Pathogen-induced Vacuoles

Pathogen-induced vacuoles are membrane-bound compartments that pathogens form or remodel inside host cells during infection, enabling them to survive, replicate, or interact with cellular defenses. Pathogen effectors can alter membrane trafficking, cytoskeletal dynamics, and organelle interactions, redirecting host membranes and nutrients while helping the pathogen avoid antimicrobial conditions. Studying these vacuoles clarifies how intracellular pathogens manipulate host-cell biology and how cells detect and respond to infection. Microscopy, molecular biology, and cell-based infection models help characterize vacuole formation and maturation, supporting research into virulence mechanisms, host-pathogen interactions, and potential antimicrobial strategies.

Pathogen-induced Vacuoles - Related Videos

Research

JoVE Journal - Immunology and Infection

Purification of Pathogen Vacuoles from Legionella-infected Phagocytes

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Cited by 5 •

2012

This article describes a method for the isolation and purification of intact Legionella-containing vacuoles (LCVs) from amoeba and macrophages. The two-step protocol comprises LCV enrichment by immuno-magnetic separation using an antibody against a bacterial LCV marker and further purification by density gradient centrifugation.

Muscle Necrosis Assay in C. elegans Induced by a Pathogenic Aeromonas Strain

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2026

Source: Chen, Y. et. al., Evaluating Virulence and Pathogenesis of Aeromonas Infection in a Caenorhabditis elegans Model. J. Vis. Exp. (2018)This video demonstrates a muscle necrosis assay in C. elegans (Caenorhabditis elegans) using pathogenic Aeromonas strains. By feeding green fluorescent protein (GFP)-expressing worms on Aeromonas-seeded plates, the assay models bacterial infection and reveals tissue damage through fluorescence imaging. The progressive loss of muscle structure and GFP...

Visualizing Pathogen-Induced Oxidative Stress in C. elegans Using GFP-Tagged SKN-1

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2026

Source: Naji, A., et al. Studying Oxidative Stress Caused by the Mitis Group Streptococci in Caenorhabditis elegans. J. Vis. Exp. (2019)This video demonstrates the use of green fluorescent protein-tagged SKN-1 in C. elegans to monitor oxidative stress by tracking green fluorescence. Worms exposed to S. gordonii show strong nuclear fluorescence, confirming pathogen-induced stress, while those fed E. coli display diffuse green fluorescence in the cytoplasm, indicating minimal SKN-1 activation.

Assessing Pathogenic Bacteria–Induced Mortality in C. elegans Larvae

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2025

Source: Anderson, Q. L., et al. A High-throughput, High-content, Liquid-based C. elegans Pathosystem. J. Vis. Exp. (2018)The video demonstrates a liquid-based assay where genetically modified C. elegans larvae are exposed to pathogenic bacteria in a microplate. Bacterial toxins secreted into the medium induce host stress and death. A fluorescent dye stains dead worms, allowing imaging-based quantification of mortality to assess genetic susceptibility or resistance.

A Mouse Model for Pathogen-induced Chronic Inflammation at Local and Systemic Sites

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Cited by 15 •

2014

Animal models have proven to be invaluable tools in defining host and pathogen specific mechanisms that contribute to the development of chronic inflammation. Here we describe a mouse model of oral infection with the human pathogen Porphyromonas gingivalis and detail methodologies to assess the progression of inflammation at local and systemic sites.

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