Immunomagnetic Multiplexing

Immunomagnetic multiplexing is a method that uses antibody-coated magnetic particles to capture and analyze multiple biological targets in parallel, making complex samples more tractable for medical testing. Antibodies on each particle bind defined antigens or cell-surface markers, while an applied magnetic field concentrates or separates the resulting complexes; distinct particle codes or detection labels then identify the targets. In medicine, this approach supports multiplex immunoassays, rare-cell enrichment, pathogen detection, and biomarker profiling. By combining selective recognition with rapid magnetic handling, it can increase analytical throughput and help characterize disease states from limited samples.

Immunomagnetic Multiplexing - Related Videos

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JoVE EoE - Immune Systems and Components

Isolation of Monocytes from Whole Blood by Immunomagnetic Negative Selection

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2025

In this video, we demonstrate the isolation of monocytes from whole human blood by immunomagnetic negative separation. The isolated monocytes can be used for further downstream analysis.

Negative Immunomagnetic Selection: A Method to Purify B-cells from Peripheral Blood Mononuclear Cells

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2023

The video explains a way to purify B-cells by immunomagnetic targeting and separation from peripheral blood mononuclear cells suspension. The method involve labeling unwanted cell types with specific antibodies or ligands (linked to magnetic particles) targeting specific cell surface proteins, to be depleted from the heterogenous cell suspension by magnetic separation.

Immunomagnetic Separation of Fat Depot-specific Sca1high Adipose-derived Stem Cells (ASCs)

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Cited by 2 •

2016

We present the techniques required to isolate the stromal vascular fraction (SVF) from mouse inguinal (subcutaneous) and perigonadal (visceral) adipose tissue depots to assess their gene expression and collagenolytic activity. This method includes the enrichment of Sca1high adipose-derived stem cells (ASCs) using immunomagnetic cell separation.

Isolating Murine Primary Oligodendrocytes Using Immunomagnetic Beads

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2025

This video demonstrates a method to isolate primary oligodendrocyte cells from a neural cell suspension obtained from a mouse pup using magnetic separation. The technique employs magnetic beads coated with antibodies specific to oligodendrocyte antigens, enabling selective isolation of these cells.

Genetic Barcoding with Fluorescent Proteins for Multiplexed Applications

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Cited by 4 •

2015

Since the discovery of the green fluorescent protein gene, fluorescent proteins have impacted molecular cell biology. This protocol describes how expression of distinct fluorescent proteins through genetic engineering is used for barcoding individual cells. The procedure enables tracking distinct populations in a cell mixture, which is ideal for multiplexed applications.

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