Photodegradation of Protoporphyrin-dimethylester in Solution and in Organized Environments
- 1 January 1993
- journal article
- research article
- Published by Taylor & Francis in International Journal of Radiation Biology
- Vol. 64 (5) , 475-484
- https://doi.org/10.1080/09553009314551691
Abstract
The degradation of sensitizers used in photodynamic therapy (PDT) involves photooxidation either by molecular oxygen or by oxygen intermediates which leads to hydroxyaldehyde and formyl products or to ring opening. Our investigations focused on the spectroscopic changes which protoporphyrin-dimethylester (PP) exhibits upon irradiation. As the microenvironment strongly influences the effects, we used an aprotic organic solvent, l-α-phosphatidylcholine dioleoyl (DOPC) liposomes and isogenic fibrosarcoma cells (SSKII) as carriers for PP. Hydroxyaldehyde product isomers develop a new absorption band centred around 670 nm and a new emission band at 676 nm. These characteristics can be used to discriminate them from formyl products and intact PP. In organic solvents, the formation of the hydroxyaldehyde products dominates. In DOPC liposomes and cells, the hydroxyaldchyde yield drops and photooxidation results in attack of the macrocycle. Time-resolved fluorescence spectroscopy of monomeric PP in an organic solvent gives a monoexponential decay time τ of 10·1 ± 1·3 ns. Upon irradiation a second component with a decay time of 4·9 ± 0·6 ns, resulting from the hydroxyaldchyde product, was detected. In liposomes and cells the monomeric decay time was significantly longer (15 ns) due to the altered microenvironment. Additionally, we observed in liposomes and in cells a small contribution of a short component (1 ns) which is attributed to an aggregated sensitizer species. In irradiated cells the aggregated fraction doubles, indicating a change in the microenvironment caused by the photodynamic action of the sensitizer.Keywords
This publication has 30 references indexed in Scilit:
- Activity of haematoporphyrin derivative photoproduct in photodynamic therapy in vivoLasers in Medical Science, 1991
- APPLICATION OF TIME-RESOLVED FLUOROMETRY TO THE RESOLUTION OF PORPHYRIN-PHOTOPRODUCT MIXTURESPhotochemistry and Photobiology, 1988
- PHOTOPHYSICAL PROPERTIES OF PORPHYRIN‐CHLORIN SYSTEMS IN THE PRESENCE OF SURFACTANTSPhotochemistry and Photobiology, 1987
- PHOTOBLEACHING OF PORPHYRINS USED IN PHOTODYNAMIC THERAPY AND IMPLICATIONS FOR THERAPYPhotochemistry and Photobiology, 1987
- Effect of bleaching of porphyrin sensitizers during photodynamic therapyCancer Letters, 1986
- Reaction of singlet oxygen with enol esters: a new path implicating a dipolar intermediateJournal of the American Chemical Society, 1983
- Photochemical reactivity in organized assemblies. 30. Self-sensitized photooxidation of protoporphyrin IX derivatives in aqueous surfactant solutions; product and mechanistic studiesJournal of the American Chemical Society, 1982
- Micellar photochemistry. Photooxidation with intramicellar-generated singlet oxygenJournal of the American Chemical Society, 1982
- The Quenching of Singlet Oxygen (1Δg) by Transition Metal ChelatesCanadian Journal of Chemistry, 1974
- Zur weiteren Kenntnis des Chlorophylls und des Hämins, XXX1)Photoprotoporphyrine und ihre Umwandlung in Spirographis‐ sowie Isospirographis‐porphyrin2)European Journal of Organic Chemistry, 1969