Fol. Biol. 2008, 54, 24-29
https://doi.org/10.14712/fb2008054010024
Photooxidative Action in Cancer and Normal Cells Induced by the Use of Photofrin® in Photodynamic Therapy
References
1. 2004) Intracellular signalling mechanisms in photo-dynamic therapy. Biochem. Biophys. Acta 170, 59-86.
, R. D., Manadas, B. J., Carvalho, A. P., Duarte, C. B. (
2. 2004) Photodynamic effects of porphyrin and chlorin photosensitizers in human colon adenocarcinoma cells. Bioorg. Med. Chem. 12, 4853-4860.
< , S., Caruso, E., Caprioli, S., Mazzagatti, L., Canti, G., Ravizza, R., Gariboldi, M., Monti, E. (https://doi.org/10.1016/j.bmc.2004.07.011>
3. 2004) Photochemical genotoxicity: principles and test methods. Report of a GUM task force. Mutat Res. 566, 65-91.
< , S., Czich, A., Epe, B., Gocke, E., Kaina, B., Muller, L., Pollet, D., Utesch, D. (https://doi.org/10.1016/S1383-5742(03)00052-8>
4. 2002) Comet assay. Principles, applications, and limitations. Methods Mol. Biol. 203, 163-177.
, A. L. (
5. 2000) Induction of apoptosis and manganese superoxide dismutase gene by photodynamic therapy in cervical carcinoma cell lines. Int. J. Clin. Oncol. 5, 97-103.
< , H., Koizumi, T., Sugimoto, T., Yamaguchi, S., Hasegawa, K., Tenjin, Y., Nishimura, R. (https://doi.org/10.1007/s101470050098>
6. 2004) Hematoporphyrin monomethyl ether photodynamic therapy damage on HeLa cells by means of reactive oxygen species production and cytosolic free calcium concentration elevation. Cancer Lett. 216, 43-54.
< , X., Xu, Q., Liu, F., Zhou, P., Gu, Y., Zeng, J., An, J., Dai, W., Li, X. (https://doi.org/10.1016/j.canlet.2004.07.005>
7. 2005) A role for manganese superoxide dismutase in apoptosis after photosensitization. Biochem. Biophys. Res. Commun. 332, 411-417.
< , V., Oberley, L. W., Huang, T. T., Kraniak, J. M., Tainsky, M. A., Hanada, K., Separovic, D. (https://doi.org/10.1016/j.bbrc.2005.04.141>
8. 1973) In vitro cultivation of human tumors: establishment of cell lines derived from a series of solid tumors. J. Natl. Cancer Inst. 51, 1417-1423.
< , D. J., Aaronson, S. T., Todaro, G. J., Arnstein, P., Kersey, J. H., Dosik, H., Parks, W. P. (https://doi.org/10.1093/jnci/51.5.1417>
9. 2001) Photosensitized oxidation of membrane lipids: reaction pathways, cytotoxic effects, and cytoprotective mechanisms. Photochem. Photobiol. 63, 103-113.
< , A. W. (https://doi.org/10.1016/S1011-1344(01)00207-X>
10. 2003) Antitumor effects of photodynamic therapy are potentiated by 2-metoxyestradiol, a superoxide dismutase inhibitor. J. Biol. Chem. 278, 407-414.
, J., Nowis, D., Skrzycki, M., Czeczot, H., Baranczyk-Kuzma, A., Wilczynski, G. M., Makowski, M., Mroz, P., Kozar, K., Kaminski, R., Jalili, A., Kopec, M., Grzela, T., Jakobisiak, M. (
11. 1998) Release of cytochrome c, Bax migration, Bid cleavage, and activation of caspases 2, 3, 6, 7, 8, and 9 during endothelial cell apoptosis. Am. J. Pathol. 155, 1021-1025.
< , D. J., Shaw, J. R., Leong, S., Carthy, Ch. M., Margaron, P., Hunt, D. W., McManus, B. M. (https://doi.org/10.1016/S0002-9440(10)65202-9>
12. 2001) Mitochondrial release of apoptosis-inducing factor and cytochrome c during smooth muscle cell apoptosis. Am. J. Pathol. 159, 305-311.
< , D. J., Cassidy, B. A., Ruehlmann, D. O., Choy, J. C., Brenner, C., Kroemer, G., Breemen, C., Margaron, P., Hunt, D. W., McManus, B. M. (https://doi.org/10.1016/S0002-9440(10)61696-3>
13. 2003) DNA damage and repair in Gorlin syndrome and normal fibroblasts after aminolevulinic acid photodynamic therapy: a comet assay study. Photochem. Photobiol. 78, 337-341.
< , A. K., Ward, T. H., Moore, J. V. (https://doi.org/10.1562/0031-8655(2003)078<0337:DDARIG>2.0.CO;2>
14. 2000) Superoxide dismutase as a target for the selective killing of cancer cells. Nature 407, 309-311.
< , P., Feng, L., Oldham, E. A., Keating, M. J., Plunkett, W. (https://doi.org/10.1038/35030140>
15. 2002) Photodynamic therapy with Photofrin reduces invasiveness of malignant human glioma cells. Lasers Med. Sci. 17, 280-288.
< , F., Chopp, M., Katakowski, M., Cho, K. K., Yang, X., Hochbaum, N., Tong, L., Mikkelsen, T. (https://doi.org/10.1007/s101030200041>
16. 1998) Antioxidant enzyme response to hypericin in EMT6 mouse mammary carcinoma cells. Free Radic. Biol. Med. 24, 817-826.
