages, 220 KB  
Article
Safety and Effectiveness of Sodium-Glucose Co-Transporter 2 Inhibitors in Active Cancer Patients with Heart Failure: Results of the Observational TOSCA Trial
by Maria Laura Canale, Iacopo Fabiani, Maria Grazia Delle Donne, Michela Chianca, Valentina Barletta, Eugenia Capati, Monica Solinas, Lara Frediani, Elio Venturini, Giuseppe Arena, Giulio Zucchelli, Emilio Maria Pasanisi, Domenico Amoroso, Giacomo Allegrini, Raffaele De Caterina, Michele Emdin and Andrea Camerini
J. Cardiovasc. Dev. Dis. 2025, 12(9), 354; https://doi.org/10.3390/jcdd12090354 - 13 Sep 2025
Viewed by 1506
Abstract
Cancer patients have not been included in landmark trials of SGLT2is in heart failure, so data on safety and effectiveness are lacking. TOSCA is a multi-center observational trial including patients with active cancer receiving SGLT2is for HF treatment. The primary endpoint was safety, [...] Read more.
Cancer patients have not been included in landmark trials of SGLT2is in heart failure, so data on safety and effectiveness are lacking. TOSCA is a multi-center observational trial including patients with active cancer receiving SGLT2is for HF treatment. The primary endpoint was safety, and the secondary endpoint was effectiveness. Exploratory endpoints included drug–drug interactions, treatment of cancer therapy-related cardiac dysfunction (CTRCD), and changes in NT-proBNP. One-hundred and twenty-nine patients (median age 72 [range 44–92] yrs) were enrolled who had been receiving SGLT2i for a median of 3 (range 3–25) months. Prevalent etiology was drug-induced HF with HFrEF as the most frequent clinical presentation. The incidence of urinary tract infections was 1.8%, with no cases of genital infections, hypoglycemia, diabetic ketoacidosis, acute renal injury, thrombosis, or bone fractures. The mean overall EF increased (40.3% vs. 47.4%), and NYHA class improved in 19% of cases. Rates of unplanned cardiology visits (0.9%), use of i.v. diuretics (0.9%), coronary angiography (4.5%), emergency access for HF (1.8%), and new HF episodes (3.6%) were extremely low. In 11 cases (8.5%), the initiation of SGLT2i enabled continuation of anticancer therapy that would have otherwise been delayed or suspended due to HF decompensation. SGLT2is appeared effective in 34 cases of CTRCD. No drug–drug interactions were reported. SGLT2is confirmed their safety and effectiveness in active cancer patients with HF, with a potential cardioprotective effect. No new safety warnings were recorded. Full article
16 pages, 987 KB  
Article
Impact of Gliflozins on Right Heart Remodeling in Italian Patients with Type 2 Diabetes and Heart Failure: Results from the GLISCAR Real-World Study
by Erica Vetrano, Raffaele Galiero, Vittorio Simeon, Giuseppe Palmiero, Arturo Cesaro, Alfredo Caturano, Luca Rinaldi, Teresa Salvatore, Roberto Ruggiero, Maria Rosaria Di Palo, Celestino Sardu, Raffaele Marfella, Paolo Calabrò and Ferdinando Carlo Sasso
Pharmaceuticals 2025, 18(8), 1200; https://doi.org/10.3390/ph18081200 - 14 Aug 2025
Cited by 1 | Viewed by 1510
Abstract
Aims: The effect of sodium–glucose cotransporter 2 inhibitors (SGLT2is) in addition to optimal medical therapy (OMT) on right ventricular (RV) systolic function in patients with heart failure with reduced ejection fraction (HFrEF) is not well established. This study aimed to assess the [...] Read more.
