From
Dr. Alexander Chiu
Reversal of Chronic Rhinosinusitis-Associated Sinonasal Ciliary Dysfunction
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Read the article on journals.sagepub.com ↗Article · Jun 2026 · 1 min read
In brief
In brief
This study examines reversible ciliary dysfunction in chronic rhinosinusitis patients, finding blunted responses to cholinergic, adrenergic, and purinergic stimulation in sinonasal tissue. Ex vivo culture experiments suggest CRS-associated ciliary impairment may be caused by local inflammatory mediators rather than inherent genetic defects, as most samples recovered normal stimulatory responses over time.
Written by the GCMD Library team from the article.
Background Although multiple etiologies contribute to the development of chronic rhinosinusitis (CRS), a common pathophysiological sequelae is ineffective sinonasal mucociliary clearance, leading to stasis of sinonasal secretions, with subsequent infection and/or persistent inflammation. Proper therapeutic intervention typically restores mucociliary activity, suggesting that the pathophysiological process(es) responsible for CRS-associated mucostasis may be reversible. We previously demonstrated a blunted response of CRS sinonasal cilia after purinergic stimulation. This study investigated whether the blunted ciliary response is unique to purinergic stimulation and addressed whether the blunted effect is primarily caused by local CRS-associated mediators or inherent genetic defects in ciliary function. Methods A dual temperature-controlled perfusion chamber, differential interference contrast microscopy, and high-speed digital video were used to analyze both basal as well as cholinergic, adrenergic, and purinergic stimulation of cilia in human sinonasal mucosal explants. Additionally, enzymically dissociated sinonasal ciliated cells were maintained ex vivo in submersion, on glass coverslips, and assessed daily for purinergic ciliary beat frequency stimulation. Results Cholinergic and adrenergic stimulation generally were blunted in mucosal explants obtained from CRS patients. Ex vivo maintenance of samples demonstrated that the majority of CRS samples developed a stimulatory
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