From
Dr. Alexander Chiu
Altered Sinonasal Ciliary Dynamics in Chronic Rhinosinusitis
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Read the article on journals.sagepub.com ↗Article · Jun 2026 · 1 min read
In brief
In brief
This study reveals that chronic rhinosinusitis patients exhibit impaired ciliary response to stimulation despite normal baseline ciliary beat frequency. While healthy sinonasal tissue showed 50-70% increase in ciliary activity when stimulated with ATP, CRS patients demonstrated minimal response, suggesting defective dynamic regulation rather than baseline dysfunction.
Written by the GCMD Library team from the article.
Background Although multiple etiologies contribute to the development of rhinosinusitis, a common pathophysiological sequelae is ineffective sinonasal mucociliary clearance, resulting in stasis of sinonasal secretions, with subsequent infection, and persistent inflammation. The respiratory cilia beat continually at a basal rate, while during times of stress, such as exercise or infection, ciliary beat frequency (CBF) increases, accelerating mucus clearance. Previous investigations have led to conflicting results with some authors reporting decreased CBF while others have found normal values of CBF in patients with chronic rhinosinusitis (CRS). Additionally, these studies have only analyzed basal CBF. The goal of this study was to compare the basal as well as the stimulated sinonasal CBF in patients with CRS versus controls. Methods A dual temperature controlled perfusion chamber, differential interference contrast microscopy, and high-speed digital video were used to analyze both basal and adenosine triphosphate (100 μM)–stimulated CBF in human sinonasal mucosal explants. Results Although no difference in basal CBF was detected between control and CRS patients, a marked difference in stimulated CBF was noted. Exogenously applied adenosine triphosphate resulted in a 50–70% increase of CBF in control tissue with a minimally observed CBF increase in explants from CRS patients. Conclusion Dynamic regulation of respiratory ciliary activity is critical for the respiratory epitheliu
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