Aims: The effect of sodium–glucose cotransporter 2 inhibitors (SGLT2is) in addition to optimal medical therapy (OMT) on right ventricular (RV) systolic function in patients with heart failure with reduced ejection fraction (HFrEF) is not well established. This study aimed to assess the impact of SGLT2is on RV function using advanced echocardiographic parameters in patients with HFrEF and type 2 diabetes (T2D). Methods: The real-world prospective, observational GLISCAR study enrolled 31 consecutive patients with T2D and HFrEF. All participants underwent clinical evaluation, laboratory testing, and comprehensive echocardiography at baseline and after 12 months of treatment with an SGLT2i. Results: After 12 months, statistically significant improvements in RV function were observed. Tricuspid annular plane systolic excursion (TAPSE) increased from 18.00 mm (SD ± 4.23; 95% confidence interval (CI): 16.51–19.49 mm) to 19.40 mm (SD ± 4.13; 95% CI: 17.95–20.85 mm) (p = 0.0346), and pulmonary artery systolic pressure (PASP) decreased from 35.23 mmHg (SD ± 14.61; 95% CI: 30.09–40.37 mm) to 30.89 mmHg (SD ± 7.77; 95% CI: 28.15–33.63 mm) (p < 0.001). These changes may suggest favorable RV remodeling and improved right ventricular–arterial coupling (RVAC). Conclusions: SGLT2i therapy was associated with improved RV function and RVAC in patients with HFrEF and T2D. While these findings are preliminary and drawn from a small, observational cohort, they support a potential role for SGLT2is in right heart remodeling. Further randomized, controlled studies are needed to confirm these effects and clarify their clinical implications. Full article
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34 pages, 2372 KB  
Review
SGLT2 Inhibitors: From Structure–Effect Relationship to Pharmacological Response
by Teodora Mateoc, Andrei-Luca Dumitrascu, Corina Flangea, Daniela Puscasiu, Tania Vlad, Roxana Popescu, Cristina Marina and Daliborca-Cristina Vlad
Int. J. Mol. Sci. 2025, 26(14), 6937; https://doi.org/10.3390/ijms26146937 - 19 Jul 2025
Cited by 10 | Viewed by 7177
Abstract
SGLT2 inhibitors have become increasingly used due to their effectiveness in improving not only type 2 diabetes but also cardiovascular, renal and hepatic diseases, as well as the obesity found in metabolic syndrome. Starting from the structure of gliflozins, modifications of the carbohydrate [...] Read more.
SGLT2 inhibitors have become increasingly used due to their effectiveness in improving not only type 2 diabetes but also cardiovascular, renal and hepatic diseases, as well as the obesity found in metabolic syndrome. Starting from the structure of gliflozins, modifications of the carbohydrate part, aglycone, and also the glycosidic bond between them can determine variations in pharmacokinetic and pharmacodynamic properties. SGLT2 inhibitors, in addition to reducing blood glucose levels, improve alterations in lipid metabolism by diverting excessively accumulated lipids in tissues towards mobilization, lipolysis, β-oxidation, ketogenesis and the utilization of ketone bodies. This enhances anti-inflammatory properties by decreasing the levels of some proinflammatory mediators and by modulating some cell signaling pathways. Thus, in this review, the intimate mechanisms by which SGLT2 inhibitors achieve these therapeutic effects in the various conditions belonging to metabolic syndrome and beyond were described, along with the structure–effect relationship with some specific features of each gliflozin. Starting from these findings, further modeling of these molecules may lead to the creation of new therapeutic uses. Further research is needed to broaden the range of indications and also eliminate adverse effects, such as phenomena leading to lower limb amputations. Full article
(This article belongs to the Special Issue New Insights into the Treatment of Metabolic Syndrome and Diabetes)
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13 pages, 2092 KB  
Article
Evaluation of the Effects of the Sodium–Glucose Cotransporter 2 Inhibitors and Sacubitril/Valsartan Combined Therapy in Patients with HFrEF: An Echocardiographic Study
by Isabella Fumarulo, Annalisa Pasquini, Giulia La Vecchia, Bianca Pellizzeri, Andriy Sten, Barbara Garramone, Marcello Vaccarella, Salvatore Emanuele Ravenna, Antonella Lombardo, Francesco Burzotta, Dario Pitocco and Nadia Aspromonte
Int. J. Mol. Sci. 2025, 26(12), 5651; https://doi.org/10.3390/ijms26125651 - 12 Jun 2025
Cited by 4 | Viewed by 2512
Abstract
Sodium–glucose cotransporter 2 inhibitors (iSGLT2) have become the fourth pillar of the medical treatment for heart failure with reduced ejection fraction (HFrEF). However, the mechanisms of action of iSGLT2 remain poorly understood. The effectiveness of combined ARNI and iSGLT2 therapy in left ventricular [...] Read more.
