Ethidium Bromide Labeling

Ethidium bromide labeling is a laboratory method for fluorescently marking nucleic acids, especially DNA, so their presence and approximate size can be assessed after separation by gel electrophoresis. The dye intercalates between stacked base pairs and emits stronger orange-red fluorescence when illuminated with ultraviolet or blue light. In immunology and infection research, this approach supports analysis of PCR products, plasmids, and microbial or host DNA, helping verify amplification and compare nucleic acid patterns. Because ethidium bromide can damage genetic material, laboratories use appropriate containment and consider safer fluorescent alternatives.

Ethidium Bromide Labeling - Related Videos

Research

JoVE Journal - Biochemistry

DNA Electrophoresis Using Thiazole Orange Instead of Ethidium Bromide or Alternative Dyes

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Cited by 5 •

2019

Here, we present a protocol to use thiazole orange for the detection of DNA in gel electrophoresis experiments. The use of thiazole orange allows elimination of ethidium bromide, and fluorescence detection can be achieved with either UV or blue light.

Preparation and Reactivity of a Triphosphenium Bromide Salt: A Convenient and Stable Source of Phosphorus(I)

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Cited by 4 •

2016

The synthesis of a triphosphenium bromide salt is described and its use as a P+ transfer agent is outlined by reactions with an N-heterocyclic carbene and an anionic bisphosphine, yielding an NHC-stabilized P(I) cation and a P(I) containing zwitterion, respectively.

Whole-Genome Deoxyribonucleic Acid Extraction from Mycobacterium Species via the Cetyltrimethylammonium Bromide Technique

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2025

This protocol describes the CTAB method for extracting high-quality DNA from mycobacteria, overcoming challenges posed by their tough, mycolic acid-rich cell walls. The process involves enzymatic digestion, cell lysis with CTAB, and DNA purification through organic extraction and ethanol precipitation. This method produces DNA suitable for molecular studies and is reliable for mycobacterial research.

Simultaneous Label-Free Autofluorescence Multi-Harmonic Microscopy

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Cited by 3 •

2025

This protocol presents a step-by-step guide for the Simultaneous Label-free Autofluorescence Multi-harmonic (SLAM) microscopic technique, including details on how to generate the laser light source, prepare a tissue sample, conduct imaging, and analyze the data. SLAM advances nonlinear microscopy by measuring four complementary label-free contrasts to investigate the tissue microenvironment.

Education

JoVE Science Education - Chemistry

Metabolic Labeling

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2023

Metabolic labeling is used to probe the biochemical transformations and modifications that occur in a cell. This is accomplished by using chemical analogs that mimic the structure of natural biomolecules. Cells utilize analogs in their endogenous biochemical processes, producing compounds that are labeled. The label allows for the incorporation of detection and affinity tags, which can then be used to elucidate metabolic pathways using other biochemical analytical techniques, such as SDS-PAGE...

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