Amoeba Host Cells

Amoeba host cells are free-living, single-celled organisms that can harbor and support the persistence or replication of other microorganisms, including bacteria and viruses. They acquire potential symbionts and pathogens through phagocytosis, engulfing particles into membrane-bound phagosomes that normally mature and fuse with lysosomes for digestion; organisms that resist this process can survive inside the amoeba. Studying these host–microbe interactions helps explain environmental transmission, intracellular survival, and the evolution of microbial traits. Amoeba host cells also provide useful biological models for investigating pathogen behavior, cellular defense mechanisms, and relationships between environmental microbes and human health.

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JoVE EoE - Bacterial Pathogenesis and Host Interactions

Detecting Bacterial Virulence Using Amoeba as a Host System

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2026

Source: Dubois, V., et al. Identification of Virulence Markers of Mycobacterium abscessus for Intracellular Replication in Phagocytes. J. Vis. Exp. (2018)This video demonstrates the procedure of co-culturing amoebae with mutant bacterial strains to evaluate their intracellular survival and identify virulence markers through differences in colony counts.

Amoeba-Based Enrichment of Giant Viruses from an Environmental Water Sample

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2026

Source: Bou Khalil, J. Y.,et al. A Rapid Strategy for the Isolation of New Faustoviruses from Environmental Samples Using Vermamoeba vermiformis. J. Vis. Exp. (2016)This video demonstrates the enrichment of giant viruses from an environmental water sample using amoeba-based co-culture to enable downstream detection and analysis.

Isolation of a Single Giant Virus from a Mixed Viral Population Using Amoebae

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2026

Source: Sahmi-Bounsiar, D. et al. Single Cell Micro-aspiration as an Alternative Strategy to Fluorescence-activated Cell Sorting for Giant Virus Mixture Separation. J. Vis. Exp. (2019)This video demonstrates single-cell micro-aspiration to isolate and expand a single giant virus population from a mixed viral population using amoebae as host cells.

Transfection of Wild-Type Amoeba via Electroporation with Bacterial Feeding Support

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2025

Source: Paschke, P., et al. Genetic Engineering of Dictyostelium discoideum Cells Based on Selection and Growth on Bacteria. J. Vis. Exp. (2019).This video demonstrates the procedure for introducing a plasmid carrying a target gene into amoeba cells via electroporation, followed by recovery in a bacterial supplement to enable efficient gene delivery in wild-type amoeba.

Extracting Host Cell Lysate from Infected Host Cells Cultured in a Permeable Membrane System

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2025

This video demonstrates a permeable membrane insert system to investigate the impact of bacterial toxins on host cells in a controlled and isolated manner. This approach allows for the selective exposure of the cells to the toxins while maintaining a physical separation that mimics the natural host-pathogen interaction.

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