Integration Efficiency Assay

The Integration Efficiency Assay is a method for measuring how effectively delivered genetic material becomes stably incorporated into a cell’s genome, an important parameter in studies of infection, gene transfer, and host–pathogen interactions. The assay typically distinguishes integrated sequences from transiently present or unintegrated material by quantifying genetic or reporter signals after nonintegrated material is removed, diluted through cell division, or otherwise discriminated. In immunology and infection research, integration efficiency helps evaluate viral entry and persistence, compare experimental delivery systems, assess engineered immune cells, and interpret how stable genetic changes influence cellular responses and disease models.

Integration Efficiency Assay - Related Videos

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JoVE EoE - Immunodiagnostics

An In Vitro Fluorescence-Based Assay to Measure Plasma Membrane Resealing Efficiency

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2025

This video demonstrates an assay to study the plasma membrane resealing efficiency in mammalian cells. The cells are exposed to a bacterial pore-forming toxin, which forms pores in the cell membrane. In the presence of extracellular calcium ions, the pore causes calcium influx, inducing membrane-resealing events. The resealing efficiency is assessed using DNA-binding propidium iodide dye, which only enters cells without a resealed membrane.

Evaluating Cytotoxicity and Membrane Integrity in Lung Slices via Lactate Dehydrogenase Assay

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2025

This video demonstrates the lactate dehydrogenase, LDH assay to measure the cytotoxic effect of a test substance and its effect on the membrane integrity in human precision-cut lung slices. The assay provides a quantitative measure of cell death or damage in the sample.

Ethanol Resistance Assay to Evaluate Biofilm Matrix Integrity

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2026

Source: Bucher, T., et al. Methodologies for Studying B. subtilis Biofilms as a Model for Characterizing Small Molecule Biofilm Inhibitors. J. Vis. Exp. (2016).This video demonstrates how biofilm matrix integrity influences bacterial resistance to ethanol by comparing colony-forming units in untreated and inhibitor-disrupted biofilms. Reduced CFUs in inhibitor-treated samples demonstrate that the extracellular matrix is essential for protecting biofilm-embedded cells from antimicrobial stress.

A Rapid and Efficient Method to Dissect Pupal Wings of Drosophila Suitable for Immunodetections or PCR Assays

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Cited by 5 •

2017

The ability to accurately detect transcripts or proteins in Drosophila tissues is critical for studying their abundance and localization related to the development process. Here is the description of a straightforward procedure to dissect pupal wings. These wings can be used as samples in several techniques (immunohistochemistry, PCR assay, etc.).

A Reporter Based Cellular Assay for Monitoring Splicing Efficiency

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Cited by 4 •

2021

This protocol describes a minigene reporter assay to monitor the impact of 5´-splice site mutations on splicing and develops suppressor U1 snRNA for the rescue of mutation-induced splicing inhibition. The reporter and suppressor U1 snRNA constructs are expressed in HeLa cells, and splicing is analyzed by primer extension or RT-PCR.

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