House Dust Mite Induces Distinct Cellular and Extracellular Vesicle-Associated miRNA Signatures in BEAS-2B Cells: Targeted Analysis of IL-4 Responses

Airway epithelial cells actively regulate allergic asthma through allergen sensing, type 2 cytokine responses, and extracellular vesicle (EV)-mediated intercellular communication. MicroRNAs (miRNAs) are important post-transcriptional regulators of epithelial inflammation and remodeling; however, the extent to which allergen exposure differentially alters cellular and EV-associated miRNA profiles remains incompletely understood. This study characterized miRNA responses to house dust mite (HDM) exposure in BEAS-2B bronchial epithelial cells and their EV-enriched fractions and subsequently examined selected HDM-responsive miRNAs following interleukin-4 (IL-4) stimulation. BEAS-2B cells were exposed to HDM extract or IL-4 for 72 h. EV-enriched preparations were isolated from conditioned media and characterized by transmission electron microscopy, nanoparticle tracking analysis, immunoblotting of EV-associated markers, and uptake assays. Global cellular and EV-associated miRNA profiling was performed in control and HDM-treated samples using the NanoString nCounter Human v3 miRNA assay, followed by qRT-PCR validation of selected candidates. HDM-responsive miRNAs were subsequently evaluated in IL-4-treated cells and corresponding EV-associated RNA by targeted qRT-PCR. Differentially expressed miRNAs were subjected to pathway-enrichment analysis. HDM exposure induced substantial remodeling of the cellular miRNA landscape, with 39 differentially expressed miRNAs identified in BEAS-2B cells. In contrast, EV-associated RNA exhibited a smaller but distinct set of differentially expressed miRNAs, including miR-612, miR-302d-3p, miR-125b-5p, and miR-15a-5p. Notably, miR-15a-5p displayed opposite directional changes in cellular and EV-associated RNA, highlighting compartment-specific differences in miRNA abundance. qRT-PCR independently supported several EV-associated candidates, including miR-612, miR-302d-3p, miR-15a-5p, and miR-125b-5p. Pathway analyses linked HDM-responsive miRNAs to cell-cycle regulation, p53 signaling, FoxO signaling, autophagy, and inflammatory pathways. Targeted qRT-PCR analysis revealed that many selected HDM-responsive miRNAs exhibited reduced expression following IL-4 stimulation compared with their respective untreated controls, indicating different directional responses for several candidates across the two stimulation paradigms . HDM exposure is associated with distinct cellular and EV-associated miRNA responses in the BEAS-2B bronchial epithelial model. The limited overlap between cellular and EV-associated miRNA profiles indicates that specific miRNAs are present at different levels in intracellular and EV compartments. In addition, several HDM-responsive miRNAs exhibited divergent responses following IL-4 stimulation, supporting context-dependent regulation by allergen and cytokine signaling. These findings identify EV-associated miRNAs as candidates for future mechanistic studies in the context of epithelial intercellular communication and allergic airway inflammation.

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Journal
Cells
Published
2026-09-24
DOI
https://doi.org/10.3390/cells15191744
Primary Topic
Extracellular vesicles in disease
Type
article
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article

House Dust Mite Induces Distinct Cellular and Extracellular Vesicle-Associated miRNA Signatures in BEAS-2B Cells: Targeted Analysis of IL-4 Responses

Isaac Kirubakaran Sundar, Allan Giri
Cells
Extracellular vesicles in disease
article

House Dust Mite Induces Distinct Cellular and Extracellular Vesicle-Associated miRNA Signatures in BEAS-2B Cells: Targeted Analysis of IL-4 Responses

Isaac Kirubakaran Sundar, Allan Giri
article en

Abstract

Airway epithelial cells actively regulate allergic asthma through allergen sensing, type 2 cytokine responses, and extracellular vesicle (EV)-mediated intercellular communication. MicroRNAs (miRNAs) are important post-transcriptional regulators of epithelial inflammation and remodeling; however, the extent to which allergen exposure differentially alters cellular and EV-associated miRNA profiles remains incompletely understood. This study characterized miRNA responses to house dust mite (HDM) exposure in BEAS-2B bronchial epithelial cells and their EV-enriched fractions and subsequently examined selected HDM-responsive miRNAs following interleukin-4 (IL-4) stimulation. BEAS-2B cells were exposed to HDM extract or IL-4 for 72 h. EV-enriched preparations were isolated from conditioned media and characterized by transmission electron microscopy, nanoparticle tracking analysis, immunoblotting of EV-associated markers, and uptake assays. Global cellular and EV-associated miRNA profiling was performed in control and HDM-treated samples using the NanoString nCounter Human v3 miRNA assay, followed by qRT-PCR validation of selected candidates. HDM-responsive miRNAs were subsequently evaluated in IL-4-treated cells and corresponding EV-associated RNA by targeted qRT-PCR. Differentially expressed miRNAs were subjected to pathway-enrichment analysis. HDM exposure induced substantial remodeling of the cellular miRNA landscape, with 39 differentially expressed miRNAs identified in BEAS-2B cells. In contrast, EV-associated RNA exhibited a smaller but distinct set of differentially expressed miRNAs, including miR-612, miR-302d-3p, miR-125b-5p, and miR-15a-5p. Notably, miR-15a-5p displayed opposite directional changes in cellular and EV-associated RNA, highlighting compartment-specific differences in miRNA abundance. qRT-PCR independently supported several EV-associated candidates, including miR-612, miR-302d-3p, miR-15a-5p, and miR-125b-5p. Pathway analyses linked HDM-responsive miRNAs to cell-cycle regulation, p53 signaling, FoxO signaling, autophagy, and inflammatory pathways. Targeted qRT-PCR analysis revealed that many selected HDM-responsive miRNAs exhibited reduced expression following IL-4 stimulation compared with their respective untreated controls, indicating different directional responses for several candidates across the two stimulation paradigms . HDM exposure is associated with distinct cellular and EV-associated miRNA responses in the BEAS-2B bronchial epithelial model. The limited overlap between cellular and EV-associated miRNA profiles indicates that specific miRNAs are present at different levels in intracellular and EV compartments. In addition, several HDM-responsive miRNAs exhibited divergent responses following IL-4 stimulation, supporting context-dependent regulation by allergen and cytokine signaling. These findings identify EV-associated miRNAs as candidates for future mechanistic studies in the context of epithelial intercellular communication and allergic airway inflammation.

CellsVol. 15(19)
University of Kansas Medical Center (US)
Good health and well-being
Openalex Percentile: Top 19%
Extracellular vesicles in disease
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