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Updated: Jan 20, 2026

Bacterial Endophthalmitis Mouse Model: A Method for Generating Bacterial Endophthalmitis via Intravitreal Injection of Bacterial Suspension into Eye of Mouse
S-layer Impacts the Virulence of Bacillus in Endophthalmitis
Md Huzzatul Mursalin1, Phillip S Coburn2,3, Erin Livingston1
1Department of Microbiology and Immunology, University of Oklahoma Health Sciences Center, Oklahoma City, Oklahoma, United States.
Purpose:
Bacillus causes a sight-threating infection of the posterior segment of the eye. The robust intraocular inflammatory response in this disease is likely activated via host innate receptor interactions with components of the Bacillus cell envelope. S-layer proteins (SLPs) of some Gram-positive pathogens contribute to the pathogenesis of certain infections. The potential contributions of SLPs in eye infection pathogenesis have not been considered. Here, we explored the role of a Bacillus SLP (SlpA) in endophthalmitis pathogenesis.
Methods:
The phenotypes and infectivity of wild-type (WT) and S-layer deficient (ΔslpA) Bacillus thuringiensis were compared. Experimental endophthalmitis was induced in C57BL/6J mice by intravitreally injecting 100-CFU WT or ΔslpA B. thuringiensis. Infected eyes were analyzed by bacterial counts, retinal function analysis, histology, and inflammatory cell influx. SLP-induced inflammation was also analyzed in vitro. Muller cells (MIO-M1) were treated with purified SLP. Nuclear factor-κB (NF-κB) DNA binding was measured by ELISA and expression of proinflammatory mediators from Muller cells was measured by RT-qPCR.
Results:
Tested phenotypes of WT and ΔslpA B. thuringiensis were similar, with the exception of absence of the S-layer in the ΔslpA mutant. Intraocular growth of WT and ΔslpA B. thuringiensis was also similar. However, eyes infected with the ΔslpA mutant had significantly reduced inflammatory cell influx, less inflammatory damage to the eyes, and significant retention of retinal function compared with WT-infected eyes. SLP was also a potent stimulator of the NF-κB pathway and induced the expression of proinflammatory mediators (IL6, TNFα, CCL2, and CXCL-1) in human retinal Muller cells.
Conclusions:
Taken together, our results suggest that SlpA contributes to the pathogenesis of Bacillus endophthalmitis, potentially by triggering innate inflammatory pathways in the retina.
Insights
Bacillus S-layer protein A (SlpA) significantly worsens eye infections by triggering inflammation. Removing SlpA reduces damage and preserves retinal function in experimental endophthalmitis.
Area of Science:
- Ophthalmology
- Microbiology
- Immunology
Background:
- Bacillus species cause severe posterior segment eye infections.
- Intraocular inflammation is a key feature, likely driven by bacterial cell envelope components.
- S-layer proteins (SLPs) are implicated in pathogen virulence but their role in ocular infections is unknown.
Purpose of the Study:
- To investigate the role of Bacillus S-layer protein A (SlpA) in the pathogenesis of bacterial endophthalmitis.
- To determine if SlpA contributes to intraocular inflammation and retinal damage.
Main Methods:
- Compared wild-type (WT) and S-layer deficient (ΔslpA) Bacillus thuringiensis in a mouse model of endophthalmitis.
- Assessed bacterial load, retinal function, histology, and inflammatory cell infiltration.
- Investigated SLP-induced inflammation in vitro using Muller cells, measuring NF-κB activation and pro-inflammatory mediator expression.
Main Results:
- ΔslpA mutant showed reduced inflammatory cell influx and less ocular damage compared to WT.
- Retinal function was significantly better preserved in eyes infected with the ΔslpA mutant.
- Purified SLP activated NF-κB and upregulated pro-inflammatory mediators (IL6, TNFα, CCL2, CXCL-1) in Muller cells.
Conclusions:
- Bacillus SlpA contributes to endophthalmitis pathogenesis.
- SlpA likely exacerbates infection by activating innate inflammatory pathways within the retina.
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