ArticlePhysiological genomics2019
Identification of molecular signatures of cystic fibrosis disease status with plasma-based functional genomics.
Article in Physiological genomics, 2019. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 14 papers.
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Who cites it
14 citing papers in PubMed.
- Mitochondria Meet the Lung Microbiome: A Bidirectional Dialogue in Inflammation and Respiratory Diseases.Biomedicines · 2026Review
- Molecular inflammatory expression profiles associated with the frequency of pain in individuals with sickle cell disease.Blood advances · 2025Article
- Recent developments in cystic fibrosis drug discovery: where are we today?Expert opinion on drug discovery · 2025Review
- Diversity of CFTR variants across ancestries characterized using 454,727 UK biobank whole exome sequences.Genome medicine · 2024Article
- Discovery of dysregulated circular RNAs in whole blood transcriptomes from cystic fibrosis patients - implication of a role for cellular senescence in cystic fibrosis.Journal of cystic fibrosis : official journal of the European Cystic Fibrosis Society · 2023Article
- CFTR-mediated monocyte/macrophage dysfunction revealed by cystic fibrosis proband-parent comparisons.JCI insight · 2022Article
- Genomic, transcriptomic, and protein landscape profile of CFTR and cystic fibrosis.Human genetics · 2021Article
- Neutrophil extracellular traps are present in the airways of ENaC-overexpressing mice with cystic fibrosis-like lung disease.BMC immunology · 2021Article
- Single-Cell Transcriptional Archetypes of Airway Inflammation in Cystic Fibrosis.American journal of respiratory and critical care medicine · 2020Article
- Whole-blood transcriptomic responses to lumacaftor/ivacaftor therapy in cystic fibrosis.Journal of cystic fibrosis : official journal of the European Cystic Fibrosis Society · 2020Article
- Microarray profiling identifies extracellular circulating miRNAs dysregulated in cystic fibrosis.Scientific reports · 2019Article
- Cystic Fibrosis Plasma Blunts the Immune Response to Bacterial Infection.American journal of respiratory cell and molecular biology · 2019Article
- Transcriptional consequences of impaired immune cell responses induced by cystic fibrosis plasma characterized via dual RNA sequencing.BMC medical genomics · 2019Article
- Transcriptome Profiling and Molecular Therapeutic Advances in Cystic Fibrosis: Recent Insights.Genes · 2019Review
Corrections and comments
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Authors and funding
25 authors.
Funding
Abstract
Although cystic fibrosis (CF) is attributed to dysfunction of a single gene, the relationships between the abnormal gene product and the development of inflammation and progression of lung disease are not fully understood, which limits our ability to predict an individual patient's clinical course and treatment response. To better understand CF progression, we characterized the molecular signatures of CF disease status with plasma-based functional genomics. Peripheral blood mononuclear cells (PBMCs) from healthy donors were cultured with plasma samples from CF patients ( n = 103) and unrelated, healthy controls ( n = 31). Gene expression levels were measured with an Affymetrix microarray (GeneChip Human Genome U133 Plus 2.0). Peripheral blood samples from a subset of the CF patients ( n = 40) were immunophenotyped by flow cytometry, and the data were compared with historical data for age-matched healthy controls ( n = 351). Plasma samples from another subset of CF patients ( n = 56) and healthy controls ( n = 16) were analyzed by multiplex enzyme-linked immunosorbent assay (ELISA) for numerous cytokines and chemokines. Principal component analysis and hierarchical clustering of induced transcriptional data revealed disease-specific plasma-induced PBMC profiles. Among 1,094 differentially expressed probe sets, 51 genes were associated with pancreatic sufficient status, and 224 genes were associated with infection with Pseudomonas aeruginosa. The flow cytometry and ELISA data confirmed that various immune modulators are relevant contributors to the CF molecular signature. This study provides strong evidence for distinct molecular signatures among CF patients. An understanding of these molecular signatures may lead to unique molecular markers that will enable more personalized prognoses, individualized treatment plans, and rapid monitoring of treatment response.
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