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Pediatric Pulmonology|June 8, 2026
Cystic Fibrosis-Asthma Overlap Syndrome: Current Understanding and Future DirectionsIrina Miralda, Daniel S Aridgides, Hazel Ozuna, et al.Biorxiv : the Preprint Server for Biology|October 3, 2025
<i>Pseudomonas aeruginosa lasR</i> Mutants Resist Phagocytosis and Alter Inflammatory Cytokine Production by Cystic Fibrosis MacrophagesDaniel S Aridgides, Diane L Mellinger, Lorraine L Gwilt, et al.Scientific Reports|July 25, 2023
Comparative effects of CFTR modulators on phagocytic, metabolic and inflammatory profiles of CF and nonCF macrophagesDaniel S Aridgides, Diane L Mellinger, Lorraine L Gwilt, et al.Immunohorizons|July 30, 2019
DNA Methylation Changes in Regional Lung Macrophages Are Associated with Metabolic DifferencesDavid A Armstrong, Youdinghuan Chen, John A Dessaint, et al.Epigenetics|December 31, 2020
Exposure to extracellular vesicles from <i>Pseudomonas aeruginosa</i> result in loss of DNA methylation at enhancer and DNase hypersensitive site regions in lung macrophagesMin Kyung Lee, David A Armstrong, Haley F Hazlett, et al.Scientific Reports|July 5, 2019
Functional and metabolic impairment in cigarette smoke-exposed macrophages is tied to oxidative stressDaniel S Aridgides, Diane L Mellinger, David A Armstrong, et al.Msphere|April 2, 2026
<i>Pseudomonas aeruginosa lasR</i> mutants resist phagocytosis and alter inflammatory cytokine production by cystic fibrosis macrophagesDaniel S Aridgides, Diane L Mellinger, Lorraine L Gwilt, et al.Clinical Epigenetics|December 12, 2018
Genome-wide DNA methylation profiling shows a distinct epigenetic signature associated with lung macrophages in cystic fibrosisYoudinghuan Chen, David A Armstrong, Lucas A Salas, et al.Immunohorizons|August 22, 2020
Extracellular Vesicles from <i>Pseudomonas aeruginosa</i> Suppress MHC-Related Molecules in Human Lung MacrophagesDavid A Armstrong, Min Kyung Lee, Haley F Hazlett, et al.Pageof 1