Multiplexed Quantification

Multiplexed quantification is the simultaneous measurement of multiple analytes, signals, or biological targets in a single sample, enabling a broader view of complex immune and infectious processes than one-parameter assays. It works by assigning each target a distinguishable signal, such as a fluorescent label, antibody, nucleic acid probe, or molecular barcode, then separating and calibrating those signals to determine individual concentrations. In immunology and infection research, this approach can profile cytokines, antibodies, pathogen markers, and cellular responses from limited sample volumes. The resulting datasets help characterize host-pathogen interactions, identify biomarkers, compare disease states, and evaluate therapeutic or vaccine responses.

Multiplexed Quantification - Related Videos

Research

JoVE Journal - Biochemistry

Quantification of Protein Interaction Network Dynamics using Multiplexed Co-Immunoprecipitation

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Cited by 14 •

2019

Quantitative Multiplex Immunoprecipitation (QMI) uses flow cytometry for sensitive detection of differences in the abundance of targeted protein-protein interactions between two samples. QMI can be performed using a small amount of biomaterial, does not require genetically engineered tags, and can be adapted for any previously defined protein interaction network.

Research

JoVE Journal - Biology
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Multiplexed Immunofluorescence Assay for Spatial Assessment of Senescence Markers in vivo

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2026

Multiplexed immunofluorescence enables sequential labeling of multiple antibody markers within a single tissue section to support spatial analysis of tissue architecture and cell populations. Here, a workflow for multiplex detection of senescence-associated, structural, and immune markers is presented, including manual and automated slide preparation, iterative imaging, and single-cell analysis using digital pathology software.

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.

Research

JoVE Journal - Biology
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Multiplexed Fluorometric ImmunoAssay Testing Methodology and Troubleshooting

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Cited by 19 •

2011

Using Luminex Corporation’s xMAP microsphere technology, we have developed the Multiplexed Fluorometric ImmunoAssay (MFIA) for serosurveillance of various laboratory animal species. The MFIA is a suspension microarray where antigen, tissue control or immunoglobulins are covalently linked to color-coded polystyrene microspheres. The MFIA testing method as well as various troubleshooting topics is addressed.

A Multiplex Serological Assay for the Detection of Antibody Responses to Arboviruses

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2025

Multiplex fluorescence immunoassays are becoming a reference for serology testing. Their application, however, is limited by the complexity and time-consuming bead-analyte coupling processes. This report presents a semi-automated, reproducible multiplex microsphere bead coupling protocol that is comparable to the standard method while considerably reducing time to results.

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