Microcarrier Bead Coating

Microcarrier bead coating is the process of applying adhesion-promoting materials to small beads so anchorage-dependent cells can grow in suspension culture, increasing the available surface area for cell expansion. Coatings such as collagen, fibronectin, or laminin present extracellular matrix ligands that bind cell-surface integrins, supporting attachment, spreading, and survival under controlled culture conditions. In developmental biology, coated microcarriers help expand stem and progenitor cells and generate cell aggregates or tissue-like models in scalable systems. By varying coating composition and density, researchers can examine how extracellular matrix signals regulate proliferation, differentiation, and morphogenesis.

Microcarrier Bead Coating - Related Videos

Research

JoVE EoE - Immune Response

Organelle Dynamics in B Lymphocytes following Activation with Antigen-Coated Beads

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2025

In this video, we describe a method to study the organelle dynamics in B lymphocytes following their activation with antigen-coated microbeads.

Growth Factor-Coated Bead Placement on Dorsal Forebrain Explants

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Cited by 1 •

2007

This video demonstrates two methods for preparing and placing beads, which have been coated with growth factor, on explants of the developing cerebral cortex. These beads can be used to induce spatially restricted gene expression on developing neural tissue such as forebrain explants. Methods are given for using both Affi-Gel beads and heparin acryllic beads.

Placing Growth Factor-Coated Beads on Early Stage Chicken Embryos

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Cited by 2 •

2007

A variety of growth factors and proteins interact to induce cells to take on different cell fates during development. Here we demonstrate the use of an in ovo preparation to address possible interactions between different proteins in development by placing beads on E2.5 chick embryos.

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.

Bioscaffold Fabrication by Electrospraying: A Technique to Generate Microcarrier Scaffolds Derived from Extracellular Matrix of Decellularized Tissue

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2023

This video demonstrates the procedure of extracellular matrix-derived microcarrier fabrication by electrospraying. These microcarriers simulate the native tissue-specific microenvironment and are stable in long-term 3D in vitro cell culture models.

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