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Updated: Oct 10, 2025

Assaying DNA Damage in Hippocampal Neurons Using the Comet Assay
Published on: December 19, 2012
Measurement of DNA Damage Using the Neutral Comet Assay in Cultured Cells
Elena Clementi1, Zuzana Garajova1, Enni Markkanen1
1Institute of Veterinary Pharmacology and Toxicology, Vetsuisse Faculty, University of Zürich, Zürich, Switzerland.
Abstract:
Maintenance of DNA integrity is of pivotal importance for cells to circumvent detrimental processes that can ultimately lead to the development of various diseases. In the face of a plethora of endogenous and exogenous DNA damaging agents, cells have evolved a variety of DNA repair mechanisms that are responsible for safeguarding genetic integrity. Given the relevance of DNA damage and its repair for disease pathogenesis, measuring them is of considerable interest, and the comet assay is a widely used method for this. Cells treated with DNA damaging agents are embedded into a thin layer of agarose on top of a microscope slide. Subsequent lysis removes all protein and lipid components to leave 'nucleoids' consisting of naked DNA remaining in the agarose. These nucleoids are then subjected to electrophoresis, whereby the negatively charged DNA migrates towards the anode depending on its degree of fragmentation, creating shapes resembling comets, which can be visualized and analysed by fluorescence microscopy. The comet assay can be adapted to assess a wide variety of genotoxins and repair kinetics, and both DNA single-strand and double-strand breaks. In this protocol, we describe in detail how to perform the neutral comet assay to assess double-strand breaks and their repair using cultured human cell lines. We describe the workflow for assessing the amount of DNA damage generated by ionizing radiation or present endogenously in the cells, and how to assess the repair kinetics after such an insult. The procedure described herein is easy to follow and cost-effective.
Insights
The comet assay detects DNA damage and repair in cells. This protocol details the neutral comet assay for assessing double-strand breaks and their kinetics in human cell lines, offering a cost-effective method.
Area of Science:
- Molecular Biology
- Genetics
- Cell Biology
Background:
- Maintaining DNA integrity is crucial for preventing diseases.
- Cells possess DNA repair mechanisms to counteract genetic damage.
- Measuring DNA damage and repair is vital for understanding disease pathogenesis.
Purpose of the Study:
- To provide a detailed protocol for the neutral comet assay.
- To assess DNA double-strand breaks and their repair kinetics.
- To utilize cultured human cell lines for damage and repair assessment.
Main Methods:
- Cells are embedded in agarose, lysed to remove proteins and lipids, forming nucleoids.
- Nucleoids undergo electrophoresis, with fragmented DNA migrating towards the anode.
- Comet-like structures are visualized and analyzed using fluorescence microscopy.
Main Results:
- The neutral comet assay effectively assesses DNA double-strand breaks.
- The protocol allows for the evaluation of DNA repair kinetics after genotoxic insult.
- The method is applicable to damage induced by ionizing radiation or endogenous sources.
Conclusions:
- The described neutral comet assay protocol is effective for studying DNA double-strand breaks and repair.
- This method is adaptable for assessing various genotoxins and repair kinetics.
- The protocol is user-friendly and cost-effective for research applications.

