Dna Assay

A DNA assay is a laboratory method for detecting, measuring, or characterizing DNA, making it a foundation for genetic analysis and bioengineering research. Depending on its design, the assay uses complementary base pairing to recognize a target sequence, then produces a measurable signal through amplification, fluorescence, enzymatic reactions, or another readout. Researchers use DNA assays to verify engineered constructs, quantify nucleic acids, identify genetic variants, and monitor biological systems. Reliable assay design and controls help distinguish specific target signals from background, supporting applications in diagnostics, synthetic biology, bioprocess development, and quality assessment.

Dna Assay - Related Videos

Research

JoVE Journal - Neuroscience

Assaying DNA Damage in Hippocampal Neurons Using the Comet Assay

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Cited by 21 •

2012

The comet assay is an efficient way of detecting single- and double-strand breaks, including alkali-labile sites and DNA-DNA/DNA-protein cross-links on the DNA in all cells including hippocampal neurons. The method takes advantage of the differential migration of DNA in an electric field due to differences in amount of DNA damage.

In Vivo Alkaline Comet Assay and Enzyme-modified Alkaline Comet Assay for Measuring DNA Strand Breaks and Oxidative DNA Damage in Rat Liver

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Cited by 17 •

2016

The alkaline comet assay measures DNA strand breaks in eukaryotic cells. By adding an Endonuclease III or human 8-oxoguanine-DNA-N-glycosylase digestion step, the assay can efficiently detect oxidative DNA damage. We describe methods for using these assays to detect DNA damage in rat liver.

Direct Observation of Enzymes Replicating DNA Using a Single-molecule DNA Stretching Assay

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Cited by 13 •

2010

We describe a method for observing real time replication of individual DNA molecules mediated by proteins of the bacteriophage replication system.

Comet Assay for DNA Damage Detection in Cells

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2025

The video demonstrates the comet assay for detecting DNA damage following exposure to harmful agents. Under alkaline conditions, the DNA unwinds and denatures, and upon electrophoresis, the undamaged and damaged DNA migrate differently in the agarose gel, forming a comet-shaped structure. The slowly migrating undamaged DNA forms the circular comet head, while the rapidly migrating damaged DNA fragments form the elongated comet tail.

DNA Polymerase Activity Assay Using Near-infrared Fluorescent Labeled DNA Visualized by Acrylamide Gel Electrophoresis

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Cited by 2 •

2017

This protocol describes the characterization of DNA polymerase synthesis of modified DNA through observation of changes to near-infrared fluorescently labeled DNA using gel electrophoresis and gel imaging. Acrylamide gels are used for high resolution imaging of the separation of short nucleic acids, which migrate at different rates depending on size.

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