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Clinical Trial Summary

The goal of this laboratory study is the examine the effect of mepolizumab drug on the health and function of the cells lining the human nasal airways in vitro cell culture derived from patients with chronic rhinosinusitis with nasal polyposis. The main questions the study aims to study are: 1. To see what mepolizumab does to suppress inflammation of the human cells. 2. To see what mepolizumab does to maintain barrier integrity of epithelial cells


Clinical Trial Description

The investigators hypothesize that anti-IL5 treatment will promote epithelial cell function by inhibition of Type 1 and innate immune mediated inflammation and epithelial-mesenchymal transition resulting from IL5 induction. Aim 1. To test the hypothesis that anti-IL5 therapy results in inhibition of epithelial cell dysfunction including epithelial derived inflammatory responses and barrier dysfunction, the investigators will examine the effect of in vitro anti-IL5 mepolizumab exposure of human primary nasal epithelial cells from chronic rhinosinusitis with nasal polyposis on Type 1, Type 2 and innate immune inflammatory markers, and markers of epithelial cell barrier function. Aim 2. To examine the effect of mepolizumab to broadly modulate the expression of Type 2, Type 1, Type 3, and innate immune inflammatory gene responses in human nasal airway epithelial cells, the investigators will perform high throughput RNA sequencing on IL5 primed differentiated human primary nasal epithelial cells exposed to the presence and absence of mepolizumab in vitro cell culture which are derived from patients with chronic rhinosinusitis with nasal polyposis. These studies will provide an unbiased approach to identification of biomarkers resulting from anti-IL5 treatment. ;


Study Design


Related Conditions & MeSH terms


NCT number NCT05895929
Study type Interventional
Source Johns Hopkins University
Contact Jean Kim, MD PhD
Phone 410-550-2644
Email jeankim@jhmi.edu
Status Recruiting
Phase Early Phase 1
Start date September 5, 2023
Completion date June 2025

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