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Original Article

Photodegradation of Protoporphyrin-dimethylester in Solution and in Organized Environments

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Pages 475-484 | Received 28 Jun 1993, Accepted 03 Sep 1993, Published online: 03 Jul 2009

References

  • Carlsson D.J., Mendenhall G.D., Suprunchuck J., Wiles D.M. Single oxygen (1Δg) quenching in the liquid phase by metal(ii) chelates. Journal of the American Chemical Society 1972; 94: 8960–8962
  • Carlsson D.J., Suprunchuck J., Wiles D.M. The quenching of singlet oxygen (1Δg) by transition metal chelates. Canadian Journal of Chemistry 1974; 52: 3728–3737
  • Cox G.S., Krieg M., Whitten D.G. Self-sensitized photooxidation of protoporhyrin IX derivatives in aqueous surfactant solutions: product and mechanistic studies. Journal of the American Chemical Society 1982; 104: 6930–6937
  • Cox G.S., Whitten D.G. Mechanisms for the photooxidation of protoporphyrin IX in solution. Journal of the American Chemical Society 1982; 104: 516–521
  • Cubeddu R., Keir W.F., Ramponi R., Truscott T.G. Photophysical properties of porphyrin-chlorin systems in the present of surfactants. Photochemistry and Photobiology 1987; 46: 633–638
  • Foote C.S., Peters J.W. Chemistry of singlet oxygen. XIV. A reactive intermediate in sulfide photooxidation. Journal of the American Chemical Society 1971; 93: 3795–3796
  • Giniûnas L., Rotomskis R., Smilgevicius V., Piskarskas A., Didziapetriene J., Blozneltyte L., Gricûte L. Activity of haematoporphyrin derivative photoproduct in photodynamic therapy in vivo. Lasers in Medical Science 1991; 6: 425–428
  • Gollnick K. Type II photooxygenation reactions in solution. Advances in Photochemistry 1968; 6: 1–122
  • Horsey B.E., Whitten D.G. Environmental effects on photochemical reactions: contrasts in the photooxidation behaviour of protoporphyrin IX in solution, monolayer films, organized monolayer assemblies, and micelles. Journal of the American Chemical Society 1978; 100: 1293–1295
  • Hovey M.C. Micellar photochemistry. Photooxidations with intramicellar-generated singlet oxygen. Journal of the American Chemical Society 1982; 104: 4196–4202
  • Inhoffen H.H., Brockmann H., Jr, Bliesener K.-M. Photoprotoporphyrine und ihre Umwandlung in Spirographis- sowie Isospirographisporphyrin. Liebigs Annalen der Chemie 1969; 730: 173–185
  • Kennedy J.C., Pottier R.H. Endogenous protoporphyrin IX, a clinically useful photosensitizer for photodynamic therapy. Journal of Photochemistry and Photobiology, B 1992; 14: 275–292
  • Kessel D., Schulz V. Sites of photosensitization by protoporphyrin and tin protoporphyrin in leukemia L1210 cells. Journal of Photochemistry and Photobiology, B 1990; 6: 87–92
  • König K., Schneckenburger H., Rück A., Steiner R. In vivo photoproduct formation during PDT with ALA-induced endogenous porphyrin. Journal of Photochemistry and Photobiology, B 1992; 18: 287–290
  • Krasnovsky A.A. Photoluminescence of singlet oxygen in pigment solutions. Journal of Photochemistry and Photobiology, B 1979; 29: 29–36
  • Krieg M., Whitten D.G. Self-sensitized photooxidation of protoporphyrin IX and related free-base porphyrins in natural and model membrane systems. Evidence for novel photooxidation pathways involving amino acids. Journal of the American Chemical Society 1984a; 106: 2477–2479
  • Krieg M., Whitten D.G. 1. Self-sensitized photooxidation of protoporphyrin IX and related porphyrins in erythrocyte ghosts and microemulsions: a novel photooxidation pathway involving singlet oxygen. Journal of Photochemistry 1984b; 25: 235–252
  • Kummermehr J., Trott K.R. Rate of repopulation in a slow and fast growing mouse tumor. Progress in Radio-Oncology, K.H. Kärcher, D. Kogelnick, G. Reinartz, 1982; 299–307, In
  • Le Roux J.P., Goasdone C. Isomerisation d'endoperoxydes-1,4 de polyarylfulvenes en dioxetannes-1,2. Tetrahedron 1975; 31: 2761–2767
  • Mang T.S., Dougherty T.J., Potter W.-R., Boyle D.G., Sommer S., Moan J. Photobleaching of porphyrins used in photodynamic therapy and implications for therapy. Photochemistry and Photobiology 1987; 45: 501–506
  • Moan J. Effect of bleaching of porphyrin sensitizers during photodynamic therapy. Cancer Letters 1986; 33: 45–53
  • O'Connor D.V., Phillips D. Time-Correlated Single Photon Counting. Academic, London 1984
  • Potter W.R., Mang S., Dougherty T.J. The theory of photodynamic therapy dosimetry: consequence of photodestruction of sensitizer. Photochemistry and Photobiology 1987; 46: 97–101
  • Richert C. A long-time stable liposome formulation for porphyrinoid photosensitizers. Journal of Photochemistry and Photobiology, B 1993; 19: 67–69
  • Roberts W.G., Smith K.M., McCullough J.L., Berns M.W. Skin photosensitivity and photodestruction of several potential photodynamic sensitizers. Photochemistry and Photobiology 1989; 49: 431–438
  • Röder B., Wabnitz H. Time-resolved fluorescence spectroscopy of hematoporphyrin, meso porphyrin, pheophorbite a and chlorin e6 in ethanol and aqueous solution. Journal of Photochemistry and Photobiology, B 1987; 1: 103–113
  • Rück A., Hildebrandt C., Köllner T., Schneckenburger H., Steiner R. Competition between photobleaching and fluorescence increase of photosensitizing porphyrins and tetrasulfonated chloroaluminium phthalocyanine. Journal of Photochemistry and Photobiology, B 1990; 5: 311–319
  • Spikes J.D. Quantum yields and kinetics of the photobleaching of hematoporphyrin, photofrin II, tetra(4-sulfatophenyl)-porphin and uroporphyrin. Photochemistry and Photobiology 1992; 55: 797–808
  • Sroka R., Beyer W., Krug M., Noack A., Unsöld E., Ell C. Laser light application and light monitoring for photodynamic therapy in hollow organs. Lasers in Medical Science 1993; 8: 63–68
  • Valat P., Reinhart G.D., Jameson D.M. Application of time-resolved fluorometry to the resolution of porphyrin-photoproduct mixtures. Photochemistry and Photobiology 1988; 47: 787–790
  • Wayne R.P. Singlet molecular oxygen. Advances in Photochemistry 1969; 7: 311–371
  • Wessels J.M., Strauß W., Seidlitz H.K., Rück A., Schneckenburger H. Intracellular localization of meso-tetraphenylporphine tetrasulfonate probed by time-resolved and microscopic fluorescence spectroscopy. Journal of Photochemistry and Photobiology, B 1992; 12: 275–284
  • Wessels J.M. Fluoreszenzspektroskopische Untersuchungen zur Aufnahme und lokalisation von Photosensibilisatoren in vitro PhD thesis. Ludwig-Maximilians University Munich. 1993
  • Wilson S.L., Schuster G.B. Reaction of singlet oxygen with enol esters: a new path implicating a dipolar intermediate. Journal of the American Chemical Society 1983; 105: 679–681

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