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Impact of Changes in Human Airway Epithelial Cellular Composition and Differentiation on SARS-CoV-2 Infection Biology.
Thaler, Melissa; Wang, Ying; van der Does, Anne M; Faiz, Alen; Ninaber, Dennis K; Ogando, Natacha S; Beckert, Hendrik; Taube, Christian; Salgado-Benvindo, Clarisse; Snijder, Eric J; Bredenbeek, Peter J; Hiemstra, Pieter S; van Hemert, Martijn J.
Afiliação
  • Thaler M; Department of Medical Microbiology, Leiden University Medical Center, Leiden, The Netherlands.
  • Wang Y; Department of Pulmonology, Leiden University Medical Center, Leiden, The Netherlands, y.wang.long@lumc.nl.
  • van der Does AM; Department of Pulmonology, Leiden University Medical Center, Leiden, The Netherlands.
  • Faiz A; Respiratory Bioinformatics and Molecular Biology (RBMB), School of Life Sciences, University of Technology Sydney, Sydney, New South Wales, Australia.
  • Ninaber DK; Department of Pulmonology, Leiden University Medical Center, Leiden, The Netherlands.
  • Ogando NS; Department of Medical Microbiology, Leiden University Medical Center, Leiden, The Netherlands.
  • Beckert H; Department of Pulmonary Medicine, University Medical Center Essen - Ruhrlandklinik, Essen, Germany.
  • Taube C; Department of Pulmonary Medicine, University Medical Center Essen - Ruhrlandklinik, Essen, Germany.
  • Salgado-Benvindo C; Department of Medical Microbiology, Leiden University Medical Center, Leiden, The Netherlands.
  • Snijder EJ; Department of Medical Microbiology, Leiden University Medical Center, Leiden, The Netherlands.
  • Bredenbeek PJ; Department of Medical Microbiology, Leiden University Medical Center, Leiden, The Netherlands.
  • Hiemstra PS; Department of Pulmonology, Leiden University Medical Center, Leiden, The Netherlands.
  • van Hemert MJ; Department of Medical Microbiology, Leiden University Medical Center, Leiden, The Netherlands.
J Innate Immun ; 15(1): 562-580, 2023.
Article em En | MEDLINE | ID: mdl-36966527
ABSTRACT
The consequences of infection with severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) can range from asymptomatic to fatal disease. Variations in epithelial susceptibility to SARS-CoV-2 infection depend on the anatomical location from the proximal to distal respiratory tract. However, the cellular biology underlying these variations is not completely understood. Thus, air-liquid interface cultures of well-differentiated primary human tracheal and bronchial epithelial cells were employed to study the impact of epithelial cellular composition and differentiation on SARS-CoV-2 infection by transcriptional (RNA sequencing) and immunofluorescent analyses. Changes of cellular composition were investigated by varying time of differentiation or by using specific compounds. We found that SARS-CoV-2 primarily infected not only ciliated cells but also goblet cells and transient secretory cells. Viral replication was impacted by differences in cellular composition, which depended on culturing time and anatomical origin. A higher percentage of ciliated cells correlated with a higher viral load. However, DAPT treatment, which increased the number of ciliated cells and reduced goblet cells, decreased viral load, indicating the contribution of goblet cells to infection. Cell entry factors, especially cathepsin L and transmembrane protease serine 2, were also affected by differentiation time. In conclusion, our study demonstrates that viral replication is affected by changes in cellular composition, especially in cells related to the mucociliary system. This could explain in part the variable susceptibility to SARS-CoV-2 infection between individuals and between anatomical locations in the respiratory tract.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: COVID-19 Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: COVID-19 Idioma: En Ano de publicação: 2023 Tipo de documento: Article