Related Experiment Video
Updated: Aug 16, 2026

Rapid Viscoelastic Characterization of Airway Mucus Using a Benchtop Rheometer
Published on: April 21, 2022
Striking deposition of toxic eosinophil major basic protein in mucus: implications for chronic rhinosinusitis
Jens U Ponikau1, David A Sherris, Gail M Kephart
1Department of Otorhinolaryngology-Head and Neck Surgery, Mayo Clinic Rochester, Rochester, MN 55905, USA. ponikau.jens@mayo.edu
Background:
The mechanisms by which eosinophilic inflammation damages the epithelium and contributes to recurrent acute exacerbations in chronic rhinosinusitis (CRS) have not been fully elucidated.
Objective:
We tested the hypotheses that eosinophils deposit toxic major basic protein (MBP) in the mucus and that MBP reaches concentrations able to damage the sinonasal epithelium.
Methods:
Tissue specimens with mucus attached to the tissue were carefully collected from 22 patients with CRS and examined by using immunofluorescence staining for MBP. This immunofluorescence was digitally analyzed to determine the area covered by MBP and the intensity of the staining (estimating MBP concentration). Levels of MBP in extracts from nasal mucus were quantitated by means of RIA.
Results:
Heterogeneous eosinophilia was evident within tissue and mucus specimens. All tissue specimens showed intact eosinophils, but diffuse extracellular MBP deposition, as a marker of eosinophil degranulation, was rare. In contrast, all mucus specimens showed diffuse MBP throughout and abundant diffuse extracellular MBP deposition within clusters of eosinophils. Digitized analyses of MBP immunofluorescence revealed increased area coverage (P < .0001) in mucus compared with that seen in tissue. Estimated concentrations of MBP within the clusters suggested toxic levels. MBP concentrations in mucus extract reached 11.7 microg/mL; MBP was not detectable in healthy control subjects.
Conclusion:
In patients with CRS, eosinophils form clusters in the mucus where they release MBP, which is diffusely deposited on the epithelium, a process not observed in the tissue. Estimated MBP levels far exceed those needed to damage epithelium from the luminal side and could predispose patients with CRS to secondary bacterial infections.
Insights
In chronic rhinosinusitis (CRS), eosinophils release toxic major basic protein (MBP) into mucus, damaging the sinonasal epithelium. This MBP deposition in mucus, not tissue, contributes to CRS exacerbations.
Area of Science:
- Otorhinolaryngology
- Immunology
- Pathology
Background:
- Eosinophilic inflammation is implicated in chronic rhinosinusitis (CRS) pathogenesis.
- Mechanisms of epithelial damage and exacerbations in CRS remain unclear.
Purpose of the Study:
- To investigate eosinophil-derived major basic protein (MBP) deposition in CRS.
- To determine if MBP in mucus reaches concentrations toxic to sinonasal epithelium.
Main Methods:
- Immunofluorescence staining of MBP in CRS tissue and mucus specimens.
- Digital analysis of MBP distribution and intensity.
- Quantification of MBP in nasal mucus extracts using radioimmunoassay (RIA).
Main Results:
- Diffuse extracellular MBP deposition observed in mucus, particularly within eosinophil clusters.
- MBP area coverage significantly higher in mucus than in tissue.
- Estimated MBP concentrations in mucus exceeded toxic levels, with detectable levels up to 11.7 microg/mL.
Conclusions:
- Eosinophils in CRS release MBP into mucus, leading to diffuse epithelial deposition.
- MBP levels in mucus are sufficient to damage epithelium and may increase susceptibility to secondary infections.
More Related Videos
Related Concept Videos
Drugs Used in Upper Respiratory Disorders: Overview
Antihistamines (e.g., Benadryl) block histamines from binding. Histamines are chemicals released during an allergic reaction in the body. As a...
Chronic Obstructive Pulmonary Disease III: Chronic Bronchitis Features
Chronic Obstructive Pulmonary Disease II: Emphysema
Microbiota of the Respiratory Tract
Upper Respiratory Drugs: Antitussives, Expectorants, and Mucolytics
Antitussives include codeine, dextromethorphan (Robitussin), and benzonatate (Tessalon). Codeine and dextromethorphan exert their effects centrally by suppressing the cough reflex center in the medulla. Benzonatate operates peripherally within the respiratory tract by anesthetizing...
Cystic Fibrosis: Pathogenesis
CF is primarily caused by a genetic mutation in a chromosome 7 gene coding for the cystic fibrosis transmembrane conductance regulator (CFTR) protein. The most common gene mutation leading to CF is the ΔF508 mutation, but...

