Measurements using the alkaline comet assay predict bladder cancer cell radiosensitivity
Open Access
- 12 December 2003
- journal article
- research article
- Published by Springer Nature in British Journal of Cancer
- Vol. 89 (12) , 2271-2276
- https://doi.org/10.1038/sj.bjc.6601333
Abstract
In the UK, the two main treatments of invasive bladder cancer are radiotherapy or cystectomy. However, ∼50% of patients undergoing radiotherapy fail to respond. If tumour radiosensitivity could be predicted in advance, it may be possible to improve control rates significantly by selecting for radiotherapy those patients whose tumours are radiosensitive. Additionally, patients who would benefit from surgery would be identified earlier. The alkaline comet assay (ACA) is a sensitive method for the detection of DNA strand break damage in cells. In the present study, using six bladder cancer cell lines of differing radiosensitivities, cell survival was compared to the manifestation of radiogenic DNA damage as assessed by ACA. For all the cell lines, the extent of comet formation strongly correlates with cell killing (R2>0.96), with a greater response being noted in radiosensitive cells. In repair studies, measures of residual damage correlate with survival fraction at 2 Gy (R2>0.96), but for only five of the cell lines. Finally, cells from human bladder tumour biopsies reveal a wide range of predicted radiosensitivies as determined by ACA. Overall, these studies demonstrate ACA to be a good predictive measure of bladder cancer cell radiosensitivity at low dose, with potential clinical application.Keywords
This publication has 36 references indexed in Scilit:
- Induction and Rejoining of DNA Double-Strand Breaks in Bladder Tumor CellsRadiation Research, 2000
- Chromatin structure and cellular radiosensitivity: a comparison of two human tumour cell linesInternational Journal of Radiation Biology, 1996
- Intrinsic radiosensitivity as a predictor of patient response to radiotherapyThe British Journal of Radiology, 1995
- Modifications of Alkaline Microgel Electrophoresis for Sensitive Detection of DNA DamageInternational Journal of Radiation Biology, 1994
- The role of DNA double strand breaks in lonizing radiation‐induced killing of eukaryotic cellsBioEssays, 1991
- The Yield of DNA Double-strand Breaks Produced Intracellularly by Ionizing Radiation: A ReviewInternational Journal of Radiation Biology, 1990
- The Fate of G3pT1 Bladder CancerBritish Journal of Urology, 1989
- Continent Urinary DiversionAnnals of Surgery, 1988
- A simple technique for quantitation of low levels of DNA damage in individual cellsExperimental Cell Research, 1988
- Results of Surgery Following Radical Radiotherapy for Invasive Bladder CancerBritish Journal of Urology, 1986