Bacterial Toxin Secretion

Bacterial toxin secretion is the process by which bacteria export harmful molecules that alter host cells, evade immune defenses, or support colonization during infection. Toxins move across the bacterial envelope through specialized secretion systems, including protein channels and transport complexes, with release controlled by signals such as environmental conditions or contact with host cells. In immunology and infection research, understanding these pathways clarifies how pathogens damage tissues, manipulate inflammatory responses, and cause disease. It also supports the development of vaccines, diagnostic tools, and antimicrobial strategies that block toxin production, transport, or activity.

Bacterial Toxin Secretion - Related Videos

Research

JoVE Journal - Immunology and Infection
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Implementation of a Permeable Membrane Insert-based Infection System to Study the Effects of Secreted Bacterial Toxins on Mammalian Host Cells

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Cited by 4 •

2016

Here, a method using a permeable membrane insert-based infection system to study the effects of Streptolysin S, a secreted toxin produced by Group A Streptococcus, on keratinocytes is described. This system can be readily applied to the study of other secreted bacterial proteins on various host cell types during infection.

Education

JoVE Core - Microbiology

Bacterial Toxins

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2026

Bacterial toxins are sophisticated virulence factors that enable pathogenic bacteria to interact with, invade, and damage host tissues. These toxins fall broadly into two types: protein exotoxins, which are secreted into the environment and target specific host receptors, and lipopolysaccharide endotoxins, which are structural components of the bacterial outer membrane released primarily during bacterial lysis or membrane shedding. Exotoxins generally act more selectively, binding to cell...

A Permeable Membrane Insert-Based Infection System to Study the Impact of Bacterial Toxins

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2025

This video demonstrates a permeable membrane insert-based infection system to assess the impact of secreted bacterial toxins. By eliminating direct contact between the bacterial pathogen and the host cells using a permeable membrane, this technique allows for studying the effect of toxins secreted by pathogenic bacteria on mammalian host cells.

Visualization of Bacterial Toxin Induced Responses Using Live Cell Fluorescence Microscopy

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Cited by 15 •

2012

Methods for purifying the cholesterol binding toxin streptolysin O from recombinant E. coli and visualization of toxin binding to live eukaryotic cells are described. Localized delivery of toxin induces rapid and complex changes in targeted cells revealing novel aspects of toxin biology.

Imaging InlC Secretion to Investigate Cellular Infection by the Bacterial Pathogen Listeria monocytogenes

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Cited by 7 •

2013

Listeria monocytogenes is a Gram positive bacterial pathogen frequently used as a major model for the study of intracellular parasitism. Imaging late L. monocytogenes infection stages within the context of small-interfering RNA screens allows for the global study of cellular pathways required for bacterial infection of target host cells.

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