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Updated: Apr 18, 2026

Induction of Ocular Surface Inflammation and Collection of Involved Tissues
Published on: August 4, 2022
Cross-species transcriptomics identify mineralocorticoid receptor pathway overactivation as a central driver of
Linxin Zhu1, Nilufer Yesilirmak1,2,3, Daniela Rodrigues-Braz1
1Centre de Recherche des Cordeliers, INSERM, Université Paris Cité, Sorbonne Université, UMRS 1138, Team «Physiopathology of Ocular Diseases: Therapeutic Innovations», Paris, France.
Abstract:
Ocular rosacea (OR) is a chronic inflammatory disease of the ocular surface frequently associated with meibomian gland dysfunction (MGD), with limited therapeutic options and an underexplored pathophysiology. Here, we uncover the pivotal role of mineralocorticoid receptor (MR) pathway overactivation in driving MGD and OR. Analysis of eyelid tissues from OR patients revealed increased MR expression and altered local corticosteroid metabolism, associated with inflammation, fibrosis, and impaired meibocyte renewal. Using a transgenic rat model overexpressing human MR, we demonstrate that MR overactivation initiates subclinical MGD and, with aging or ultraviolet-B exposure, drives a full OR-like phenotype characterized by gland dropout, oxidative and mitochondrial stress, immune infiltration, epithelial barrier disruption, and secondary corneal damage. Cross-species transcriptomic integration of rat, human MGD, and rosacea datasets identified a conserved MR-dependent gene signature, highlighting S100A9 as a specific downstream target and biomarker of MR activation. Local pharmacological MR antagonism suppressed S100A9 expression. These findings establish MR overactivation as a unifying pathogenic driver of MGD and OR and identify MR blockade as a promising therapeutic strategy, with S100A9 as a candidate biomarker for patient stratification and treatment monitoring.
Insights
Mineralocorticoid receptor (MR) pathway overactivation drives meibomian gland dysfunction (MGD) and ocular rosacea (OR). Blocking MR shows promise for treating MGD and OR, with S100A9 as a potential biomarker.
Area of Science:
- Ophthalmology
- Dermatology
- Molecular Biology
Background:
- Ocular rosacea (OR) and meibomian gland dysfunction (MGD) are chronic inflammatory conditions with unclear pathophysiology.
- Current therapeutic options for OR and MGD are limited.
Purpose of the Study:
- To investigate the role of the mineralocorticoid receptor (MR) pathway in the pathogenesis of MGD and OR.
- To identify potential therapeutic targets and biomarkers for OR and MGD.
Main Methods:
- Analysis of human eyelid tissues from OR patients.
- Utilized a transgenic rat model overexpressing human MR.
- Cross-species transcriptomic integration of rat, human MGD, and rosacea datasets.
- Pharmacological MR antagonism.
Main Results:
- Increased MR expression and altered corticosteroid metabolism were observed in OR patient tissues.
- MR overactivation in rats induced MGD and OR-like phenotypes, including gland dropout and inflammation.
- A conserved MR-dependent gene signature was identified, with S100A9 highlighted as a downstream target and biomarker.
- Local MR antagonism reduced S100A9 expression.
Conclusions:
- MR pathway overactivation is a key pathogenic driver of MGD and OR.
- MR blockade represents a potential therapeutic strategy for these conditions.
- S100A9 may serve as a biomarker for patient stratification and treatment monitoring.
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