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Sepsis remains a leading cause of mortality worldwide, driven by its clinical complexity and delayed recognition. Artificial intelligence (AI) offers promising solutions to improve sepsis care through earlier detection, risk stratification, and personalized treatment strategies. Key applications include AI-driven early warning systems, subphenotyping based on clinical and biological data, and decision support tools that adapt to real-time patient information. The integration of diverse data types, such as structured clinical data, unstructured notes, waveform signals, and molecular biomarkers, enhances the precision and timeliness of interventions. However, challenges such as algorithmic bias, limited external validation, data quality issues, and ethical considerations continue to hinder clinical implementation. Future directions focus on real-time model adaptation, multi-omics integration, and the development of generalist medical AI capable of personalized recommendations. Successfully addressing these barriers is essential for AI to deliver on its potential to transform sepsis management and support the transition toward precision-driven critical care.
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http://dx.doi.org/10.1186/s13054-025-05588-0 | DOI Listing |
Am J Perinatol
September 2025
Division of Neonatology, Nemours Children's Health at Thomas Jefferson University Hospital, Philadelphia, Pennsylvania, United States.
This study aimed to evaluate outcomes and resource utilization in neonates ≥35 weeks' gestation admitted to the neonatal intensive care unit (NICU) for persistent hypothermia, and to assess the incidence of early-onset sepsis (EOS) as well as the potential benefit of using the Kaiser Permanente EOS calculator for risk stratification.This retrospective study included 161 neonates born ≥35 weeks' gestation admitted to the NICU with persistent hypothermia (core temperature <36.5°C on three separate measurements) at a tertiary care hospital between April 2017 and June 2024.
View Article and Find Full Text PDFMol Pharm
September 2025
Affiliated Hospital of Shandong Second Medical University, Shandong Second Medical University, Weifang 261053, Shandong, P. R. China.
Myocardial injury constitutes a life-threatening complication of sepsis, driven by synergistic oxidative-inflammatory pathology involving dysregulated production of reactive oxygen species (ROS), reactive nitrogen species (RNS), and proinflammatory cytokines. This pathophysiological cascade remarkably elevates morbidity and mortality rates in septic patients, emerging as a key contributor to poor clinical outcomes. Despite its clinical significance, no clinically validated therapeutics currently exist for managing septic cardiomyopathy.
View Article and Find Full Text PDFBackgroundThis investigation aimed to determine the utility of postnatal, ultrasonographically-derived dimensions of the thymus and spleen as imaging indicators for the prediction of early-onset neonatal sepsis (EOS).Material and MethodIn this case-control study, 30 term neonates diagnosed with Early-Onset Sepsis (EOS), based on European Medicines Agency (EMA) criteria, were compared to 30 healthy, matched control neonates. All participants underwent ultrasonography to quantify thymic and splenic dimensions.
View Article and Find Full Text PDFCrit Care Explor
September 2025
Interdepartmental Division of Critical Care Medicine, University of Toronto, Toronto, ON, Canada.
Objective: Vitamin C has been linked to alterations in platelet count and aggregation behavior. Given recent findings suggesting an association between vitamin C and adverse outcomes in patients with septic shock, we aimed to investigate whether vitamin C influences mortality in septic patients through its impact on platelets.
Design: Post hoc analysis of the Lessening Organ Dysfunction With Vitamin C (LOVIT) randomized trial (clinicaltrials.
Front Cardiovasc Med
August 2025
Department of Emergency, The First People's Hospital of Guiyang, Guiyang, China.
Objective: Sepsis is a common and life-threatening syndrome in intensive care units, frequently accompanied by myocardial dysfunction, which significantly worsens patient outcomes. S100A12, a calcium-binding protein associated with inflammation, is upregulated in various inflammatory conditions. However, its role in sepsis and related cardiac injury remains unclear.
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