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Updated: Aug 5, 2025

Rapid Viscoelastic Characterization of Airway Mucus Using a Benchtop Rheometer
Published on: April 21, 2022
Normalizing salt content by mixing native human airway mucus samples normalizes sample rheology
Matthew R Markovetz1, Jacob E Hibbard1, Lucas M Plott1
1Marsico Lung Institute, The University of North Carolina at Chapel Hill, Chapel Hill, NC, United States.
Abstract:
Across the globe, millions of people are affected by muco-obstructive pulmonary diseases like cystic fibrosis, asthma, and chronic obstructive pulmonary disease. In MOPDs, the airway mucus becomes hyperconcentrated, increasing viscoelasticity and impairing mucus clearance. Research focused on treatment of MOPDs requires relevant sources of airway mucus both as a control sample type and as a basis for manipulation to study the effects of additional hyperconcentration, inflammatory milieu, and biofilm growth on the biochemical and biophysical properties of mucus. Endotracheal tube mucus has been identified as a prospective source of native airway mucus given its several advantages over sputum and airway cell culture mucus such as ease of access and in vivo production that includes surface airway and submucosal gland secretions. Still, many ETT samples suffer from altered tonicity and composition from either dehydration, salivary dilution, or other contamination. Herein, the biochemical compositions of ETT mucus from healthy human subjects were determined. Samples were characterized in terms of tonicity, pooled, and restored to normal tonicity. Salt-normalized ETT mucus exhibited similar concentration-dependent rheologic properties as originally isotonic mucus. This rheology agreed across spatial scales and with previous reports of the biophysics of ETT mucus. This work affirms previous reports of the importance of salt concentration on mucus rheology and presents methodology to increase yield native airway mucus samples for laboratory use and manipulation.
Insights
Researchers developed a method to improve native airway mucus samples from endotracheal tubes (ETT). This technique enhances mucus for studying muco-obstructive pulmonary diseases (MOPDs) and developing new treatments.
Area of Science:
- Pulmonary Medicine
- Biophysics
- Biochemistry
Background:
- Millions suffer from muco-obstructive pulmonary diseases (MOPDs), characterized by hyperconcentrated airway mucus.
- Effective research into MOPDs requires reliable sources of native airway mucus for study and manipulation.
- Endotracheal tube (ETT) mucus offers advantages over sputum or cell cultures but often has altered composition.
Purpose of the Study:
- To determine the biochemical composition of ETT mucus from healthy subjects.
- To establish a methodology for restoring and increasing the yield of native airway mucus samples.
- To investigate the impact of salt concentration on mucus rheology.
Main Methods:
- Biochemical characterization of ETT mucus samples.
- Restoration of ETT mucus to normal tonicity.
- Rheological analysis of salt-normalized and isotonic mucus.
Main Results:
- Biochemical composition of ETT mucus was determined.
- Salt-normalized ETT mucus demonstrated concentration-dependent rheologic properties similar to isotonic mucus.
- The rheology of ETT mucus was consistent across spatial scales and with prior research.
Conclusions:
- Salt concentration significantly influences mucus rheology.
- The presented methodology provides a reliable way to obtain and manipulate native airway mucus for MOPD research.
- This work supports the use of ETT mucus as a valuable resource for pulmonary research.

