Complement factors C3a and C5a are increased in Bronchoalveolar lavage fluid after segmental allergen provocation in subjects with asthma
Abstract
Allergic asthma is thought to be the result of an inappropriate specific immune response against common environmental antigens. However, studies of animal asthma models have also linked the innate immune system, in particular complement factors C3a and C5, to murine airway hyperresponsiveness. Because the possible role of these anaphylatoxins in patients with asthma is not understood, we tested the hypothesis that C3a and C5a will increase in the bronchoalveolar lavage (BAL) fluid of patients with asthma after segmental allergen provocation. In a group of 15 subjects with mild asthma we found a significant upregulation of C3a and C5a 24 h after allergen challenge compared with baseline values (p < 0.01). In a control group of healthy volunteers the concentrations remained basically unchanged. Furthermore, we found a strong correlation between both anaphylatoxins and the number of eosinophils (p < 0.01) and, to a lesser degree, with the number of neutrophils (p < 0.05) in BAL fluid. These data suggest a contribution of anaphylatoxins C3a and C5a to the pathogenesis in asthma. However, the pathogenic role of these substances in relation to asthma remains to be elucidated, for example, by using anaphylatoxin receptor blockers as a possible new therapeutic principle.
Key Biomarkers
Symptom Clusters
Cited By (15)
- Anaphylatoxins and infectious and non-infectious inflammatory diseasesMolecular Immunology · 2001
- The role of complement in danger sensing and transmissionImmunologic Research · 2006
- Generation of Anaphylatoxins by Human β-Tryptase from C3, C4, and C5The Journal of Immunology · 2008
- A dual role for complement in allergic asthmaCurrent Opinion in Pharmacology · 2007
- C5 modulates airway hyperreactivity and pulmonary eosinophilia during enhanced respiratory syncytial virus disease by decreasing C3a receptor expressionJournal of Virology · 2007
- Complement activation pathways: a bridge between innate and adaptive immune responses in asthmaProceedings of the American Thoracic Society · 2007
- Pharmacological Targeting of Anaphylatoxin Receptors during the Effector Phase of Allergic Asthma Suppresses Airway Hyperresponsiveness and Airway Inflammation
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