Sodium–glucose cotransporter 2 inhibitors (iSGLT2) have become the fourth pillar of the medical treatment for heart failure with reduced ejection fraction (HFrEF). However, the mechanisms of action of iSGLT2 remain poorly understood. The effectiveness of combined ARNI and iSGLT2 therapy in left ventricular (LV) remodeling is still under study. We aim to investigate the effects of ARNI + iSGLT2 combination therapy in patients affected by HFrEF in terms of ventricular remodeling using speckle tracking echocardiography (STE). In this observational study, 136 patients with HFrEF taking ARNI were enrolled. All patients were evaluated at baseline (before iSGLT2), at 3 months and at 12 months from the beginning of iSGLT2 therapy. Echocardiographic parameters, including STE analysis and volumetric and LV contractile function indices, were collected at the three timepoints. The objectives were (1) to evaluate the effects of ARNI + iSGLT2 combination therapy on ultrasound (US) measurements; (2) to evaluate the effects on the variation of laboratory data indicative of HF (NT-pro-BNP); and (3) to evaluate the medium-long term impact of the ARNI + iSGLT2 combination therapy in terms of major cardiovascular events (MACVE). After only three months of combined ARNI + iSGLT2 therapy, we reported a significant improvement in ventricular and atrial volumetric indices, systolic function indices and myocardial deformation parameters assessed by STE. We also reported a significant decrease in NTproBNP levels. This trend was confirmed at 12 months follow-up. Furthermore, narrowing down the analysis to patients who were already treated with ARNI when they started taking iSGLT2, we reported similar results in the improvement of US parameters and NTproBNP levels. Our study has shown that the ARNI + iSGLT2 combination therapy leads to a clinical improvement and positive ventricular remodeling. Even the single introduction of additional iSGLT-2 in HFrEF patients on an otherwise optimized therapy resulted in a significant improvement in US and laboratory variables. The results of our study suggest implementing iSGLT-2 therapy as soon as possible, as the structural and functional cardiac improvements achieved by these drugs are achieved in the short term and maintained in the long term. Full article
(This article belongs to the Special Issue Molecular Insights into Heart Failure: From Bench to Bedside)
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13 pages, 507 KB  
Review
Optimizing Nephron Performance: The Old, the New, and the New–Old Diuretic Therapies
by Flavio D. Fuchs, Guilherme S. Procianoy, Leonardo G. Bottino, Sandra C. Fuchs and Paul K. Whelton
Biomedicines 2025, 13(6), 1413; https://doi.org/10.3390/biomedicines13061413 - 9 Jun 2025
Cited by 2 | Viewed by 3978
Abstract
Pharmacological influence on nephron function has modified the clinical course of hypertension, heart failure, and chronic kidney disease. (CKD). This is a review of the efficacy of old diuretics and the incremental efficacy of new diuretics in managing hypertension, heart failure, and CKD, [...] Read more.
Pharmacological influence on nephron function has modified the clinical course of hypertension, heart failure, and chronic kidney disease. (CKD). This is a review of the efficacy of old diuretics and the incremental efficacy of new diuretics in managing hypertension, heart failure, and CKD, concluding with new evidence on the effectiveness of old agents. The efficacy of “older” diuretic agents, such as thiazide and loop diuretics, on heart failure and CKD has been primarily explored in nonrandomized studies. However, the efficacy of these agents and indapamide, a slightly newer but still “old” diuretic in preventing blood pressure-related cardiovascular disease, has been demonstrated in randomized controlled trials. Potassium-sparing agents counteract some of the adverse effects of thiazides and have been shown to prevent cardiovascular events in patients with heart failure. Newer drugs with a diuretic effect, such as gliflozins, act through a new mechanism of action in the kidney and have shown efficacy in controlling symptoms and preventing cardiovascular events in patients with heart failure, regardless of diabetes. Furthermore, gliflozins have prevented the progression of chronic kidney disease in patients with and without diabetes mellitus. New evidence detailing the efficacy of old agents has emerged. Chlorthalidone had a large blood-pressure-lowering effect in patients with stage IV CKD. Acetazolamide was effective in accelerating the clinical control of patients with acute heart failure, including patients with some reduction in kidney function. We anticipate investigating the comparative impact of combining different agents to optimize nephron function in the future. Full article
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13 pages, 710 KB  
Article
Evaluating Guideline Alignment by Analyzing Patient Profiles of Elderly People with Type 2 Diabetes and Chronic Kidney Disease Treated or Not with SGLT2 Inhibitors
by Kyriaki Vafeidou, Ourania Psoma, Georgios Dimakopoulos, Evangelos Apostolidis, Anastasia Sarvani, Eleni Gavriilaki, Michael Doumas, Vassilios Tsimihodimos, Kalliopi Kotsa and Theocharis Koufakis
Pharmaceuticals 2025, 18(6), 807; https://doi.org/10.3390/ph18060807 - 27 May 2025
Cited by 5 | Viewed by 2088
Abstract
Background/Objectives: Current guidelines for the management of type 2 diabetes (T2D) strongly recommend the use of sodium–glucose cotransporter 2 inhibitors (SGLT2is) in patients with chronic kidney disease (CKD) to alleviate cardiorenal risk. However, the implementation of this guidance in daily practice remains limited. [...] Read more.
