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Updated: Feb 19, 2026

Analysis of the Epithelial Damage Produced by Entamoeba histolytica Infection
Published on: June 12, 2014
Acanthamoeba (T4) trophozoites cross the MDCK epithelium without cell damage but increase paracellular permeability
Catalina Flores-Maldonado1, Arturo González-Robles2, Lizbeth Salazar-Villatoro2
1Physiology, Biophysics and Neurosciences Department, Cinvestav-IPN, México City, Mexico.
Abstract:
Free-living amoebae of the genus Acanthamoeba are protozoa ubiquitously found in nature. Some species of the genus are potentially pathogenic for humans provoking keratitis in healthy individuals, often in contact lens wearers and opportunistic infections such as pneumonitis, fatal granulomatous encephalitis and skin infections, particularly in immunocompromised individuals. The pathogenic mechanisms of these amoebae are poorly understood, however it had been suggested that contact dependent mechanisms are important during invasion, regardless of the epithelia type, since amoebae penetrate epithelia separating tight junction (TJ). This study was undertaken to determine whether Acanthamoeba sp. (T4) damages the barrier function of the TJ in MDCK epithelial monolayers. Actin cytoskeleton staining and electron microscopy analyses were performed; paracellular permeability and TJ sealing were evaluated by apicobasolateral diffusion of ruthenium red and transepithelial resistance (TER) measurements; immunofluorescence and Western blot assays were performed to locate and estimate expression of TJ protein claudins 2 (Cldn2) and 4 (Cldn4). The results show that Acanthamoeba sp. crosses the MDCK monolayer without altering the actin cytoskeleton or the morphology of the cells. When trophozoites or conditioned medium interact with the monolayer, paracellular diffusion of ruthenium red increases. After 6 h, the amoebae, but not their conditioned medium, increase the TER, and Cldn2 is removed from the TJ, and its overall content in the cells diminishes, while Cldn4 is targeted to the TJ without changing its expression level. In conclusion Acanthamoeba (T4) crosses MDCK monolayer without damaging the cells, increasing permeability and TER through Cldn2 degradation, and redirecting Cldn4 to TJ. These results strongly suggest that contact-dependent mechanisms are relevant during amoebae invasion.
Insights
Acanthamoeba (T4) invades epithelial cells by degrading claudin-2 (Cldn2) and redirecting claudin-4 (Cldn4) to tight junctions (TJs). This study reveals contact-dependent mechanisms are key to Acanthamoeba invasion and epithelial barrier disruption.
Area of Science:
- Microbiology
- Cell Biology
- Pathogen-Host Interactions
Background:
- Acanthamoeba are protozoa causing human infections like keratitis and pneumonia.
- Pathogenic mechanisms, especially epithelial invasion via tight junctions (TJs), remain unclear.
- Contact-dependent mechanisms are hypothesized to be crucial for Acanthamoeba invasion.
Purpose of the Study:
- To investigate if Acanthamoeba sp. (T4) disrupts TJ barrier function in MDCK epithelial monolayers.
- To analyze the role of claudins (Cldn2 and Cldn4) in Acanthamoeba-induced epithelial barrier changes.
Main Methods:
- MDCK epithelial monolayers were used to study Acanthamoeba invasion.
- Actin cytoskeleton staining and electron microscopy assessed cell morphology.
- Paracellular permeability was measured using ruthenium red diffusion and transepithelial resistance (TER).
- Immunofluorescence and Western blot analyzed claudin-2 (Cldn2) and claudin-4 (Cldn4) expression and localization.
Main Results:
- Acanthamoeba sp. crossed the MDCK monolayer without altering cell morphology or actin cytoskeleton.
- Interaction with amoebae or conditioned medium increased paracellular permeability.
- Amoebae exposure led to Cldn2 removal from TJs and decreased overall Cldn2 levels.
- Cldn4 was redirected to TJs without changes in its expression level.
- TER increased after 6 hours of amoebae exposure.
Conclusions:
- Acanthamoeba (T4) invades epithelial monolayers by increasing permeability and TER.
- Invasion involves Cldn2 degradation and Cldn4 redirection to TJs.
- Contact-dependent mechanisms are critical for Acanthamoeba invasion and epithelial barrier disruption.
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