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Morphological Features and In Vitro Cytopathic Effect of Acanthamoeba griffini Trophozoites Isolated from a Clinical
Arturo González-Robles1, Lizbeth Salazar-Villatoro1, Maritza Omaña-Molina2
1Department of Infectomics and Molecular Pathogenesis, Center for Research and Advanced Studies, CINVESTAV-IPN, Avenida Instituto Politécnico Nacional 2508, San Pedro Zacatenco, 07360 Mexico, DF, Mexico.
Abstract:
Light and transmission electron microscopy observations are reported on the structure and in vitro cytopathic effect of Acanthamoeba griffini trophozoites isolated from a clinical case. Live trophozoites were moderately active with a remarkable pleomorphism which changed from ovoid to quite elongated shapes. When moving, amoebae formed cytoplasmic projections such as wide lamellae and acanthopodia of diverse size and thickness which contain a significant amount of actin. Ultrastructurally, the cytoplasm showed the main organelles found in other free-living amoebae. Coincubation of trophozoites with MDCK cell monolayers resulted in a local damage to target cells after 24 h of interaction, suggesting that the cytopathic effect is contact-dependent. By transmission electron microscopy, amoebae appeared to engulf small portions of the MDCK cells; however, the cells that were not in contact with trophozoites had an unaltered morphology. When epithelial monolayers were incubated with conditioned medium for 24 h, small areas of cell injury were also observed. The phylogenetical analysis as well as the sequencing of the acquired amplified product for the DF3 region of the amoebae isolate confirmed that it belongs to genotype T3, which includes other pathogenic amoebae; besides the activity of two drugs currently used against Acanthamoeba was tested on A. griffini.
Insights
Acanthamoeba griffini trophozoites cause contact-dependent cell damage in vitro. This study details their structure, cytopathic effects, and identifies the isolate as pathogenic genotype T3.
Area of Science:
- Microbiology
- Cell Biology
- Parasitology
Background:
- Acanthamoeba species are opportunistic pathogens causing serious infections.
- Understanding the cytopathic mechanisms of Acanthamoeba is crucial for developing effective treatments.
Purpose of the Study:
- To investigate the structure and in vitro cytopathic effect of Acanthamoeba griffini from a clinical case.
- To determine the genotype and assess drug susceptibility of the isolate.
Main Methods:
- Light and transmission electron microscopy were used to examine Acanthamoeba griffini trophozoites.
- Co-incubation with Madin-Darby Canine Kidney (MDCK) cell monolayers assessed cytopathic effects.
- Phylogenetic analysis and DF3 gene sequencing identified the genotype.
Main Results:
- Acanthamoeba griffini trophozoites exhibited pleomorphism and formed cytoplasmic projections.
- Contact-dependent cytopathic effects on MDCK cells were observed within 24 hours.
- The isolate was confirmed as genotype T3, a group including pathogenic amoebae.
Conclusions:
- Acanthamoeba griffini demonstrates contact-dependent cytopathic activity against epithelial cells.
- The T3 genotype classification suggests potential pathogenicity.
- Further research into drug activity against this isolate is warranted.
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