[HTML][HTML] Making Cell Culture More Physiological: Serially passaged, conditionally reprogrammed nasal epithelial cells as a model to study epithelial functions and …

H Schmidt, L Guthjahr, A Sauter, F Zech… - American Journal of …, 2022 - ncbi.nlm.nih.gov
Primary airway epithelial cells (pAECs) cultivated at air-liquid interface (ALI) conditions are
widely used as surrogates for human in vivo epithelia. To extend the proliferative capacity …

Serially passaged, conditionally reprogrammed nasal epithelial cells as a model to study epithelial functions and SARS-CoV-2 infection

H Schmidt, L Guthjahr, A Sauter… - … of Physiology-Cell …, 2022 - journals.physiology.org
Primary airway epithelial cells (pAECs) cultivated at air-liquid interface (ALI) conditions are
widely used as surrogates for human in vivo epithelia. To extend the proliferative capacity …

Serially passaged, conditionally reprogrammed nasal epithelial cells as a model to study epithelial functions and SARS‐CoV‐2 infection 2

MF Stenger, F Kirchhoff, P Dietl, OH Wittekindt… - journals.physiology.org
Primary airway epithelial cells (pAEC) cultivated at air‐liquid interface (ALI) conditions are
widely 25 used as surrogates for human in vivo epithelia. To extend the proliferative capacity …

[HTML][HTML] Growth media affects susceptibility of air-lifted human nasal epithelial cell cultures to SARS-CoV2, but not Influenza A, virus infection

JD Resnick, JL Wilson, E Anaya, A Conte, M Li… - bioRxiv, 2023 - ncbi.nlm.nih.gov
Primary differentiated human epithelial cell cultures have been widely used by researchers
to study viral fitness and virus-host interactions, especially during the COVID19 pandemic …

Human nasal epithelial cells (hNECs) generated by air-liquid interface (ALI) culture as a model system for studying the pathogenesis of SARS-CoV-2

KS Tan, AM Gamage, J Liu - SARS-CoV-2: Methods and Protocols, 2022 - Springer
The nasal epithelium lining the human upper airway is the primary portal of entry for several
respiratory pathogens, including the recently emerged SARS-CoV-2 virus responsible for …

[HTML][HTML] Air-liquid-interface differentiated human nose epithelium: a robust primary tissue culture model of SARS-CoV-2 infection

BM Tran, SL Grimley, JL McAuley, A Hachani… - International Journal of …, 2022 - mdpi.com
The global urgency to uncover medical countermeasures to combat the COVID-19
pandemic caused by the severe acute respiratory syndrome-coronavirus 2 (SARS-CoV-2) …

Human Nasal Epithelial Cells Sustain Persistent SARS-CoV-2 Infection In Vitro, despite Eliciting a Prolonged Antiviral Response

AM Gamage, KS Tan, WOY Chan, ZZR Lew, J Liu… - Mbio, 2022 - Am Soc Microbiol
The dynamics of SARS-CoV-2 infection in COVID-19 patients are highly variable, with a
subset of patients demonstrating prolonged virus shedding, which poses a significant …

[HTML][HTML] Human iPSC-derived alveolar and airway epithelial cells can be cultured at air-liquid interface and express SARS-CoV-2 host factors

KM Abo, L Ma, T Matte, J Huang, KD Alysandratos… - Biorxiv, 2020 - ncbi.nlm.nih.gov
Abstract Development of an anti-SARS-CoV-2 therapeutic is hindered by the lack of
physiologically relevant model systems that can recapitulate host-viral interactions in human …

Human airway ex vivo models: new tools to study the airway epithelial cell response to SARS-CoV-2 infection

S Assou, E Ahmed, L Morichon, A Nasri, F Foisset… - bioRxiv, 2023 - biorxiv.org
Airway-liquid interface cultures of primary epithelial cells and of induced pluripotent stem
cell-derived airway epithelial cells (ALI and iALI, respectively) are physiologically relevant …

Cell culture differentiation and proliferation conditions influence the in vitro regeneration of the human airway epithelium

E Redman, M Fierville, A Cavard, M Plaisant… - bioRxiv, 2024 - biorxiv.org
The human airway mucociliary epithelium can be recapitulated in vitro using primary cells
cultured in an Air-Liquid Interface (ALI), a reliable surrogate to perform pathophysiological …