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Background: Heart failure (HF) with preserved or mildly reduced ejection fraction includes a heterogenous group of patients. Reclassification into distinct phenogroups to enable targeted interventions is a priority. This study aimed to identify distinct phenogroups, and compare phenogroup characteristics and outcomes, from electronic health record data.
Methods: 2,187 patients admitted to five UK hospitals with a diagnosis of HF and a left ventricular ejection fraction ≥ 40% were identified from the NIHR Health Informatics Collaborative database. Partition-based, model-based, and density-based machine learning clustering techniques were applied. Cox Proportional Hazards and Fine-Gray competing risks models were used to compare outcomes (all-cause mortality and hospitalisation for HF) across phenogroups.
Results: Three phenogroups were identified: (1) Younger, predominantly female patients with high prevalence of cardiometabolic and coronary disease; (2) More frail patients, with higher rates of lung disease and atrial fibrillation; (3) Patients characterised by systemic inflammation and high rates of diabetes and renal dysfunction. Survival profiles were distinct, with an increasing risk of all-cause mortality from phenogroups 1 to 3 (p < 0.001). Phenogroup membership significantly improved survival prediction compared to conventional factors. Phenogroups were not predictive of hospitalisation for HF.
Conclusions: Applying unsupervised machine learning to routinely collected electronic health record data identified phenogroups with distinct clinical characteristics and unique survival profiles.
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http://dx.doi.org/10.1186/s12872-024-03987-9 | DOI Listing |
Acad Radiol
September 2025
Ganzhou Institute of Medical Imaging, Ganzhou Key Laboratory of Medical Imaging and Artificial Intelligence, Medical Imaging Center, Ganzhou People's Hospital, The Affiliated Ganzhou Hospital of Nanchang University, 16th Meiguan Avenue, Ganzhou 341000, PR China (W.L., B.F., Y.K., J.Z.). Electronic a
Rationale And Objectives: This study aimed to investigate the role of cardiac magnetic resonance (CMR)-derived left atrial (LA) strain parameters in evaluating early cardiac dysfunction in hypertensive patients and to assess their diagnostic utility for left ventricular diastolic dysfunction (LVDD).
Methods: A total of 150 hypertensive patients and 60 healthy controls were retrospectively enrolled, with all participants undergoing both echocardiographic and CMR examinations. Hypertensive patients were stratified by LVDD severity based on current guidelines.
Brain Behav Immun
September 2025
A.I. Virtanen Institute for Molecular Sciences, University of Eastern Finland, 70211 Kuopio, Finland. Electronic address:
Microglia, brain-resident immune cells, are involved in pathophysiology of several neurodegenerative diseases, including Parkinson's disease. Given significant species-specific differences in microglia gene expression, particularly in disease-risk genes, as well as the highly reactive nature of these cells, studying human microglia in a whole brain environment is essential. Here, we established a humanized mouse model by transplanting human induced pluripotent stem cell-derived hematopoietic progenitor cells into the striatum of immunodeficient adult mice and injected human alpha-synuclein preformed fibrils to model Parkinson's disease pathology.
View Article and Find Full Text PDFJ Magn Reson Imaging
September 2025
Department of Radiology, Second Affiliated Hospital of Naval Medical University, Shanghai, China.
Background: Radiation-free four-dimensional (4D) dynamic ultrashort echo time MRI (UTE MRI) enables quantification of ventilation defects in chronic obstructive pulmonary disease (COPD) and preserved ratio impaired spirometry (PRISm) populations.
Purpose: To quantify pulmonary ventilation using 4D UTE MRI in PRISm and COPD populations, and determine its ability to distinguish PRISm from non-COPD subjects.
Study Type: Prospective, cross-sectional.
ACS Appl Mater Interfaces
September 2025
Research Center for Materials Nanoarchitectonics, National Institute for Materials Science (NIMS), 1-1 Namiki, Tsukuba 305-0044, Japan.
Sustainable and chemically resilient hydrogels are critically needed in biointerface engineering, particularly for 3D cell culture systems and surface modification under physiological to mildly alkaline conditions. However, physically cross-linked cellulose nanofiber (CNF) hydrogels─despite their renewable origin and biocompatibility─typically disintegrate at pH > 8, limiting their use in polydopamine (PDA)-based surface functionalization. Here, we present a simple and scalable physical treatment strategy to fabricate alkali-resistant, physically cross-linked hydrogels from carboxymethyl cellulose nanofibers (CMCF).
View Article and Find Full Text PDFJ Am Coll Cardiol
August 2025
: Cardiovascular Division, Brigham and Women's Hospital, Harvard Medical School, Boston, MA, USA. Electronic address:
Background: Natriuretic peptides are the primary biomarkers recommended in heart failure (HF) guidelines to risk stratify patients in clinical practice and serve as key eligibility criteria in contemporary clinical trials. However, threshold levels typically do not account for measures of adiposity, such as body mass index (BMI).
Objective: To evaluate the association between N-terminal pro-B-type natriuretic peptide (NT-proBNP) with clinical outcomes in individuals with HF and mildly reduced or preserved ejection fraction (HFmrEF/HFpEF), stratified according to BMI.