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PMID: 27283384 Published · ppublish English

Controlled diesel exhaust and allergen coexposure modulates microRNA and gene expression in humans: Effects on inflammatory lung markers.

The Journal of allergy and clinical immunology ·Vol. 138 ·No. 6 ·0000-00-00

Rider Christopher F, Yamamoto Masatsugu, Günther Oliver P, Hirota Jeremy A, Singh Amrit, Tebbutt Scott J, Carlsten Chris

Abstract

Air pollution's association with asthma may be due to its augmentation of allergenic effects, but the role of microRNA (miRNA) and gene expression in this synergy is unknown.,We sought to determine whether exposure to allergen, exposure to diesel exhaust (DE), or coexposures modulate miRNA, gene expression, or inflammatory pathways and whether these measurements are correlated.,Fifteen participants with atopy completed this controlled study of 2 hours of filtered air or DE (300 μg PM/m) exposure, followed by saline-controlled segmental bronchial allergen challenge. Gene and miRNA expression in bronchial brushings and lung inflammatory markers were measured 48 hours later, in study arms separated by approximately 4 weeks. Expression of miRNAs, messenger RNAs, and inflammatory markers and their interrelationships were determined using regression.,Robust linear models indicated that DE plus saline and DE plus allergen significantly modulated the highest number of miRNAs and messenger RNAs, respectively, relative to control (filtered air plus saline). In mixed models, allergen exposure modulated (q ≤ 0.2) miRNAs including miR-183-5p, miR-324-5p, and miR-132-3p and genes including NFKBIZ and CDKN1A, but DE did not significantly modify this allergenic effect. Repression of CDKN1A by allergen-induced miR-132-3p may contribute to shedding of bronchial epithelial cells.,Expression of specific miRNAs and genes associated with bronchial immune responses were significantly modulated by DE or allergen. However, DE did not augment the effect of allergen at 48 hours, suggesting that adjuvancy may be transient or require higher or prolonged exposure. In silico analysis suggested a possible mechanism contributing to epithelial wall damage following allergen exposure.

Keywords
Air pollution allergy controlled human exposure inflammatory markers multi-omics
MeSH 主题词
Adaptor Proteins, Signal Transducing Allergens/adverse effects,immunology Biomarkers/metabolism Cyclin-Dependent Kinase Inhibitor p21/genetics,metabolism Environmental Exposure/adverse effects Epithelial Cells/physiology Female Gene Expression Regulation Humans Hypersensitivity/diagnosis,immunology I-kappa B Proteins/genetics,metabolism Inflammation Mediators/metabolism Lung/immunology,pathology Male MicroRNAs/genetics Nuclear Proteins/genetics,metabolism Vehicle Emissions
Article Info
Journal
The Journal of allergy and clinical immunology
Abbr.
J Allergy Clin Immunol
Published
0000-00-00
Indexed
2016-06-10
Updated
2016-12-09
Language
English
Country/Region
United States
NLM ID
1275002
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