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Updated: Mar 29, 2026

Author Spotlight: Studying Behavior of Acanthamoeba to Develop Targeted Strategies for Preventing Acanthamoeba Keratitis
Published on: September 20, 2024
Acanthamoeba castellanii: Non-Steroidal Anti-Inflammatory Drugs Affect Adhesion, Motility, and Encystment, Suggesting
Verónica I Hernández-Ramírez1, Hugo Varela-Rodríguez2, Luis Varela-Rodríguez3
1Departamento de Infectómica y Patogénesis Molecular, Cinvestav, Ciudad de México 07360, Mexico.
Abstract:
Acanthamoeba castellanii, an opportunistic free-living amoeba, causes severe infections including Acanthamoeba keratitis. This exploratory study evaluated whether three non-steroidal anti-inflammatory drugs (NSAIDs)-acetylsalicylic acid, ibuprofen, and diclofenac (100 µM)-modulate pathogenicity-related processes in A. castellanii and explored the involvement of a gp63-like protein during encystment and adhesion. Trophozoites were continuously exposed to each drug and analyzed for adhesion, migration on host-derived discontinuous brain micropatterns, encystment efficiency, and parasite-induced cytoskeletal remodeling in MDCK epithelial cells. In silico docking was performed to assess potential drug-protein interactions. Drug exposure reduced adhesion with maximal inhibition at 60 min. After 1 h, migration decreased by 49%, 64%, and 38%, and encystment was reduced by 50%, 85%, and up to 90%, respectively, in cultures treated with acetylsalicylic acid, ibuprofen, and diclofenac. Co-incubation with untreated trophozoites lowered actin fluorescence to approximately 50%, whereas drug-treated co-cultures preserved fluorescence near control levels. Colocalization analysis showed increased spatial overlap between gp63-like protein and F-actin in cysts (~40%) and migrating trophozoites (~20%) compared with non-stimulated forms (~3.8%). Collectively, these findings suggest that NSAID-sensitive pathways influence host interaction, migration, and encystment in A. castellanii and allow for the proposal of gp63-like protein as a putative molecular component of the NSAIDs sensitive pathways.
Insights
Non-steroidal anti-inflammatory drugs (NSAIDs) like aspirin, ibuprofen, and diclofenac significantly inhibit Acanthamoeba castellanii pathogenicity. These drugs reduce parasite adhesion, migration, and encystment, suggesting NSAID-sensitive pathways are crucial for infection processes.
Area of Science:
- Microbiology
- Parasitology
- Pharmacology
Background:
- Acanthamoeba castellanii is an opportunistic pathogen causing severe infections like Acanthamoeba keratitis.
- Understanding host-pathogen interactions is critical for developing effective treatments.
Purpose of the Study:
- To investigate the effect of three non-steroidal anti-inflammatory drugs (NSAIDs) on Acanthamoeba castellanii pathogenicity.
- To explore the role of a gp63-like protein in NSAID-modulated encystment and adhesion.
Main Methods:
- Trophozoites were exposed to acetylsalicylic acid, ibuprofen, and diclofenac (100 µM).
- Assays included adhesion, migration on brain micropatterns, encystment efficiency, and parasite-induced cytoskeletal remodeling.
- In silico docking was used to predict drug-protein interactions.
Main Results:
- NSAID exposure reduced parasite adhesion, migration, and encystment.
- Diclofenac showed the highest inhibition of encystment (up to 90%).
- NSAIDs preserved actin fluorescence in co-cultures and indicated a role for gp63-like protein in NSAID-sensitive pathways.
Conclusions:
- NSAID-sensitive pathways significantly influence host interaction, migration, and encystment in Acanthamoeba castellanii.
- A gp63-like protein is proposed as a molecular component involved in these NSAID-sensitive pathways.
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