Aggregated eosinophils and neutrophils characterize the properties of mucus in chronic rhinosinusitis

粘液 慢性鼻-鼻窦炎 免疫学 医学 嗜酸性粒细胞 微生物学 哮喘 生物 生态学
作者
Yui Miyabe,Mineyo Fukuchi,Hiroki Tomizawa,Yuka Nakamura,Mitsutoshi Jikei,Yoshinori Matsuwaki,Misaki Arima,Yasunori Konno,Yuki Moritoki,Masahide Takeda,Naoya Tanabe,Hiroshi Shima,Yusuke Shiraishi,Toyohiro Hirai,Nobuo Ohta,Junko Takahata,Atsushi Matsubara,Takechiyo Yamada,Koichiro Asano,Isao Miyairi,Rossana C. N. Melo,Peter F. Weller,Shigeharu Ueki
出处
期刊:The Journal of Allergy and Clinical Immunology [Elsevier]
卷期号:153 (5): 1306-1318 被引量:6
标识
DOI:10.1016/j.jaci.2023.11.925
摘要

Background Airway obstruction caused by viscous mucus is an important pathophysiologic characteristic of persistent inflammation, which can result in organ damage. Objective We investigated the hypothesis that the biophysical characteristics of accumulating granulocytes affect the clinical properties of mucus. Methods Surgically acquired nasal mucus samples from patients with eosinophilic chronic rhinosinusitis and neutrophil-dominant, noneosinophilic chronic rhinosinusitis were evaluated in terms of computed tomography density, viscosity, water content, wettability, and protein composition. Isolated human eosinophils and neutrophils were stimulated to induce the formation of extracellular traps, followed by the formation of aggregates. The biophysical properties of the aggregated cells were also examined. Results Mucus from patients with eosinophilic chronic rhinosinusitis had significantly higher computed tomography density, viscosity, dry weight, and hydrophobicity compared to mucus from patients with noneosinophilic chronic rhinosinusitis. The levels of eosinophil-specific proteins in mucus correlated with its physical properties. Eosinophil and neutrophil aggregates showed physical and pathologic characteristics resembling those of mucus. Cotreatment with deoxyribonuclease and heparin, which slenderizes the structure of eosinophil extracellular traps, efficiently induced reductions in the viscosity and hydrophobicity of both eosinophil aggregates and eosinophilic mucus. Conclusions The present study elucidated the pathogenesis of mucus stasis in infiltrated granulocyte aggregates from a novel perspective. These findings may contribute to the development of treatment strategies for eosinophilic airway diseases. Airway obstruction caused by viscous mucus is an important pathophysiologic characteristic of persistent inflammation, which can result in organ damage. We investigated the hypothesis that the biophysical characteristics of accumulating granulocytes affect the clinical properties of mucus. Surgically acquired nasal mucus samples from patients with eosinophilic chronic rhinosinusitis and neutrophil-dominant, noneosinophilic chronic rhinosinusitis were evaluated in terms of computed tomography density, viscosity, water content, wettability, and protein composition. Isolated human eosinophils and neutrophils were stimulated to induce the formation of extracellular traps, followed by the formation of aggregates. The biophysical properties of the aggregated cells were also examined. Mucus from patients with eosinophilic chronic rhinosinusitis had significantly higher computed tomography density, viscosity, dry weight, and hydrophobicity compared to mucus from patients with noneosinophilic chronic rhinosinusitis. The levels of eosinophil-specific proteins in mucus correlated with its physical properties. Eosinophil and neutrophil aggregates showed physical and pathologic characteristics resembling those of mucus. Cotreatment with deoxyribonuclease and heparin, which slenderizes the structure of eosinophil extracellular traps, efficiently induced reductions in the viscosity and hydrophobicity of both eosinophil aggregates and eosinophilic mucus. The present study elucidated the pathogenesis of mucus stasis in infiltrated granulocyte aggregates from a novel perspective. These findings may contribute to the development of treatment strategies for eosinophilic airway diseases.
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