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Immunological characterization of pleural effusions in pediatric patients
Luca Flögel1, Elisabeth Kaiser1, Muriel Charlotte Hans1
1Department of General Pediatrics and Neonatology, Saarland University, Campus Homburg, Homburg, Germany.
Insights
Pediatric cardiac surgery patients show distinct immune cell and cytokine profiles in pleural effusions compared to blood. This highlights the pleural cavity as a unique immunological site, potentially aiding diagnosis and treatment.
Area of Science:
- Immunology
- Cardiovascular Surgery
- Pediatrics
Background:
- The pleural cavity is a unique immunological compartment involved in inflammatory responses.
- The relationship between systemic immunity in blood and local immunity in pleural effusions is not well understood.
- This study characterizes paired blood and pleural effusion samples from pediatric cardiac surgery patients.
Purpose of the Study:
- To comprehensively characterize the immune response in paired blood and pleural effusion samples.
- To compare T cell subpopulations and cytokine profiles between systemic circulation and the pleural space.
- To investigate the immunological differences in pediatric patients following cardiac surgery.
Main Methods:
- Analysis of paired peripheral blood and pleural effusion samples from 30 pediatric patients (median age: 22 months) post-cardiac surgery.
- Quantification of 14 T cell subpopulations and 12 T cell-associated cytokines using flow cytometry and multiplex immunoassays.
- Comparison of immune cell distribution and cytokine levels between blood and pleural effusion compartments.
Main Results:
- Significantly higher levels of IL-6, IL-8, IL-10, and TNF in pleural effusion compared to plasma.
- Lower levels of IFN-γ, GM-CSF, and IL-17A in pleural effusion versus plasma.
- Increased proportions of T helper 1 (Th1), T helper 17 (Th17), and memory effector cytotoxic T cells in pleural effusion; reduced naïve T cells.
Conclusions:
- Significant differences in immunological factors exist between pleural effusions and blood in pediatric cardiac surgery patients.
- Evidence suggests localized cytokine production in the pleural space and a role for CD62L in T cell migration.
- The pleural cavity harbors a distinct immunological compartment, analysis of which may offer diagnostic and therapeutic benefits.
Background:
The pleural cavity represents a unique immunological compartment that can mount inflammatory reactions during infections, after surgery and in chronic immunological diseases. The connection between systemic immune reactions in the blood and local immune reactions in pleural effusions remains unclear. This study provides the first comprehensive immunological characterization of paired blood and pleural effusion samples, utilizing combined cell and cytokine analyses in pediatric patients undergoing cardiac surgery.
Methods:
In 30 pediatric patients (median age: 22 months) with pleural effusion after cardiac surgery for congenital heart defects, corresponding peripheral blood and pleural effusion samples were analyzed for their immune response. We used flow cytometry and multiplex immunoassays to quantify 14 T cell subpopulations and 12 T cell associated cytokines in each biosample.
Results:
IL-6, IL-8, IL-10, TNF (p<0.0001) levels were significantly higher in pleural effusion compared to plasma. In contrast, IFN-γ, GM-CSF, IL-17A levels were lower in pleural effusion than in plasma (p ≤ 0.0005). In comparison to peripheral blood, there was a significantly higher proportion of T helper cells 1 (Th1, p=0.0023), T helper cells 17 (Th17, p=0.0334) and memory effector cytotoxic T cells (CD3+CD8+CD45RO+CD62L-, p=0.0449) in pleural effusion and the same trend was observed for memory effector Th cells (CD3+CD4+CD45RO+CD62L-, p=0.0633) and double-negative T cells (CD3+CD4-CD8-) (p=0.1085). Naïve Th cells (CD3+CD4+CD45RO-CD62L+) and naïve cytotoxic T cells (CD3+CD8+CD45RO-CD62L+) were slightly reduced in pleural effusion compared to peripheral blood (not significant).
Conclusion:
Immunological factors in pleural effusions differed significantly from the corresponding blood samples in pediatric patients after cardiac surgery. The results suggest localized production of specific cytokines within the pleural space, while the distribution of other cytokines in pleural effusions appears to be more reflective of the systemic immune response. We found evidence that on the cellular level, the surface marker CD62L may play a key role in navigating T cells between the blood and pleural effusion. This study confirms that the pleural cavity harbors a unique lymphatic compartment, the analysis of which may be useful for both diagnostic and therapeutic purposes.
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