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PMID: 42079074 Published · epublish English

Unique nasal cell states induced by common pediatric respiratory viruses.

bioRxiv : the preprint server for biology ·2026-04-24

Walsh JML, Juttukonda LJ, Tang Y, Chatterjee A, Elosua-Bayes M, Langan E, Frischmann A, Taliaferro F, Matthews HR, Kimler K, Lent CM, Keya DP, Dev PC, Malaker AR, Tanvia L, Tanmoy AM, Ghosh S, Maitra A, Ghosh A, Basu S, Kane AS, Coomer CA, Shalek AK, de Silva TI, Sesay AK, Edwards J, Quee CS, Gonzalez WI, Yonker LM, Glover SC, Majumder P, Hooda Y, Saha S, Ordovas-Montanes J, Horwitz BH

Abstract

Respiratory viral infections in early childhood are major drivers of acute morbidity and long-term airway disease, yet how distinct viruses remodel the pediatric nasal mucosa at cellular resolution remains unresolved. Here, we generated a single-cell RNA sequencing atlas of 335,174 nasal epithelial and immune cells from 132 children under five years of age with SARS-CoV-2, rhinovirus, or respiratory syncytial virus (RSV) infection, alongside uninfected controls. Mapping viral transcripts to individual cells revealed virus-specific infected epithelial states: an NF-kB-responsive ciliated subset in SARS-CoV-2 and a previously undescribed KRT17+ squamous-like subset in RSV. We delineated divergent mucosal response programs, including a robust interferon (IFN) response in SARS-CoV-2, an IL-13-responsive secretory program in rhinovirus, and heightened inflammatory and cytotoxic immune activation in RSV. In RSV, specific immune subsets and elevated IFN-response signatures were associated with disease severity, whereas rhinovirus-induced wheeze was marked by expansion of a CST1+ goblet cell subset. Integration of asthma genome-wide association data with our atlas revealed a KRT13+ hillock-like squamous epithelial subset enriched for expression of childhood-onset asthma risk loci. Finally, we demonstrate that this resource enables high-resolution annotation of independent pediatric cohorts in Kolkata, India and rural Bangladesh. Together, this atlas establishes a comprehensive view of antiviral immunity in the pediatric nasal mucosa and defines virus-specific mucosal immune programs relevant to disease severity and asthma risk in early life.

Article Info
Journal
bioRxiv : the preprint server for biology
Abbr.
bioRxiv
ISSN
2692-8205
Published
2026-04-24
Language
English
Country/Region
United States
NLM ID
101680187
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