New Application of the Comet Assay

Author:

Cortés-Gutiérrez Elva I.123,Dávila-Rodríguez Martha I.123,Fernández José Luís123,López-Fernández Carmen123,Gosálbez Altea123,Gosálvez Jaime123

Affiliation:

1. División de Genética, Centro de Investigación Biomédica del Noreste, Instituto Mexicano del Seguro Social, Monterrey, México (EICG,MIDR)

2. INIBIC–Unidad de Genética, Complejo Hospitalario Universitario Juan Canalejo, As Xubias, La Coruña, Spain (JLF)

3. Universidad Autónoma de Madrid, Madrid, Spain (CLF,AG,JG)

Abstract

The comet assay is a well-established, simple, versatile, visual, rapid, and sensitive tool used extensively to assess DNA damage and DNA repair quantitatively and qualitatively in single cells. The comet assay is most frequently used to analyze white blood cells or lymphocytes in human biomonitoring studies, although other cell types have been examined, including buccal, nasal, epithelial, and placental cells and even spermatozoa. This study was conducted to design a protocol that can be used to generate comets in subnuclear units, such as chromosomes. The new technique is based on the chromosome isolation protocols currently used for whole chromosome mounting in electron microscopy, coupled to the alkaline variant of the comet assay, to detect DNA damage. The results show that migrant DNA fragments can be visualized in whole nuclei and isolated chromosomes and that they exhibit patterns of DNA migration that depend on the level of DNA damage produced. This protocol has great potential for the highly reproducible study of DNA damage and repair in specific chromosomal domains.

Publisher

SAGE Publications

Subject

Histology,Anatomy

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