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Updated: Nov 10, 2025

A Data-Driven Approach to Quantifying Immune States in Sepsis
Published on: February 7, 2025
Human myeloid-derived suppressor cell expansion during sepsis is revealed by unsupervised clustering of flow
Marco De Zuani1, Marcela Hortová-Kohoutková1, Ivana Andrejčinová1,2
1International Clinical Research Center, St. Anne's University Hospital Brno, Brno, Czech Republic.
Abstract:
Myeloid-derived suppressor cells (MDSCs) are important regulators of immune processes during sepsis in mice. However, confirming these observations in humans has been challenging due to the lack of defined preparation protocols and phenotyping schemes for MDSC subsets. Thus, it remains unclear how MDSCs are involved in acute sepsis and whether they have a role in the long-term complications seen in survivors. Here, we combined comprehensive flow cytometry phenotyping with unsupervised clustering using self-organizing maps to identify the three recently defined human MDSC subsets in blood from severe sepsis patients, long-term sepsis survivors, and age-matched controls. We demonstrated the expansion of monocytic M-MDSCs and polymorphonuclear PMN-MDSCs, but not early-stage (e)-MDSCs during acute sepsis. High levels of PMN-MDSCs were also present in long-term survivors many months after discharge, suggesting a possible role in sepsis-related complications. Altogether, by employing unsupervised clustering of flow cytometric data we have confirmed the likely involvement of human MDSC subsets in acute sepsis, and revealed their expansion in sepsis survivors at late time points. The application of this strategy in future studies and in the clinical/diagnostic context would enable rapid progress toward a full understanding of the roles of MDSC in sepsis and other inflammatory conditions.
Insights
Myeloid-derived suppressor cells (MDSCs) are key in sepsis. This study identifies specific human MDSC subsets expanded during acute sepsis and found in survivors, suggesting a role in long-term complications.
Area of Science:
- Immunology
- Critical Care Medicine
Background:
- Myeloid-derived suppressor cells (MDSCs) regulate immune responses, but their role in human sepsis is unclear.
- Lack of standardized protocols hinders MDSC subset identification in human sepsis.
Purpose of the Study:
- To identify and characterize human MDSC subsets in acute sepsis and long-term survivors.
- To investigate the involvement of MDSCs in sepsis pathogenesis and long-term complications.
Main Methods:
- Comprehensive flow cytometry and unsupervised clustering (self-organizing maps) were used.
- Blood samples from severe sepsis patients, survivors, and controls were analyzed.
- Three human MDSC subsets (M-MDSCs, PMN-MDSCs, e-MDSCs) were identified.
Main Results:
- Monocytic (M-MDSCs) and polymorphonuclear (PMN-MDSCs) subsets were expanded during acute sepsis.
- Elevated PMN-MDSCs persisted in long-term sepsis survivors.
- Early-stage (e)-MDSCs did not show expansion.
Conclusions:
- Human MDSC subsets are involved in acute sepsis.
- Expanded PMN-MDSCs in survivors suggest a role in sepsis-related complications.
- Unsupervised clustering facilitates MDSC analysis in sepsis and inflammatory conditions.
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