Skip to content
Open access

New Evidence in Heart Failure: 2026 Update.

Sep 2026 · ESC Heart Failure · 0 citations
Medicine

TL;DR

Therapeutic developments continue to reshape HF management across the spectrum of left ventricular ejection fraction, and support the transition from a predominantly phenotype-based approach towards a more personalized and biologically informed model of HF care.

Abstract

Heart failure (HF) remains a major cause of morbidity, mortality, impaired quality of life and healthcare expenditure worldwide. The global burden of HF continues to increase due to population aging, improved survival, and the growing prevalence of cardiovascular, renal, and metabolic comorbidities. Simultaneously, the pace of scientific progress in HF has accelerated considerably. Recent advances have refined our understanding of HF epidemiology, prognosis, and disease trajectories, including emerging concepts of HF improvement, remission, and recovery. The Second Universal Definition of HF has also updated the classification framework, moving beyond the traditional ejection fraction-based categories. HF is now broadly classified into two major phenotypes: heart failure with reduced ejection fraction (HFrEF) and heart failure with preserved ejection fraction (HFpEF). Novel mechanistic insights highlight the role of inflammation, immune activation, metabolic dysfunction, mitochondrial biology, and multisystem interactions in HF progression. There has also been significant progress in the characterization and management of major comorbidities, including chronic kidney disease (CKD), diabetes, obesity, atrial fibrillation (AF), pulmonary hypertension, frailty, malnutrition, and cancer. Diagnostic innovations include novel biomarkers, multi-omics technologies, artificial intelligence-based approaches, advanced imaging techniques, congestion assessment tools, and emerging digital health solutions. Important advances have occurred in specific HF aetiologies, including cardiomyopathies, cardiac amyloidosis (CA), myocarditis, arrhythmia-induced cardiomyopathy (AiCM), and Chagas cardiomyopathy. Therapeutic developments continue to reshape HF management across the spectrum of left ventricular ejection fraction. Recent evidence has focused on optimization of guideline-directed medical therapy in HFrEF, expansion of evidence-based therapies in HFpEF, and growing roles for sodium-glucose cotransporter-2 inhibitors, finerenone, incretin-based therapies, and transcatheter valve interventions. Collectively, these advances support the transition from a predominantly phenotype-based approach towards a more personalized and biologically informed model of HF care, with the potential to further improve outcomes across the entire HF spectrum.

Read PDF

Similar papers

Review Open access Aug 2026

Decoding Heart Failure: From Mechanisms to Phenotype-Based Management

Heart failure (HF) remains a leading cause of morbidity and mortality worldwide, with rising prevalence and substantial heterogeneity in pathophysiology and treatment response. This narrative review focuses on chronic HF in adults, with emphasis on pathophysiological mechanisms and phenotype-based classification. T...

Xiao-Min Jiang, Xin Wang, Juan Zhang · 0 citations
Review Open access Aug 2026

Heart Failure with Reduced versus Preserved Ejection Fraction: Molecular Mechanisms, Immunologic Pathways, Current Therapies, and Future Directions

Heart failure remains a major clinical and public health challenge due to its rising prevalence, heterogeneous biology, and persistent burden of morbidity, mortality, and healthcare utilization. Although left ventricular ejection fraction remains central to classification and treatment selection, it incompletely captur...

Eri Kim, Devendra K. Agrawal · 1 citation
Oct 2026

Pharmacological treatment strategies to prevent heart failure across the cardiovascular-kidney-metabolic spectrum: an EJHF Expert Consensus Statement.

Heart failure (HF) remains a major cause of morbidity, mortality, and increased healthcare costs worldwide, and is recognized as the result of progressive cardiovascular-kidney-metabolic (CKM) syndrome. Obesity, type 2 diabetes, chronic kidney disease, hypertension, and atherosclerotic cardiovascular disease frequently...

R. Inciardi, A. Abdin, M. Abdelhamid et al. · 0 citations
Review Sep 2026

CKM: Epidemiology, current clinical implications and future burden.

Cardiovascular-kidney-metabolic (CKM) syndrome was formalized by the American Heart Association in 2023 to capture the biological and clinical continuum linking excess adiposity, metabolic dysfunction, chronic kidney disease (CKD), and cardiovascular disease (CVD). Population-based studies indicate that CKM stage ≥1 af...

E. Russo, Miriam Dotta, E. Bussalino et al. · 0 citations
Review Open access Sep 2026

Novel blood biomarkers for heart failure mortality: mechanistic pathways, aging biology, and risk stratification

Heart failure (HF) is a major global health burden associated with high mortality after decompensation, particularly in older patients with multimorbidity. Although established biomarkers such as natriuretic peptides remain essential for initial risk stratification, they capture only a fraction of mortality risk in bio...

Xiao-Feng Zeng, W. Cheng, Yan Jiang et al. · 0 citations
Sep 2026

Circulating fibroblast growth factor 21 predicts adverse outcomes in patients with pre-heart failure and HFpEF.

Heart failure with preserved ejection fraction (HFpEF) accounts for more than half of patients with heart failure. Given its complex pathogenesis, non-invasive biomarkers are urgently needed. Fibroblast growth factor 21 (FGF21) modulates metabolism and inflammation, yet its prognostic role in the development and progre...

Hui-Ying Li, Yu Bao, Hu-Nan Xiao et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.