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Updated: Jun 3, 2026

A High-Throughput Comet Assay Approach for Assessing Cellular DNA Damage
Published on: May 10, 2022
Acellular comet assay: a tool for assessing variables influencing the alkaline comet assay
Erin K Kennedy1, James P McNamee, Louise Prud'homme Lalonde
1Capabilities for Asymmetric and Radiological Defence and Simulation, Defence R&D Canada - Ottawa, Ottawa, ON, Canada K1A 0Z4. erin.kennedy@drdc-rddc.gc.ca
Abstract:
In this study, an acellular modification to the alkaline comet assay to further evaluate key variables within the assay that may influence the outcome of genotoxicity studies is described. This acellular comet assay can detect differences of 0.2 Gy of (60)Co gamma-ray radiation between 0 and 1 Gy and differences of 1 Gy between 0 and 8 Gy; thus, this assay is applicable for a wide range of DNA damage levels. It is also shown that DNA damage from different radiation energies was not significantly different from (60)Co gamma-ray. This assay displayed a statistical increase in DNA damage due to uncontrolled exposure to natural light; however, the slope of the dose-response curve for light-exposed samples was similar to that for samples protected from light. A comparison of the alkaline comet assay with the acellular comet assay allowed for the intrinsic repair capacity of the alkaline comet assay to be quantified.

