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Updated: May 18, 2026

A Data-Driven Approach to Quantifying Immune States in Sepsis
Published on: February 7, 2025
Sepsis: going to the heart of the matter
Mara R N Celes1, Cibele M Prado, Marcos A Rossi
1Laboratory of Cellular and Molecular Cardiology, Department of Pathology, Faculty of Medicine of Ribeirão Preto, University of São Paulo, Ribeirão Preto, Brazil.
Insights
Severe sepsis causes myocardial depression, leading to death. This review explores septic cardiomyopathy, focusing on functional changes and potential therapeutic targets to improve outcomes in critically ill patients.
Area of Science:
- Cardiology
- Immunology
- Critical Care Medicine
Background:
- Myocardial depression is a major cause of death in severe sepsis and septic shock.
- The exact mechanisms causing cardiac dysfunction in sepsis, whether functional or structural, are still debated.
- Understanding these mechanisms is crucial for developing effective treatments.
Purpose of the Study:
- To review the current understanding of septic cardiomyopathy.
- To explore the role of immune system activation in sepsis-induced myocardial dysfunction.
- To identify potential therapeutic targets for improving cardiovascular outcomes in sepsis.
Main Methods:
- Review of existing literature on sepsis, myocardial dysfunction, and septic cardiomyopathy.
- Analysis of cellular, molecular, and functional changes in experimental sepsis models.
- Examination of myocardial structural changes in human septic hearts.
Main Results:
- Evidence suggests functional abnormalities play a significant role in sepsis-induced myocardial dysfunction.
- Experimental models reveal various cellular and molecular alterations in the heart during sepsis.
- Despite understanding, therapeutic interventions targeting functional changes have had limited success.
Conclusions:
- Septic cardiomyopathy involves alterations in the myocardial phenotype, primarily functional.
- Further research into abnormal parameters in sepsis may reveal novel therapeutic targets.
- Modulating these targets could potentially reduce mortality and improve cardiovascular outcomes in sepsis.
Abstract:
Although myocardial depression is the predominant cause of death in severe sepsis/septic shock, it remains disputed whether the functional changes are a consequence of structural alterations. If we look at myocardial dysfunction from the perspective of a critically ill patient, there are a few questions to be asked: What causes myocardial dysfunction? What is the pathophysiology of cardiac dysfunction and death? Is there something that could be done to prevent the outcome? Each of these questions is interrelated and the answers will be more easily addressed if we continue to understand the basic mechanisms that are implicated. The principal mechanisms proposed for the pathogenesis of myocardial dysfunction support a prominent role for functional rather than anatomical abnormalities. However, attempts to reduce the high mortality in septic patients by manipulating the functional alterations have provided limited success. In recent years, the concept of septic cardiomyopathy has evolved, which implies alterations in the myocardial phenotype. This review includes an overview on the activation of the immune system and therapeutic approaches in sepsis, myocardial structural changes in the human septic heart, experimental models of sepsis, and cellular, molecular and functional myocardial changes seen in a variety of experimental sepsis models. The abnormal parameters discussed may emerge as therapeutic targets, for which modulation might provide beneficial effects on cardiovascular outcome and mortality in sepsis in the future.
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