Bead-bacteria Complexes

Bead-bacteria complexes are laboratory preparations in which bacterial cells are associated with microscopic beads to create standardized particles for immunology and infection studies. Their formation typically relies on physical adsorption or chemical coupling, allowing beads to carry bacterial surface components while providing a consistent size and particulate structure; complexes can then be characterized for stability and bacterial presentation. Researchers use these constructs to examine immune-cell recognition, uptake, phagocytosis, and inflammatory responses under controlled conditions. By reducing variability in particle size and exposure, bead-bacteria complexes support reproducible in vitro assays and help clarify how host cells respond to bacterial surfaces.

Bead-bacteria Complexes - Related Videos

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JoVE EoE - Bacterial Growth and Techniques

Assessing Bacteria-Host Cell Interactions Using Biomimetic Beads

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2025

Source: Stones, D. H., et al. Biomimetic Materials to Characterize Bacteria-host Interactions. J. Vis. Exp. (2015)This video demonstrates the use of bacteriomimetic beads to quantify bacterial adhesion to host epithelial cells under competitive conditions. It outlines the steps involved in treating the cells, lysing them, and plating serial dilutions to measure colony-forming units.

Isolation of Phagosomes Containing Magnetic Bead-Tagged Bacteria from Infected Macrophages

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2026

Source: Gutiérrez, S., et al., Isolation of Salmonella typhimurium-containing Phagosomes from Macrophages. J. Vis. Exp. (2017)This video demonstrates the magnetic isolation of phagosomes containing biotin–streptavidin bead–coated bacteria from infected macrophages. The protocol includes buffer treatments, cell disruption, magnetic separation, and washing to yield purified phagosomes for analysis.

Multiplex Detection of Bacteria in Complex Clinical and Environmental Samples using Oligonucleotide-coupled Fluorescent Microspheres

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Cited by 5 •

2011

We describe a multiplex method for the detection of microorganisms within a sample using oligonucleotide-coupled fluorescent beads. Amplicon from all organisms within a sample is hybridized to a panel of probe-coupled beads. A Luminex or Bio-Plex instrument is used to query each bead for bead type and hybridization signal.

3D Culture of Porcine COCs: A Procedure to Encapsulate Cumulus Oocyte Complexes in Fibrin-alginate Polymer Hydrogel Beads

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2025

This video describes the protocols for encapsulating porcine cumulus-oocyte complexes (COCs) in fibrin-alginate beads to establish a 3D culture. This in-vitro maturation system maintains normal cell-to-cell communication, ensuring oocyte maturation and retaining viability.

Complementation of Splicing Activity by a Galectin-3 - U1 snRNP Complex on Beads

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2020

This article describes the experimental procedures for (a) depletion of U1 snRNP from nuclear extracts, with concomitant loss of splicing activity; and (b) reconstitution of splicing activity in the U1-depleted extract by galectin-3 - U1 snRNP particles bound to beads covalently coupled with anti-galectin-3 antibodies.

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