Intestinal Bacteria

Intestinal bacteria are microorganisms that inhabit the gastrointestinal tract, where they form a complex microbial community essential to animal biology and health. They break down dietary components that human enzymes cannot digest, especially complex carbohydrates, through fermentation that produces metabolites such as short-chain fatty acids; they also interact with the intestinal lining and immune system. These activities support nutrient processing, contribute to vitamin production, help maintain the gut barrier, and limit pathogen colonization. Studying intestinal bacteria helps researchers understand digestion, host-microbe interactions, and how disruptions in microbial composition, known as dysbiosis, may influence disease and therapeutic development.

Intestinal Bacteria - Related Videos

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JoVE EoE - Bacterial Growth and Techniques

Isolation and Culture of Clostridioides difficile Bacteria from Larval Zebrafish Intestine

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2025

Source: Li, J., et. al., Development of a Larval Zebrafish Infection Model for Clostridioides difficile. J. Vis. Exp. (2020)This video demonstrates the isolation and culturing of Clostridioides difficile bacteria from the intestine of larval zebrafish. The infected intestine is dissected, homogenized, and incubated in selective anaerobic media containing antibiotics. These conditions suppress competing microbes and promote the growth of viable cells.

Fluorescence In Situ Hybridization of Gut Bacteria in Mouse Intestinal Sections

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2026

Source: Ng, K. M., Tropini, C. Visualization of Gut Microbiota-host Interactions via Fluorescence In Situ Hybridization, Lectin Staining, and Imaging. J. Vis. Exp. (2021).This video demonstrates the procedure of fluorescence in situ hybridization (FISH) to stain gut microbiota within mouse intestinal tissue by hybridizing fluorescent probes to bacterial rRNA (ribosomal ribonucleic acid) and counterstaining the host structures for microscopic analysis.

Localized Delivery of Bacteria into the Intestinal Lumen of a Zebrafish Larva Using Microinjection

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2025

Source: Li, J. et al. Development of a Larval Zebrafish Infection Model for Clostridioides difficile. J. Vis. Exp. (2020)This video demonstrates the microinjection-based delivery of fluorescently labeled Clostridioides difficile into the intestinal lumen of an anesthetized zebrafish larva. It outlines the steps involved in larval preparation, bacterial injection, and fluorescence microscopy–based confirmation of bacterial localization within the intestine.

An Assay to Quantify the Binding of Human Norovirus VLPs to Intestinal Bacteria

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2025

This video demonstrates an assay for quantifying human norovirus virus-like particles (VLPs) binding to human intestinal bacteria. The bacterial suspensions are mixed with the VLPs and incubated to allow the formation of VLP-bacteria complexes. The complexes are then labeled with fluorophore-tagged VLP-specific antibodies, followed by flow cytometry-based visualization and quantification to identify the percentage of VLP-bound bacteria.

Modeling Intestinal Infection in Zebrafish Larvae Using Foodborne Bacteria

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2026

Source: Flores, E., et al. Using the Protozoan Paramecium caudatum as a Vehicle for Food-borne Infections in Zebrafish Larvae. J. Vis. Exp. (2019).This video demonstrates the method of establishing a foodborne bacterial intestinal infection model in zebrafish larvae by feeding them paramecia infected with fluorescent E. coli.

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