Bacterial Immunity

Bacterial immunity refers to the molecular defenses bacteria use to recognize and eliminate threats, especially bacteriophages and foreign genetic material. These systems include restriction-modification enzymes that cut unrecognized DNA, CRISPR-Cas pathways that store fragments of past invaders and guide sequence-specific cleavage, and abortive infection mechanisms that limit pathogen replication by sacrificing the infected cell. Studying bacterial immunity reveals how microorganisms evolve under viral pressure and exchange genetic information. Its principles support research on antibiotic resistance, microbial ecology, genome engineering, and the development of phage-based therapies and CRISPR technologies.

Bacterial Immunity - Related Videos

Research

JoVE Journal - Immunology and Infection
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Systemic Bacterial Infection and Immune Defense Phenotypes in Drosophila Melanogaster

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Cited by 69 •

2015

Drosophila melanogaster is an outstanding model organism for studying innate immune systems and the physiological consequences of infection and disease. This protocol describes how to deliver robust and quantitatively repeatable bacterial infections to D. melanogaster, and how to subsequently measure infection severity and quantify the host immune response.

Research

JoVE EoE - Immune Response

Evaluation of Vaccine-Induced Immunity Against Bacterial Infection in a Mouse Model

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2025

In this video, we describe a protocol to test the efficacy of an acellular pertussis vaccine against Bordetella pertussis infection in mice. Post-vaccination, the mice were subjected to infection, and their tissue homogenate was cultured to analyze the bacterial colonies as a readout of the vaccine-induced protective immunity.

Intraperitoneal Injection of Bacterial Lipopolysaccharide in Mice to Study Systemic Immune Responses

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2026

Source: Radulovic, K., et al. Injections of Lipopolysaccharide into Mice to Mimic Entrance of Microbial-derived Products After Intestinal Barrier Breach. J. Vis. Exp. (2018)This video demonstrates a step-by-step procedure for injecting lipopolysaccharide (LPS) into mice intraperitoneally to induce systemic inflammation.

Measuring Bacterial Load and Immune Responses in Mice Infected with Listeria monocytogenes

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Cited by 39 •

2011

Listeria monocytogenes is a model organism for studying immune responses and genetic susceptibility to intracellular bacteria in mice. This method enables one to measure bacterial load and generate single-cell suspensions of the liver and spleen from mice for FACS analysis to determine changes in immune cells due to Listeria infection.

A Murine Skin Wound Infection Model to Study the Immune Response against a Bacterial Pathogen

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2025

This video demonstrates a technique to generate a murine model of skin wound infection. Upon infecting mice — engineered to express a fluorescent protein in neutrophils — with a genetically modified bioluminescent Staphylococcus aureus — a pathogenic bacteria. The bacterial burden at the infection site and the neutrophil recruitment dynamics can be studied using whole animal imaging.

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