Published June 1992 | Version v1
Journal article

Quantitative detection of DNA damage in cells after exposure to ionizing radiation by means of an improved immunochemical assay

  • 1. Gezondheidsorganisatie TNO, Rijswijk (Netherlands). Medisch Biologisch Lab.
  • 2. Rijksuniversiteit Leiden (Netherlands). Lab. voor Stralengenetica en Chemische Mutagenese

Description

A simple, sensitive and fast immunochemical method has been developed to quantify the amount of DNA damage in cells of human blood after in vitro exposure to ionizing radiation. The technique is based on enhancement of radiation-induced single-strandedness, which occurs in DNA regions flanking strand breaks, by a controlled further unwinding of DNA in an alkaline solution. Subsequently, DNA is attached to the wall of polystyrene cups by passive adsorption. DNA damage is then quantified by determining the extent of single-strandedness with monoclonal antibody D1B, directed against single-stranded DNA. D1B binding is assayed with a 'second' antibody, labelled with either an enzyme or europium. The latter gives slightly more reproducible results. No radioactive labelling of DNA is required and the assay takes only 3.5 h after the collection of blood. Damage can be detected after doses as low as 0.5 Gy. The potential broader application of the method is discussed. (author). 16 refs.; 4 figs.; 1 tab

Additional details

Publishing Information

Journal Title
Mutation Research. DNA Repair
Journal Volume
274
Journal Issue
1
Journal Page Range
p. 19-27.
ISSN
0921-8777
CODEN
MUREAV

Optional Information

Contract/Grant/Project number
Grant no. 4.5.3; Grant no. BIO-E-403-81-NL
Notes
This work was supported by the J.A. Cohen Institute for Radiopathology and Radiation Protection, Leiden, and by EURATOM (Netherlands).