Background/Objectives: Current guidelines for the management of type 2 diabetes (T2D) strongly recommend the use of sodium–glucose cotransporter 2 inhibitors (SGLT2is) in patients with chronic kidney disease (CKD) to alleviate cardiorenal risk. However, the implementation of this guidance in daily practice remains limited. In a real-world setting, we evaluated the frequency of SGLT2i use in elderly people with T2D and CKD and compared patient profiles between SGLT2i users and non-users. Methods: We retrospectively analyzed the medical records of individuals over 65 years of age followed in outpatient internal medicine clinics in Greece. Demographic and laboratory parameters, comorbidity profiles, and medication use were recorded and compared between the SGLT2i and non-SGLT2i groups. Results: The analysis included 135 patients with T2D and CKD, of whom the majority (57.8%) did not receive SGLT2i treatment. The patients in the SGLT2i group were younger (p = 0.006), had higher creatinine (p = 0.001) and hemoglobin (p = 0.001) values, and lower levels of uric acid (p = 0.025) than the participants not treated with SGLT2is. Heart failure rates were similar between the groups (p = 0.252). There was no difference in the use of renin–angiotensin–aldosterone system inhibitors (p = 0.210); in contrast, treatment with glucagon-like peptide 1 receptor agonists was more frequent in the group receiving SGLT2is compared to the group not treated with gliflozins (p = 0.002). Conclusions: Real-world data confirm the benefits of SGLT2i treatment for elderly people with T2D and CKD. However, our findings indicate that the use of gliflozins in this population of patients remains suboptimal, highlighting the need for greater vigilance among prescribers to align with existing guidelines. Full article
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23 pages, 3535 KB  
Article
Cardio–Renal and Systemic Effects of SGLT2i Dapagliflozin on Short-Term Anthracycline and HER-2-Blocking Agent Therapy-Induced Cardiotoxicity
by Vincenzo Quagliariello, Annabella Di Mauro, Gerardo Ferrara, Francesca Bruzzese, Giuseppe Palma, Antonio Luciano, Maria Laura Canale, Irma Bisceglia, Martina Iovine, Christian Cadeddu Dessalvi, Carlo Maurea, Matteo Barbato, Alessandro Inno, Massimiliano Berretta, Andrea Paccone, Alfredo Mauriello, Celeste Fonderico, Anna Chiara Maratea and Nicola Maurea
Antioxidants 2025, 14(5), 612; https://doi.org/10.3390/antiox14050612 - 20 May 2025
Cited by 11 | Viewed by 3641
Abstract
Anthracyclines and human epidermal growth factor receptor 2 (HER-2) inhibitors are cornerstone therapies for breast cancer but are associated with significant cardiotoxicity. While sodium–glucose cotransporter 2 (SGLT2) inhibitors such as dapagliflozin have demonstrated cardio–renal protective effects during anthracycline treatment, their efficacy in preventing [...] Read more.
Anthracyclines and human epidermal growth factor receptor 2 (HER-2) inhibitors are cornerstone therapies for breast cancer but are associated with significant cardiotoxicity. While sodium–glucose cotransporter 2 (SGLT2) inhibitors such as dapagliflozin have demonstrated cardio–renal protective effects during anthracycline treatment, their efficacy in preventing cardiotoxicity from sequential anthracycline and HER-2 blockade remains poorly understood. This study investigates the cardioprotective role of dapagliflozin in a preclinical model of chemotherapy-induced cardiotoxicity. Female C57Bl/6 mice were divided into four groups and treated for 10 days as follows: (1) a normal control group receiving saline (sham); (2) a model control group receiving doxorubicin (2.17 mg/kg/day for 5 days) followed by HER-2-blocking monoclonal antibody (2.25 mg/kg/day for 5 days); (3) a dapagliflozin-only group (10 mg/kg/day via oral gavage); and (4) a treatment group receiving the combination of doxorubicin, HER-2 inhibitor, and dapagliflozin. Cardiac function was assessed using echocardiography (VEVO 2100). Biomarkers of myocardial injury and inflammation (NLRP3, MyD88, CXCR4, H-FABP, troponin-T, and cytokines) were quantified via ELISA and immunohistochemistry. Circulating markers such as mitofusin-2, cardiac myosin light chain, malondialdehyde (MDA), and 4-hydroxy-2-nonenal (4-HNE) were also measured. Dapagliflozin significantly preserved the ejection fraction and reduced both radial and longitudinal strain impairment in mice treated with the doxorubicin–HER-2 inhibitor combination (p < 0.001). Levels of myocardial NLRP3, MyD88, CXCR4, H-FABP, interleukin-1β, and troponin-T were significantly lower in the dapagliflozin-treated group compared to the chemotherapy-only group. Serum markers of oxidative stress and cardiac injury, including mitofusin-2, MDA, 4-HNE, BNP, and high-sensitivity C-reactive protein (hs-CRP), were also reduced by dapagliflozin treatment. Our findings demonstrate that dapagliflozin effectively mitigates early cardiac dysfunction and injury in a preclinical model of sequential doxorubicin and HER-2 inhibitor therapy. Full article
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