Functional Molecular Assays

Functional molecular assays are laboratory tests that measure the activity or biological effect of molecules, rather than simply detecting their presence, making them valuable for understanding immune responses and infectious disease processes. These assays typically expose a molecular target, cell, or biological sample to defined conditions and quantify a response through changes in enzymatic activity, gene expression, protein signaling, binding, or pathogen replication. In immunology and infection research, they can assess antibody neutralization, cytokine activity, host–pathogen interactions, and treatment effects. By linking molecular detection to function, functional molecular assays help distinguish active disease mechanisms, evaluate therapeutic candidates, and clarify how immune defenses influence infection outcomes.

Functional Molecular Assays - Related Videos

Research

JoVE Journal - Medicine

Investigating Angiogenesis on a Functional and Molecular Level by Leveraging the Scratch Wound Migration Assay and the Spheroid Sprouting Assay

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Cited by 1 •

2024

This study presents the two-dimensional (2D) scratch wound migration assay and the three-dimensional (3D) spheroid sprouting assay, along with their respective downstream analysis methods, including RNA extraction and immunocytochemistry, as suitable assays to study angiogenesis in vitro.

Extraction of Tissue Antigens for Functional Assays

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2012

A simple protocol for preparing extracts of human tissue to be used as a source of antigens in functional T-cell assays is described. This method allows T-cell responses to tissue-derived antigens to be measured in vitro.

A Molecular-Based Assay for Quantifying Influenza A and B Viruses

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2025

The video demonstrates an assay for quantifying influenza viruses A and B. This assay employs nicking endonuclease amplification with influenza-specific primers and target detection using molecular beacon probes.

Molecular Evolution of the Tre Recombinase

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Cited by 4 •

2008

Here we report the generation of Tre recombinase through directed, molecular evolution. Tre recombinase recognizes a pre-defined target sequence within the LTR sequences of the HIV-1 provirus, resulting in the excision and eradication of the provirus from infected human cells. While still in its infancy, directed molecular evolution will allow the creation of custom enzymes that will serve as tools of molecular surgery and molecular medicine.

Evaluation of Zebrafish Kidney Function Using a Fluorescent Clearance Assay

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Cited by 29 •

2015

The zebrafish is a popular tool to model chronic kidney disease (CKD). However, their small size makes it impossible to evaluate renal function using traditional methods. We describe a fluorescent dye kidney clearance assay1 that allows quantitative analysis of zebrafish kidney function in CKD.

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