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Updated: Nov 25, 2025

Establishing a Severe Corneal Inflammation Model in Rats Based on Corneal Epithelium Curettage Combined with Corneal Sutures
Published on: November 22, 2024
Differential expression of Acanthamoeba castellanii proteins during amoebic keratitis in rats
Ana Carolina Carvalho-Silva1, Camila H Coelho2, Cecília Cirelli1
1Department of Clinical and Toxicological Analysis, Federal University of Minas Gerais, Belo Horizonte, MG, Brazil.
Abstract:
Amoebic keratitis (AK) is a sight-threatening infection characterized by a severe inflammation of the cornea, caused by the free-living protozoan of the genus Acanthamoeba. Identification of amoebic proteins involved in AK pathogenesis may help to elucidate molecular mechanisms of infection and contribute to indicate diagnostic and therapeutic targets. In this study, we evaluated changes in the expression profile of Acanthamoeba proteins triggered by the invasive process, using an approach involving two-dimensional polyacrylamide gel electrophoresis (2DE PAGE), followed by mass spectrometry identification (ESI-IT-TOF LC-MSn). AK was induced by intrastromal inoculation in Wistar rats, using trophozoites from a T4 genotype, human case-derived A. castellanii strain under prolonged axenic culture. Cultures re-isolated from the lesions after two successive passages in the animals were used as biological triplicate for proteomic experiments. Analysis of the protein profile comparing long-term and re-isolated cultures indicated 62 significant spots, from which 27 proteins could be identified in the Acanthamoeba proteome database. Five of them (Serpin, Carboxypeptidase A1, Hypothetical protein, Calponin domain-containing protein, aldo/keto reductase) were exclusively found in the re-isolated trophozoites. Our analysis also revealed that a concerted modulation of several biochemical pathways is triggered when A. castellanii switches from a free-living style to a parasitic mode, including energetic metabolism, proteolytic activity, control of gene expression, protein degradation and methylation of DNA, which may be also involved in gain of virulence in an animal model of AK.
Insights
This study identified key Acanthamoeba proteins that change during invasive infections, offering potential targets for diagnosing and treating amoebic keratitis (AK). These findings shed light on the molecular basis of AK pathogenesis.
Area of Science:
- Microbiology
- Proteomics
- Ophthalmology
Background:
- Amoebic keratitis (AK) is a severe corneal infection caused by Acanthamoeba.
- Identifying pathogen proteins is crucial for understanding AK and developing treatments.
Purpose of the Study:
- To analyze changes in Acanthamoeba protein expression during corneal invasion.
- To identify potential diagnostic and therapeutic targets for AK.
Main Methods:
- Proteomic analysis using 2D PAGE and LC-MSn.
- Induction of AK in Wistar rats with Acanthamoeba castellanii.
- Comparison of protein profiles between axenic and re-isolated trophozoites.
Main Results:
- 27 Acanthamoeba proteins were identified.
- Five proteins (Serpin, Carboxypeptidase A1, Hypothetical protein, Calponin, aldo/keto reductase) were exclusively found in invasive trophozoites.
- Invasive Acanthamoeba showed altered pathways in metabolism, proteolysis, gene expression, and DNA methylation.
Conclusions:
- Acanthamoeba modifies its protein expression and biochemical pathways during host invasion.
- These identified proteins and pathways represent potential targets for AK diagnostics and therapeutics.

