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Eosinophil-derived COX-2 protects against experimental colitis through the PGE2–IL-22 axis

GSE328526 Mus musculus Expression profiling by high throughput sequencing 4 samples Submitted 2026/04/23 Platform GPL34290
Summary
Inflammatory bowel disease (IBD) is driven by a breakdown in immune regulation and epithelial barrier function, yet the contribution of eosinophils to this process has remained poorly defined and controversial. While eosinophils infiltrate the intestinal mucosa during both flares and remission, their role in shaping disease outcomes is unclear. Our RNA-seq analyses of colonic eosinophils isolated from dextran sulfate sodium (DSS)-treated mice revealed a significant upregulation of cyclooxygenase (COX)-2 (gene name, Ptgs2). Eosinophil-specific deletion of COX-2 (Ptgs2fl/fleoCre+/−) reduced IL-22 production and exacerbated DSS- and trinitrobenzene sulfonic acid (TNBS)-induced colitis, characterized by greater weight loss, higher disease activity, colon shortening, and epithelial injury. Administration of recombinant IL-22 reversed these phenotypes. Mechanistically, eosinophil-derived COX-2 enhanced IL-22 production by type 3 Innate lymphoid cells (ILC3s) through prostaglandin E2 (PGE2) signaling. Consistently, Ptgs2fl/fleoCre+/− mice exhibited reduced colonic PGE2 levels, while PGE2 analog treatment restored IL-22 production and mucosal protection. Our findings identify eosinophil-derived COX-2 and PGE2 as a critical regulator of IL-22 production during colitis, uncovering a eosinophil–ILC3 cross talk that safeguards the intestinal barrier and represents a promising therapeutic target in IBD.
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Also filed as BioProject PRJNA1455599 and SRA study SRP693269. Searching any of these in the dataset finder brings you back here.

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