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Published on: June 7, 2018
Granular Insights: Neutrophil Predominance and Elastase Release in Severe Asthma Exacerbations in a Pediatric Cohort
Kirstin Henley1, Erin Tresselt1, Jessica S Hook1
1Department of Pediatrics, University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.
Insights
Severe asthma exacerbations involve increased neutrophils, which release more elastase. This suggests neutrophils drive inflammation and tissue damage in severe asthma attacks, impacting disease progression.
Area of Science:
- Immunology
- Pulmonology
- Cell Biology
Background:
- Asthma exacerbations involve chronic inflammation driven by granulocytes like neutrophils and eosinophils.
- Altered adhesion molecules and granule release from these cells may worsen tissue damage and inflammation in status asthmaticus.
Purpose of the Study:
- To investigate the role of granulocyte inflammation in asthma exacerbations.
- To compare granulocyte phenotype and function in patients with mild-to-moderate versus severe asthma.
Main Methods:
- Prospective cohort study at a pediatric tertiary care hospital.
- Collected clinical data and blood samples from asthma patients (emergency department and ICU admissions).
- Purified granulocytes to assess cell surface markers, elastase release, and cytokine production.
Main Results:
- Severe asthmatics in the ICU had significantly higher neutrophil counts than healthy donors.
- Eosinophils were minimally present in granulocyte preparations from severe asthmatics.
- Neutrophils from severe asthmatics showed significantly increased elastase release ex vivo compared to healthy controls.
Conclusions:
- Neutrophil activation and inflammatory product release are heightened in severe asthma exacerbations.
- Neutrophil-driven inflammation may contribute to the severity and progression of asthma attacks.
Abstract:
The chronic inflammatory component of asthma is propagated by granulocytes, including neutrophils and eosinophils, in the peripheral circulation and airway. Previous studies have suggested that these cells have an altered expression of adhesion-related molecules and a propensity for the release of granule contents that may contribute to tissue damage and enhance inflammatory complications in patients with status asthmaticus. The goal of this prospective cohort study at a tertiary care pediatric hospital with a large population of asthma patients was to assess the role of granulocyte-based inflammation in the development of asthma exacerbation. Subjects were enrolled from two patient populations: those with mild-to-moderate asthma exacerbations seen in the emergency department and those with severe asthma admitted to the intensive care unit (PICU). Clinical data were collected, and blood was drawn. Granulocytes were immediately purified, and the phenotype was assessed, including the expression of cell surface markers, elastase release, and cytokine production. Severe asthmatics admitted to the PICU displayed a significantly higher total neutrophil count when compared with healthy donors. Moreover, little to no eosinophils were found in granulocyte preparations from severe asthmatics. Circulating neutrophils from severe asthmatics admitted to the PICU displayed significantly increased elastase release ex vivo when compared with the PMN from healthy donors. These data suggest that the neutrophil-based activation and release of inflammatory products displayed by severe asthmatics may contribute to the propagation of asthma exacerbations.
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