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Updated: Feb 22, 2026

Whole-cell MALDI-TOF Mass Spectrometry is an Accurate and Rapid Method to Analyze Different Modes of Macrophage Activation
Published on: December 26, 2013
Macrophage activation-like syndrome: an immunological entity associated with rapid progression to death in sepsis
Evdoxia Kyriazopoulou1, Konstantinos Leventogiannis1, Anna Norrby-Teglund2
14th Department of Internal Medicine, Attikon University Hospital, National and Kapodistrian University of Athens, 1 Rimini Street, 124 62, Athens, Greece.
Background:
A subanalysis of a randomized clinical trial indicated sepsis survival benefit from interleukin (IL)-1 blockade in patients with features of the macrophage activation-like syndrome (MALS). This study aimed to investigate the frequency of MALS and to develop a biomarker of diagnosis and prognosis.
Methods:
Patients with infections and systemic inflammatory response syndrome were assigned to one test cohort (n = 3417) and a validation cohort (n = 1704). MALS was diagnosed for patients scoring positive either for the hemophagocytic syndrome score and/or having both hepatobiliary dysfunction and disseminated intravascular coagulation. Logistic regression analysis was used to estimate the predictive value of MALS for 10-day mortality in both cohorts. Ferritin, sCD163, IL-6, IL-10, IL-18, interferon gamma (IFN-γ), and tumor necrosis factor alpha (TNF-α) were measured in the blood the first 24 h; ferritin measurements were repeated in 747 patients on day 3.
Results:
The frequency of MALS was 3.7% and 4.3% in the test and the validation cohort, respectively. In both cohorts, MALS was an independent risk factor for 10-day mortality. A ferritin level above 4420 ng/ml was accompanied by 66.7% and 66% mortality after 28 days, respectively. Ferritin levels above 4420 ng/ml were associated with an increase of IL-6, IL-18, INF-γ, and sCD163 and a decreased IL-10/TNF-α ratio, indicating predominance of pro-inflammatory phenomena. Any less than 15% decrease of ferritin on day 3 was associated with more than 90% sensitivity for unfavorable outcome after 10 days. This high mortality risk was also validated in an independent Swedish cohort (n = 109).
Conclusions:
MALS is an independent life-threatening entity in sepsis. Ferritin measurements can provide early diagnosis of MALS and may allow for specific treatment.
Insights
Macrophage activation-like syndrome (MALS) is a life-threatening sepsis complication. High ferritin levels indicate MALS and predict poor outcomes, suggesting ferritin as a diagnostic biomarker.
Area of Science:
- Critical care medicine
- Immunology
- Hematology
Background:
- A randomized clinical trial subanalysis suggested interleukin-1 blockade benefits sepsis patients with macrophage activation-like syndrome (MALS).
- This study investigated the frequency of MALS and aimed to develop diagnostic and prognostic biomarkers.
Purpose of the Study:
- To determine the frequency of MALS in sepsis patients.
- To identify biomarkers for diagnosing and predicting prognosis in MALS.
- To evaluate the association between MALS and mortality.
Main Methods:
- Two cohorts (test n=3417, validation n=1704) of sepsis patients were analyzed.
- MALS diagnosis was based on hemophagocytic syndrome score and/or hepatobiliary dysfunction and disseminated intravascular coagulation.
- Logistic regression assessed MALS's predictive value for mortality; ferritin and other inflammatory markers were measured.
Main Results:
- MALS occurred in 3.7% (test) and 4.3% (validation) of patients and was an independent risk factor for 10-day mortality.
- A ferritin level >4420 ng/ml correlated with 66-67% 28-day mortality and was linked to pro-inflammatory cytokine increases.
- A <15% decrease in ferritin on day 3 showed >90% sensitivity for unfavorable 10-day outcomes, validated in an independent cohort.
Conclusions:
- Macrophage activation-like syndrome (MALS) is an independent, life-threatening condition in sepsis.
- Ferritin measurements can aid in early MALS diagnosis and potentially guide specific treatments.
- Ferritin levels and their changes over time serve as crucial prognostic indicators in sepsis-associated MALS.
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