Intracellular Bacterial Survival

Intracellular bacterial survival is the ability of bacterial pathogens to persist and replicate within host cells despite antimicrobial defenses, making it a central process in infectious disease biology. After entry by phagocytosis or other uptake pathways, bacteria can withstand acidic and oxidative stress, alter phagosome maturation, escape into the cytosol, or obtain nutrients while adapting gene expression to the intracellular environment. These strategies can promote chronic infection, conceal bacteria from circulating immune factors, and reduce antibiotic effectiveness. Studying intracellular survival helps researchers define virulence mechanisms, develop host-directed or antimicrobial therapies, and design experimental models for infection and vaccine research.

Intracellular Bacterial Survival - Related Videos

Research

JoVE EoE - Bacterial Pathogenesis and Host Interactions

Assessing the Survival of a Bacterial Pathogen in Mouse Peritoneal Macrophages

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2026

Source: Zhang, C. et al. Development and Assessment of Intracellular Infection Models for Staphylococcus aureus. J. Vis. Exp. (2025)This video demonstrates the quantification of intracellular survival of a methicillin-resistant bacterial pathogen in mouse peritoneal macrophages. It outlines the steps involved in infection, extracellular bacterial clearance, host cell lysis, and colony enumeration to assess bacterial survival within host macrophages.

An ATP Utilization Assay for Determining Bacterial Survival Under Antibiotics Treatment

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2025

This video describes the simple ATP-measuring assay using luciferase glow reagent. This assay is used to quantify Neisseria gonorrhoeae survival after treatment with ceftriaxone.

Research

JoVE Journal - Immunology and Infection
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Infection of Zebrafish Embryos with Intracellular Bacterial Pathogens

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Cited by 234 •

2012

Transparent zebrafish embryos have proved useful model hosts to visualize and functionally study interactions between innate immune cells and intracellular bacterial pathogens, such as Salmonella typhimurium and Mycobacterium marinum. Micro-injection of bacteria and multi-color fluorescence imaging are essential techniques involved in the application of zebrafish embryo infection models.

Visualizing Intracellular Bacterial Communities in an Infected Mouse Bladder

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2026

Source: Conover, M. S. et. al., Establishment and Characterization of UTI and CAUTI in a Mouse Model. J. Vis. Exp. (2015)This video demonstrates the detection of intracellular bacterial communities (IBCs) in mouse bladder tissue infected with β-galactosidase-expressing Escherichia coli. Following tissue fixation, permeabilization, and staining with X-gal, IBCs appear as blue puncta under a dissecting microscope, confirming bacterial invasion during urinary tract infection.

Assessing Intracellular Bacterial Persistence and Antibiotic Resistance in a Mouse Model

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2026

Source: Zhang, C., et al., Development and Assessment of Intracellular Infection Models for Staphylococcus aureus. J. Vis. Exp. (2025)The video demonstrates the isolation of kidneys containing Staphylococcus aureus-infected macrophages, followed by tissue homogenization to release intracellular bacteria. It quantifies bacterial persistence within macrophages in control and antibiotic-treated groups by counting colony-forming units.

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