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Results for DNA damage

Publications & Outputs

  1. On cold atmospheric-pressure plasma jet induced DNA damage in cells

    Gaur, N., Kurita, H., Oh, J-S., Miyachika, S., Ito, M., Mizuno, A., Cowin, A. J., Allinson, S., Short, R. D. & Szili, E. J., 30/01/2021, In: Journal of Physics D: Applied Physics. 54, 3, 11 p., 035203.

    Research output: Contribution to journalJournal articlepeer-review

  2. How membrane lipids influence plasma delivery of reactive oxygen species into cells and subsequent DNA damage: an experimental and computational study

    Van der Paal, J., Hong, S-H., Yusupov, M., Gaur, N., Oh, J-S., Short, R. D., Szili, E. J. & Bogaerts, A., 21/09/2019, In: Physical Chemistry Chemical Physics. 21, 35, p. 19327-19341 15 p.

    Research output: Contribution to journalJournal articlepeer-review

  3. Non-canonical activation of the DNA sensing adaptor STING by ATM and IFI16 mediates NF-κB signalling after nuclear DNA damage

    Dunphy, G., Flannery, S., Almine, J., Connolly, D., Paulus, C., Jønsson, K., Jakobsen, M., Nevels, M., Bowie, A. & Unterholzner, L., 6/09/2018, In: Molecular Cell. 71, 5, p. 745-760 16 p.

    Research output: Contribution to journalJournal articlepeer-review

  4. PIKK-dependent activation of the DNA damage response by long wavelength ultraviolet radiation

    Copley, J., 2018, Lancaster University. 119 p.

    Research output: ThesisMaster's Thesis

  5. Characterising the biological response to ultraviolet radiation

    Steel, H., 2016, (Unpublished) Lancaster University. 320 p.

    Research output: ThesisDoctoral Thesis

  6. Distinguishing nuclei-specific benzo[a]pyrene-induced effects from whole-cell alterations in MCF-7 cells using Fourier-transform infrared spectroscopy

    Obinaju, B., Fullwood, N. & Martin, F., 1/09/2015, In: Toxicology. 335, p. 27-34 8 p.

    Research output: Contribution to journalJournal articlepeer-review

  7. Diadenosine 5′, 5′′′-P1,P4-tetraphosphate (Ap4A) is synthesized in response to DNA damage and inhibits the initiation of DNA replication.

    Marriott, A. S., Copeland, N., Cunningham, R., Wilkinson, M. C., McLennan, A. G. & Jones, N. J., 09/2015, In: DNA Repair. 33, p. 90-100 11 p.

    Research output: Contribution to journalJournal articlepeer-review

  8. Primary fibroblasts from BRCA1 mutation-carrying members of breast cancer families display a G1/S cell cycle checkpoint defect following UVA irradiation but show normal levels of micronuclei following oxidative stress or mitomycin C treatment.

    Shorrocks, J., Tobi, S. E., Latham, H., Peacock, J. H., Eeles, R., Eccles, D. & McMillan, T. J., 1/02/2004, In: International Journal of Radiation Oncology - Biology - Physics. 58, 2, p. 470-478 9 p.

    Research output: Contribution to journalJournal articlepeer-review

  9. Delineating the position of rad4+/cut5+ within the DNA-structure checkpoint pathways in Schizosaccharomyces pombe.

    Harris, S., Kemplen, C., Caspari, T., Chan, C., Lindsay, H. D., Poitelea, M., Carr, A. M. & Price, C., 1/09/2003, In: Journal of Cell Science. 116, 17, p. 3519-3529 11 p.

    Research output: Contribution to journalJournal articlepeer-review

  10. DNA replication is required for the checkpoint response to damaged DNA in Xenopus egg extracts.

    Stokes, M. P., Van Hatten, R., Lindsay, H. D. & Michael, W. M., 09/2002, In: Journal of Cell Biology. 158, 5, p. 863-872 10 p.

    Research output: Contribution to journalJournal articlepeer-review

  11. Cells from individuals with SOD-1 associated familial amyotrophic lateral sclerosis do not have an increased susceptibility to radiation-induced free radical production or DNA damage.

    Mithal, N. P., Radunovic, A., Figlewicz, D. A., Leigh, P. N. & McMillan, T. J., 15/03/1999, In: Journal of the Neurological Sciences. 164, 1, p. 89-92 4 p.

    Research output: Contribution to journalJournal articlepeer-review

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