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New research · Ophthalmology
Experimental eye research · 2d
Animal / preclinicalExperimental eye research · 2026

Single-cell transcriptomic profiling reveals functional heterogeneity and regulatory programs of neutrophils in experimental autoimmune uveitis.

Zhen Yang, Lishuai Xu, Junming Miao
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OphthalmologyAnimal / preclinical

Most retinal neutrophils in autoimmune uveitis mice show a pro-inflammatory activation state

Single-cell transcriptomic profiling reveals functional heterogeneity and regulatory programs of neutrophils in experimental autoimmune uveitis.

Zhen Yang … Junming Miao
Experimental eye research · 2026
Background

Autoimmune uveitis (autoimmune uveitis) is a vision-threatening ocular autoimmune disease.

Methods

This study employed single-cell RNA sequencing (scRNA-seq) to systematically characterize neutrophils in the retina of experimental autoimmune uveitis (experimental autoimmune uveitis) mice and to elucidate their regulatory mechanisms. scRNA-seq data were obtained from the mouse retinal samples of experimental autoimmune uveitis and subjected to preprocessing, cell type annotation, neutrophil activation states analysis, differential gene expression analysis, functional enrichment, and transcription factor network inference, enabling a comprehensive exploration of neutrophil heterogeneity and functional features.

Results

over three-quarters of retinal neutrophils were locked in an inflammation-driving state

Pro-inflammatory
76.7%
Anti-inflammatory/repa
23.3%
More results

Experimental autoimmune uveitis retinas exhibited markedly enhanced immune cell infiltration, with a significant increase in neutrophil proportion.

Functional modules displayed a coordinated regulatory pattern.

More results

Transcription factor network analysis identified upregulated factors such as Jun and downregulated factors such as Stat6, indicating their respective regulatory roles in pro-inflammatory and anti-inflammatory activation states.

Several downstream target genes, including Arpp19 and Lyrm2, were co-regulated by multiple transcription factors.

“
Conclusion · 1 of 2

This study reveals the heterogeneous features and regulatory networks of retinal neutrophils in experimental autoimmune uveitis mice, clarifies differences between these neutrophil activation states, and identifies key regulatory molecules.

Conclusion · 2 of 2

These findings provide a theoretical foundation for understanding the pathogenesis of uveitis and for the development of precise therapeutic targets.

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