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Rhinovirus C targets ciliated airway epithelial cells. |
Respir Res |
2017 |
Griggs TF;Bochkov YA;Basnet S;Pasic TR;Brockman-Schneider RA;Palmenberg AC;Gern JE |
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30916989
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CDHR3 Asthma-Risk Genotype Affects Susceptibility of Airway Epithelium to Rhinovirus C Infections. |
Am J Respir Cell Mol Biol |
2019 |
Basnet S;Bochkov YA;Brockman-Schneider RA;Kuipers I;Aesif SW;Jackson DJ;Lemanske RF Jr;Ober C;Palmenberg AC;Gern JE |
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31849956
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Oxidative Stress Attenuates TLR3 Responsiveness and Impairs Anti-viral Mechanisms in Bronchial Epithelial Cells From COPD and Asthma Patients. |
Front Immunol |
2019 |
Menzel M;Ramu S;Calven J;Olejnicka B;Sverrild A;Porsbjerg C;Tufvesson E;Bjermer L;Akbarshahi H;Uller L |
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35265536
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Pseudomonas aeruginosa Affects Airway Epithelial Response and Barrier Function During Rhinovirus Infection. |
Front Cell Infect Microbiol |
2022 |
Endres A;Hugel C;Boland H;Hogardt M;Schubert R;Jonigk D;Braubach P;Rohde G;Bellinghausen C |
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37612597
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Acute cigarette smoke exposure leads to higher viral infection in human bronchial epithelial cultures by altering interferon, glycolysis and GDF15-related pathways. |
Respir Res |
2023 |
Wang Y;Ninaber DK;Faiz A;van der Linden AC;van Schadewijk A;Lutter R;Hiemstra PS;van der Does AM;Ravi A |
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