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(1 - 20 of 258)

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IL-33 expression is lower in current smokers at both transcriptomic and protein levels
Airway epithelial cells mount an early response to mycobacterial infection
Visceral adipose tissue
Cigarette smoke restricts the ability of mesenchymal cells to support lung epithelial organoid formation
Acute cigarette smoke exposure leads to higher viral infection in human bronchial epithelial cultures by altering interferon, glycolysis and GDF15-related pathways
Breathing on chip
Impact of changes in human airway epithelial cellular composition and differentiation on SARS-CoV-2 infection biology
Multi-ancestry genome-wide association analyses improve resolution of genes and pathways influencing lung function and chronic obstructive pulmonary disease risk
Impact of changes in human airway epithelial cellular composition and differentiation on SARS-CoV-2 infection biology
Combination of IL-17A/F and TNF-alpha uniquely alters the bronchial epithelial cell proteome to enhance proteins that augment neutrophil migration
Combination of IL-17A/F and TNF-α uniquely alters the bronchial epithelial cell proteome to enhance proteins that augment neutrophil migration
Th2 high and mast cell gene signatures are associated with corticosteroid sensitivity in COPD
Smoking induces shifts in cellular composition and transcriptome within the bronchial mucus barrier
SARS-CoV-2-specific CD4(+) and CD8(+) T cell responses can originate from cross- reactive CMV- specific T cells
The lower airways microbiota and antimicrobial peptides indicate dysbiosis in sarcoidosis
Cigarette smoke impairs airway epithelial wound repair
Early transcriptional responses of bronchial epithelial cells to whole cigarette smoke mirror those of in-vivo exposed human bronchial mucosa
Keratin 8 is a scaffolding and regulatory protein of ERAD complexes
Association of bronchial steroid inducible methylation quantitative trait loci with asthma and chronic obstructive pulmonary disease treatment response
miR449 protects airway regeneration by controlling AURKA/HDAC6-mediated ciliary disassembly

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