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Author Spotlight: Advancing Immune Monitoring in Critical Care Patients Using Whole Blood Assays
Published on: September 20, 2024
Early stimulated immune responses predict clinical disease severity in hospitalized COVID-19 patients
Rebecka Svanberg1, Cameron MacPherson2, Adrian Zucco2
1Department of Hematology, Copenhagen University Hospital, Rigshospitalet, Copenhagen, Denmark.
Insights
Early innate immune response impairments in hospitalized COVID-19 patients predict severe disease. These immune deficits are transient, showing reconstitution upon recovery, offering potential biomarkers for risk stratification.
Area of Science:
- Immunology
- Infectious Diseases
- Biomarkers
Background:
- The immune pathogenesis of COVID-19's varied clinical outcomes remains unclear.
- There is a critical need for early biomarkers to identify and monitor COVID-19 patients at risk of severe disease.
Purpose of the Study:
- To longitudinally assess stimulated immune responses in hospitalized COVID-19 patients.
- To identify immune response patterns associated with COVID-19 disease severity.
- To explore the potential of immune signatures for predicting severe COVID-19.
Main Methods:
- Longitudinal assessment of stimulated immune responses in 30 hospitalized COVID-19 patients using the TruCulture whole-blood ligand-stimulation assay.
- Quantification of cytokine responses to standardized stimuli activating distinct immune pathways.
- Deep immunophenotyping of immune cell subsets via flow cytometry to correlate with clinical disease course.
Main Results:
- Impairments in innate immune response pathways at hospitalization correlate with severe COVID-19.
- Lower levels of LPS-stimulated IL-1β and R848-stimulated IL-12/IL-17A at admission are associated with increased disease severity.
- Immune impairments were transient, with functional and cellular immune reconstitution observed in patients discharged from the hospital.
Conclusions:
- Early innate immune response impairments predict subsequent COVID-19 disease severity.
- These findings support the development of early identification tools for high-risk COVID-19 patients.
- The study provides a basis for improved early management strategies for hospitalized COVID-19 patients.
Background:
The immune pathogenesis underlying the diverse clinical course of COVID-19 is poorly understood. Currently, there is an unmet need in daily clinical practice for early biomarkers and improved risk stratification tools to help identify and monitor COVID-19 patients at risk of severe disease.
Methods:
We performed longitudinal assessment of stimulated immune responses in 30 patients hospitalized with COVID-19. We used the TruCulture whole-blood ligand-stimulation assay applying standardized stimuli to activate distinct immune pathways, allowing quantification of cytokine responses. We further characterized immune cell subsets by flow cytometry and used this deep immunophenotyping data to map the course of clinical disease within and between patients.
Results:
Here we demonstrate impairments in innate immune response pathways at time of COVID-19 hospitalization that are associated with the development of severe disease. We show that these impairments are transient in those discharged from hospital, as illustrated by functional and cellular immune reconstitution. Specifically, we identify lower levels of LPS-stimulated IL-1β, and R848-stimulated IL-12 and IL-17A, at hospital admission to be significantly associated with increasing COVID-19 disease severity during hospitalization. Furthermore, we propose a stimulated immune response signature for predicting risk of developing severe or critical COVID-19 disease at time of hospitalization, to validate in larger cohorts.
Conclusions:
We identify early impairments in innate immune responses that are associated with subsequent COVID-19 disease severity. Our findings provide basis for early identification of patients at risk of severe disease which may have significant implications for the early management of patients hospitalized with COVID-19.
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