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RNA Sequencing and Pathways Analyses of Middle Ear Epithelia From Patients With Otitis Media
Kaleigh A Stabenau1, Michael T Zimmermann2,3, Angela Mathison2
1Department of Otolaryngology and Communication Sciences, Medical College of Wisconsin, Milwaukee, Wisconsin, U.S.A.
Objectives:
Otitis media (OM) is the most common pediatric diagnosis in the United States. However, our understanding of the molecular pathogenesis of OM remains relatively poor. Investigation of molecular pathways involved in OM may improve the understanding of this disease process and elucidate novel therapeutic targets. In this study, RNA sequencing (RNA-Seq) was used to discern cellular changes associated with OME compared to healthy middle ear epithelium (MEE).
Study Design:
Ex vivo case-control translational.
Methods:
Middle ear epithelia was collected from five pediatric patients diagnosed with OME undergoing tympanostomy tube placement and five otherwise healthy pediatric patients undergoing cochlear implantation. Specimens underwent RNA-Seq and pathways analyses.
Results:
A total of 1,292 genes exhibited differential expression in MEE from OME patients compared to controls including genes involved in inflammation, immune response to bacterial OM pathogens, mucociliary clearance, regulation of proliferation and transformation, and auditory cell differentiation. Top networks identified in OME were organismal injury and abnormalities, cell morphology, and auditory disease. Top Ingenuity canonical pathways identified were axonal guidance signaling, which contains genes associated with auditory development and disease and nicotine degradation II and III pathways. Associated upstream regulators included β-estradiol, dexamethasone, and G-protein-coupled estrogen receptor-1 (GPER1), which are associated with otoprotection or inflammation during insult.
Conclusions:
RNA-Seq demonstrates differential gene expression in MEE from patients with OME compared to healthy controls with important implications for infection susceptibility, hearing loss, and a role for tobacco exposure in the development and/or severity of OME in pediatric patients.
Level Of Evidence:
4 Laryngoscope, 131:2590-2597, 2021.
Insights
Otitis media (OM) involves significant gene expression changes in middle ear epithelium. This research highlights pathways linked to infection, hearing loss, and potential environmental factors like tobacco exposure.
Area of Science:
- Genomics and Molecular Biology
- Pediatric Otolaryngology
- Translational Research
Background:
- Otitis media (OM) is a common pediatric diagnosis with poorly understood molecular mechanisms.
- Investigating molecular pathways in OM can reveal novel therapeutic targets.
- RNA sequencing (RNA-Seq) offers a method to explore cellular changes in OM.
Purpose of the Study:
- To identify molecular differences in middle ear epithelium (MEE) between pediatric patients with otitis media with effusion (OME) and healthy controls.
- To elucidate cellular changes and molecular pathways involved in the pathogenesis of OME.
- To discover potential therapeutic targets for OME.
Main Methods:
- Ex vivo case-control translational study design.
- Collection of middle ear epithelia from pediatric OME patients and healthy controls.
- RNA sequencing (RNA-Seq) and pathway analyses of collected specimens.
Main Results:
- 1,292 genes showed differential expression in OME compared to controls.
- Key pathways involved inflammation, immune response, mucociliary clearance, and auditory cell differentiation.
- Identified upstream regulators include β-estradiol, dexamethasone, and GPER1, linked to otoprotection and inflammation.
Conclusions:
- RNA-Seq reveals significant gene expression differences in MEE from OME patients.
- Findings have implications for understanding infection susceptibility and hearing loss in pediatric OM.
- Suggests a potential role for tobacco exposure in OME development or severity.
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