Fluorescent Bead Embedding

Fluorescent bead embedding is a bioengineering technique that places light-emitting microspheres within a material or biological construct to visualize its structure and mechanical behavior. During imaging, the beads act as trackable markers: their fluorescence enables measurement of position changes as the surrounding matrix deforms, responds to applied forces, or undergoes remodeling. Researchers use these measurements to map strain, characterize hydrogel and tissue mechanics, monitor cell-generated forces, and evaluate engineered scaffolds. By linking microscopic bead motion to material behavior, the method supports quantitative studies of biomaterials, mechanobiology, and the design of more physiologically relevant tissue-engineering systems.

Fluorescent Bead Embedding - Related Videos

Research

JoVE Journal - Immunology and Infection

Antibody Labeling with Fluorescent Dyes Using Magnetic Protein A and Protein G Beads

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Cited by 3 •

2016

The on-bead method for labeling antibodies with small molecules enables labeling of a small amount of antibodies directly from cell media. This method is compatible with amine and thiol chemistry, and can handle multiple samples in parallel, manually or using automated platforms.

Research

JoVE Journal - Biology
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Preparation of Agar Bead Embedded Mycobacterium abscessus to Inoculate Immunocompetent Mice Intratracheally

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Cited by 3 •

2025

Mice are generally resistant to infections by Mycobacterium abscessus, which complicates the discovery and development of much-needed antibiotics against pulmonary infections. Here, we describe a method of inoculum preparation and intratracheal infection that was shown to deliver sustained infection in immunocompetent mice.

Optimized Fibrin Gel Bead Assay for the Study of Angiogenesis

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Cited by 166 •

2007

This video demonstrates the protocol of an in vitro angiogenesis assay that recapitulates several stages of angiogenesis. Time-lapse images of sprouting, lumen formation, branching and anastomosis - key features of angiogenesis - are shown.

Bead Sprouting Assay for Early-Stage Angiogenesis Assessment: An In Vitro Bead-Based Model to Study Endothelial Sprouting in the Presence of Pericytes

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2025

This video demonstrates a modified microcarrier beads-based assay incorporating pericytes to study endothelial sprouting during the early stages of angiogenesis. The assay provides an in vitro experimental model to understand molecular mechanisms of angiogenesis and the effect of anti-angiogenetic therapeutics.

Research

JoVE Journal - Neuroscience
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Decoding Natural Behavior from Neuroethological Embedding

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2025

This protocol gives an integrated framework based on advanced computational neuroethological methods to understand brain coding in naturalistic contexts.

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