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Direct enzymatic detection of endogenous base damage in human lymphocyte DNA
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Collins, A. R., Duthie, S. J. and Dobson, V. L. (1993) Direct enzymatic detection of endogenous base damage in human lymphocyte DNA. Carcinogenesis, 14, 1733-1735.
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Inter-individual differences in repair of DNA base oxidation, measured in vitro with the comet assay
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Collins, A. R., Dusinska, M., Horvathova, E., Munro, E., Savio, M. and Stetina, R. (2001) Inter-individual differences in repair of DNA base oxidation, measured in vitro with the comet assay. Mutagenesis, 16, 297-301.
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Genotoxic effects of asbestos in humans
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Dusinska, M., Collins, A. R., Kazimirova, A. et al. (2004) Genotoxic effects of asbestos in humans. Mutat. Res., 553, 91-102.
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Does occupational exposure to mineral fibres cause DNA or chromosome damage?
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Dusinska, M., Barancokova, M., Kazimirova, A., Harrington, V., Volkovova, K., Staruchova, M., Horska, A., Wsolova, L. and Collins, A. R. (2004) Does occupational exposure to mineral fibres cause DNA or chromosome damage? Mutat. Res., 553, 103-110.
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Exposure to ultrafine particles from ambient air and oxidative stress-induced DNA damage
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Bräuner, E. V., Forchhammer, L., Møller, P., Simonsen, J., Glasius, M., Wåhlin, P., Raaschou-Nielsen, O. and Loft, S. (2007) Exposure to ultrafine particles from ambient air and oxidative stress-induced DNA damage. Environ. Health Perspect., 115, 1177-1182.
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7
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Oxidatively damaged DNA and its repair after experimental exposure to wood smoke in healthy humans
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Danielsen, P. H., Bräuner, E. V., Barregard, L., Sällsten, G., Wallin, M., Olinski, R., Rozalski, R., Møller, P. and Loft, S. (2008) Oxidatively damaged DNA and its repair after experimental exposure to wood smoke in healthy humans. Mutat. Res., 642, 37-42.
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8
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In vivo supplementation with coenzyme Q10 enhances the recovery of human lymphocytes from oxidative DNA damage
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Tomasetti, M., Alleva, R., Borghi, B. and Collins, A. R. (2001) In vivo supplementation with coenzyme Q10 enhances the recovery of human lymphocytes from oxidative DNA damage. FASEB J., 15, 1425-1427.
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Nutritional modulation of DNA repair in a human intervention study
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Collins, A. R., Harrington, V., Drew, J. and Melvin, R. (2003) Nutritional modulation of DNA repair in a human intervention study. Carcinogenesis, 24, 511-515.
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DNA repair phenotype and dietary antioxidant supplementation
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Guarnieri, S., Loft, S., Riso, P., Porrini, M., Risom, L., Poulsen, H. E., Dragsted, L. O. and Møller, P. (2008) DNA repair phenotype and dietary antioxidant supplementation. Br. J. Nutr., 99, 1018-1024.
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Gaivão, I., Piasek, A., Brevik, A., Shaposhnikov, S. and Collins, A. R. (2009) Comet assay-based methods for measuring DNA repair in vitro; estimates of inter- and intra-individual variation. Cell Biol. Toxicol., 25, 45-52.
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The carotenoid β-cryptoxanthin stimulates the repair of DNA oxidation damage in addition to acting as an antioxidant in human cells
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Lorenzo, Y., Azqueta, A., Luna, L., Bonilla, F., Domínguez, G. and Collins, A. R. (2009) The carotenoid β-cryptoxanthin stimulates the repair of DNA oxidation damage in addition to acting as an antioxidant in human cells. Carcinogenesis, 30, 308-314.
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Investigation of the role of extracellular H2O2 and transition metal ions in the genotoxic action of ascorbic acid in cell culture models
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