Microfluidic Immobilization

Microfluidic immobilization is a technique for retaining molecules, particles, catalysts, or biological components at defined locations within microscale channels, enabling controlled chemical processes and measurements. It uses laminar flow, surface interactions, physical confinement, or entrapment in materials such as hydrogels to anchor the target while reagents move through the device. This approach improves contact between reactants and immobilized species while reducing sample and reagent consumption. In chemistry, microfluidic immobilization supports heterogeneous catalysis, biosensor development, reaction screening, and separations, offering precise control over residence time, mass transfer, and local reaction conditions.

Microfluidic Immobilization - Related Videos

Research

JoVE Journal - Biology

Studies of Bacterial Chemotaxis Using Microfluidics - Interview

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Cited by 1 •

2007

Research

JoVE Journal - Biology
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Automated System for Single Molecule Fluorescence Measurements of Surface-immobilized Biomolecules

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Cited by 4 •

2009

In this article we describe how we obtain FRET traces from individual DNA molecules immobilized to a surface using an automated scanning confocal microscope.

Microfluidic On-chip Capture-cycloaddition Reaction to Reversibly Immobilize Small Molecules or Multi-component Structures for Biosensor Applications

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2013

We present a method for rapid, reversible immobilization of small molecules and functionalized nanoparticle assemblies for Surface Plasmon Resonance (SPR) studies, using sequential on-chip bioorthogonal cycloaddition chemistry and antibody-antigen capture.

Immobilization of Live Caenorhabditis elegans Individuals Using an Ultra-thin Polydimethylsiloxane Microfluidic Chip with Water Retention

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Cited by 15 •

2019

A series of immobilization methods has been established to allow the targeted irradiation of live Caenorhabditis elegans individuals using a recently developed ultra-thin polydimethylsiloxane microfluidic chip with water retention. This novel on-chip immobilization is also adequate for imaging observations. The detailed treatment and application examples of the chip are explained.

Inducing Depression-like Behavior in a Mouse via Immobilization Stress

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2025

This video demonstrates the method of inducing chronic stress in a mouse through repeated immobilization, leading to corticosterone release and reduced glutamate receptor activity in neurons, which results in depression-like behavior.

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