Microbead Fabrication

Microbead fabrication is the production of small, spherical particles from polymers, hydrogels, lipids, or other materials for controlled biological and chemical functions. Fabrication commonly involves forming droplets or particles through emulsification, extrusion, or microfluidic flow, followed by solidification or crosslinking; adjustments to material composition, flow conditions, and processing parameters regulate bead size, uniformity, porosity, and mechanical properties. In biology, microbeads can immobilize cells, enzymes, drugs, or biomolecules, enabling cell culture, targeted delivery, separation, biosensing, and tissue engineering. Their tunable structure supports reproducible experiments and the development of platforms that mimic controlled cellular microenvironments.

Microbead Fabrication - Related Videos

Research

JoVE EoE - Neuropathology

Fabrication of Amyloid-Beta-Releasing Polymer Microbeads for Modeling Alzheimer's Disease

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2025

This video demonstrates a method for fabricating polymer microbeads that encapsulate neurotoxic amyloid-beta-secreting cells. The cell-polymer suspension is processed through a microbead fabrication device, with polymer gelation achieved via calcium cross-linking, forming spherical microbeads around the cells. The polymer allows cell proliferation while allowing controlled, long-term amyloid-beta release, simulating its accumulation in Alzheimer's disease.

Research

JoVE Journal - Developmental Biology
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Microbead Implantation in the Zebrafish Embryo

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Cited by 8 •

2015

The zebrafish is an excellent model system for genetic and developmental studies. Bead implantation is a valuable tissue manipulation technique that can be used to interrogate developmental mechanisms by introducing alterations in local cellular environments. This protocol describes how to perform microbead implantation in the zebrafish embryo.

Research

JoVE Journal - Biology
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Fabrication of Amyloid-β-Secreting Alginate Microbeads for Use in Modelling Alzheimer's Disease

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Cited by 2 •

2019

This protocol illustrates a cell encapsulation method by rapid physical gelation of alginate to immobilize cells. Obtained microbeads allow controlled and sustained secretion of amyloid-β over time and can be used to study the effects of secreted amyloid-β in in vitro and in vivo models.

Intracerebroventricular and Intravascular Injection of Viral Particles and Fluorescent Microbeads into the Neonatal Brain

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Cited by 18 •

2016

Here, we describe a simple method of intracerebroventricular and intravascular injection of viral particles or fluorescent microbeads into the neonatal mouse brain. The localization pattern of the virus and nanoparticles could be detected by microscopic evaluation or by in situ hybridization.

Rapid Magnetic-microbead Method for Efficient Purification of Low-density Neutrophils

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Cited by 1 •

2025

Low-density neutrophils (LDN) increase significantly in several diseases. LDN are usually isolated through cell sorting. We present a practical method to obtain pure and viable LDN. After density-gradient centrifugation of peripheral blood, cells are incubated with magnetic microbeads, and then LDN are separated through magnetic columns.

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