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Updated: Dec 9, 2025

Infection of Primary Nasal Epithelial Cells Grown at an Air-Liquid Interface to Characterize Human Coronavirus-Host Interactions
Published on: September 22, 2023
Determinants of SARS-CoV-2 receptor gene expression in upper and lower airways
Abstract:
The recent outbreak of the severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2), which causes coronavirus disease 2019 (COVID-19), has led to a worldwide pandemic. One week after initial symptoms develop, a subset of patients progresses to severe disease, with high mortality and limited treatment options. To design novel interventions aimed at preventing spread of the virus and reducing progression to severe disease, detailed knowledge of the cell types and regulating factors driving cellular entry is urgently needed. Here we assess the expression patterns in genes required for COVID-19 entry into cells and replication, and their regulation by genetic, epigenetic and environmental factors, throughout the respiratory tract using samples collected from the upper (nasal) and lower airways (bronchi). Matched samples from the upper and lower airways show a clear increased expression of these genes in the nose compared to the bronchi and parenchyma. Cellular deconvolution indicates a clear association of these genes with the proportion of secretory epithelial cells. Smoking status was found to increase the majority of COVID-19 related genes including ACE2 and TMPRSS2 but only in the lower airways, which was associated with a significant increase in the predicted proportion of goblet cells in bronchial samples of current smokers. Both acute and second hand smoke were found to increase ACE2 expression in the bronchus. Inhaled corticosteroids decrease ACE2 expression in the lower airways. No significant effect of genetics on ACE2 expression was observed, but a strong association of DNA- methylation with ACE2 and TMPRSS2- mRNA expression was identified in the bronchus.
Insights
COVID-19 entry genes are more highly expressed in the nose than bronchi. Smoking increases these genes in the lower airways, while inhaled corticosteroids decrease them.
Area of Science:
- Respiratory Medicine
- Virology
- Genetics
Background:
- The severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2) pandemic necessitates understanding cellular entry mechanisms for effective interventions.
- Severe COVID-19 progression and high mortality underscore the need for knowledge on viral entry factors.
Approach:
- Assessed gene expression for COVID-19 cellular entry and replication across the respiratory tract (upper and lower airways).
- Utilized cellular deconvolution to link gene expression to specific cell types.
- Investigated the impact of genetic, epigenetic, and environmental factors, including smoking and medication, on gene expression.
Key Points:
- COVID-19 entry-related gene expression is significantly higher in the nasal cavity compared to the bronchi and lung parenchyma.
- Secretory epithelial cells are strongly associated with the expression of these key viral entry genes.
- Smoking, both active and passive, upregulates ACE2 and TMPRSS2 expression in the lower airways, correlating with increased goblet cells.
- Inhaled corticosteroids reduce ACE2 expression in the lower airways.
- While genetics showed no significant effect, DNA methylation strongly correlated with ACE2 and TMPRSS2 mRNA expression in the bronchus.
Conclusions:
- Nasal tissues exhibit higher susceptibility to SARS-CoV-2 entry compared to bronchial tissues.
- Environmental factors like smoking and inhaled corticosteroids significantly modulate the expression of viral entry genes in the airways.
- Epigenetic modifications, specifically DNA methylation, play a crucial role in regulating SARS-CoV-2 entry gene expression in the bronchus.
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