< , S. A., Pardini, R. S. (https://doi.org/10.1016/S0891-5849(97)00364-X>
17. 2004) Detection of photodynamic therapy-induced early apoptosis in human salivary gland tumor cells in vitro and in a mouse tumor model. Oral Oncol. 40, 787-792.
< , T. H., Chiba, T., Yasuda, G., Kusama, K. (https://doi.org/10.1016/j.oraloncology.2004.01.007>
18. 1998) Mitochondrial photodamage and PDT-induced apoptosis. J. Photochem. Photobiol. B. 42, 89-95.
< , D., Luo, Y. (https://doi.org/10.1016/S1011-1344(97)00127-9>
19. 1999) Photodynamic therapy: A mitochondrial inducer of apoptosis. Cell Death Differ. 6, 28-35.
< , D. Luo, Y. (https://doi.org/10.1038/sj.cdd.4400446>
20. 2001) Evidence that bcl-2 is the target of three photosensitizers that induce a rapid apoptotic response. Photochem. Photobiol. 74, 318-322.
< , D. Castelli, M. (https://doi.org/10.1562/0031-8655(2001)074<0318:ETBITT>2.0.CO;2>
21. 2001) The role of peripherial benzodiazepine receptor in the apoptotic response to photodynamic therapy. Photochem. Photobiol. 74, 346-349.
< , D. Antolovich, M. Smith, K. M. (https://doi.org/10.1562/0031-8655(2001)074<0346:TROTPB>2.0.CO;2>
22. 2001) Inactivation of catalase and superoxide dismutase by singlet oxygen derived from photoactivated dye. Biochimie 83, 437-444.
< , S. Y., Kwon, O. J., Park, J. W. (https://doi.org/10.1016/S0300-9084(01)01258-5>
23. 2001) Photodynamic therapy-induced apoptosis in epidermoid carcinoma cells. J. Biol. Chem. 276, 47379-47386.
< , M., Oleinick N. L., Nieminen, A. L. (https://doi.org/10.1074/jbc.M107678200>
24. 2002) The depth of porphyrin in a membrane and the membrane’s physical properties affect the photosensitizing efficiency. Biophys. J. 82, 2101-2110.
< , A., Weitman, H., Holmes, R. T., Smith, K. M., Ehrenberg, B. (https://doi.org/10.1016/S0006-3495(02)75557-4>
25. 2004) Involvement of both endoplasmic reticulum and mitochondria in photokilling of nasopharyngeal carcinoma cells by the photosensitizer Zn-BC-AM. Biochem. Pharmacol. 68, 2387-2396.
< , N. K., Li, K. M., Leung, W. N., Wong, R. N. S., Huang, D. P., Lung, M. L., Lau, Y. K., Chang, Ch. K. (https://doi.org/10.1016/j.bcp.2004.08.024>
26. 2005) Necrotic and apoptotic features of cell death in response to Foscan® photosensitization of HT29 monolayer and multicell spheroids. Biochem. Pharmacol. 69, 1167-1176.
< , S., Fadloun, A., Maugain, E., D’Hallewin, M. A., Guillemin, F., Bezdetnaya, L. (https://doi.org/10.1016/j.bcp.2005.01.021>
27. 2001) Photofrin – factor of photodynamic therapy induces apoptosis and necrosis. Folia Histochem. Cytobiol. 39, 177-178.
, A., Malarska, A., Saczko, J., Chwilkowska, A., Drag-Zalesinska, M., Wysocka, T., Banas, T. (
28. 2005) Direct tumor damage mechanisms of photodynamic therapy. Acta. Biochim. Polon. 52, 339-352.
< , D., Makowski, M., Stoklosa, T., Legat, M., Issat, T., Golab, J. (https://doi.org/10.18388/abp.2005_3447>
29. 2003) The modes of cell death induced by PDT: an overview. Med. Laser App. 18, 7-19.
< , K., Kiesslich, T., Verwanger, T., Krammer, B. (https://doi.org/10.1078/1615-1615-00082>
30. 2001) A photobiological and photophysical-based study of phototoxicity of two chlorines. Cancer Res. 61, 717-724.
, B. W., Ortel, B., Chen, N., Redmond, R. W., Hasan, T. (
31. 2005) Influence of substitutions on asymmetric dihydroxychlorins with regard to intracellular uptake, subcellular localization and photosensitization of Jurkat cells. Photochem. Photobiol. 78, 17-28.
< , F., Wiehe, A., Nöbel, M., Senge, M. O., Omari, S. A., Böhm, F., John, M., Röder, B. (https://doi.org/10.1016/j.jphotobiol.2004.08.010>
32. 2000) Use of alkaline comet assay to assess DNA repair after m-THPC-PDT. J. Photochem. Photobiol. B. 56, 118-131.
< , N., Keminon, E., Eleouet, S., Le Neel, T., Auget, J. L., Vonarx, V., Carre, J., Lajat, Y., Patrice, T. (https://doi.org/10.1016/S1011-1344(00)00053-1>
33. 2004) The effect of photofrin on DNA strand breaks and base oxidation in HaCaT keratinocytes: a comet assay study. Photochem. Photobiol. 79, 105-113.
< , J. A. Traynor, N. J. Brancaleon, L. Moseley, H. (https://doi.org/10.1111/j.1751-1097.2004.tb09864.x>
34. 2003) Comparison of comet assay, electron microscopy, and flow cytometry for detection of apoptosis. J. Histochem. Cytochem. 51, 837-885.
< , S., Zhu, Y., Matsui, T., Tipirneni, N., Yasuhara, Y., Kaneki, M., Resenzweig, A., Martyn, J. A. J (https://doi.org/10.1177/002215540305100703>