The use of Silver-stained “Comets” to Visualize DNA Damage and Repair in Normal and Xeroderma pigmentosum Fibroblasts After Exposure to Simulated Solar Radiation
- 1 January 2000
- journal article
- research article
- Published by Wiley in Photochemistry and Photobiology
- Vol. 71 (4) , 422-5
- https://doi.org/10.1562/0031-8655(2000)071<0422:tuossc>2.0.co;2
Abstract
The alkaline and neutral comet assays have been widely used to assess DNA damage and repair in individual cells after in vivo or in vitro exposure to chemical or physical genotoxins. Cells processed under neutral conditions generate comets primarily from DNA double strand breaks, whereas under alkaline conditions, comets arise from DNA single and double strand breaks and alkali-labile lesions. A modified version of the alkaline comet assay, as described here, used silver stain to visualize the comets and a ™Gelbond base to facilitate the manipulation and processing of samples. To demonstrate how these modifications improve the assay, fibroblasts derived from both normal and Xeroderma pigmentosum (Xp) individuals were exposed to simulated solar radiation and the resulting DNA damage and repair evaluated and compared with results from the relevant literature. Comets from normal fibroblasts reached their maximum length at about an hour after irradiation. Dose-dependent increases in comet length were observed up to at least 360 mJ/cm2. In contrast, comet lengths from repair deficient Xp fibroblasts were shorter than normal cells reflecting their reduced capacity to generate single strand breaks by the excision of DNA dimers. For incubation times of more than 1 h, comet lengths from normal fibroblasts underwent a time-dependent decrease, supporting the contention that this change was related to the ligation step in the DNA repair process. These changes were compatible with the model of DNA damage and repair established by others for ultraviolet radiation.Keywords
This publication has 17 references indexed in Scilit:
- The Comet Assay as a Repair Test for Prenatal Diagnosis of Xeroderma Pigmentosum and TrichothiodystrophyJournal of Investigative Dermatology, 1997
- The contribution of cytotoxicity to DNA-effects in the single cell gel test (comet assay)Toxicology Letters, 1997
- Mutagenic specificity of solar UV light in nucleotide excision repair-deficient rodent cells.Proceedings of the National Academy of Sciences, 1996
- Use of the alkaline comet assay to detect DNA repair deficiencies in human fibroblasts exposed to UVC, UVB, UVA and gamma-raysInternational Journal of Radiation Biology, 1996
- THE BIOLOGY OF THE (6–4) PHOTOPRODUCTPhotochemistry and Photobiology, 1989
- Defect in UV-induced unscheduled DNA synthesis in cultured epidermal keratinocytes from xeroderma pigmentosumMutation Research/DNA Repair Reports, 1987
- LETHALITY AND THE INDUCTION AND REPAIR OF DNA DAMAGE IN FAR, MID OR NEAR UV‐IRRADIATED HUMAN FIBROBLASTS: COMPARISON OF EFFECTS IN NORMAL, XERODERMA PIGMENTOSUM AND BLOOM'S SYNDROME CELLSPhotochemistry and Photobiology, 1982
- Study of DNA repair on a xeroderma pigmentosum patient and his heterozygotic parentsArchives of Dermatological Research, 1981
- EVIDENCE THAT XERODERMA PIGMENTOSUM CELLS DO NOT PERFORM THE FIRST STEP IN THE REPAIR OF ULTRAVIOLET DAMAGE TO THEIR DNAProceedings of the National Academy of Sciences, 1969
- Defective Repair Replication of DNA in Xeroderma PigmentosumNature, 1968