PHOTOINDUCED DEGRADATION AND MODIFICATION OF PHOTOFRIN II IN CELLS in vitro
- 1 March 1988
- journal article
- research article
- Published by Wiley in Photochemistry and Photobiology
- Vol. 47 (3) , 363-367
- https://doi.org/10.1111/j.1751-1097.1988.tb02738.x
Abstract
Abstract—Human cells of the line NHIK 3025 were incubated with Photofrin II (PII) and exposed to light. Fluorescence‐ and absorption spectra of PII in the cells were measured. Light exposure resulted in a degradation of PII in the cells and changes in the shape of the fluorescence spectra. These changes are probably partly due to a photochemical modification of PII and to a relocalization of PII in the cells. Notably, a destruction of binding sites for PII on or close to proteins was caused by the light exposure. The rate of the light‐induced decay of the porphyrin fluorescence intensity was only slightly increasing with the PII concentration, indicating that each porphyrin molecule is mainly degraded by photoproducts originating from itself. On the other hand, the rate of the degradation of porphyrin binding sites on the proteins increased with increasing PII concentrations.The excitation spectrum of PII in cells has a peak at285–290 nm attributed to energy transfer from proteins to porphyrins located close to the proteins. The intensity of this peak relative to the intensity of the Soret band increases with decreasing porphyrin concentrations. This might indicate that some of the binding sites close to proteins have a higher affinity for the porphyrin than binding sites at longer distances from the proteins.This publication has 11 references indexed in Scilit:
- 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
- PORPHYRIN PHOTOSENSITIZATION OF PROTEINS IN CELL MEMBRANES AS STUDIED BY SPIN‐LABELLING AND BY QUANTIFICATION OF DTNB‐REACTIVE SH‐GROUPSPhotochemistry and Photobiology, 1986
- The binding of dihematoporphyrin ether (photofrin II) to human serum albuminClinica Chimica Acta; International Journal of Clinical Chemistry, 1985
- Self-sensitized photo-oxidation of protoporphyrin IX and related porphyrins in erythrocyte ghosts and microemulsions: A novel photo-oxidation pathway involving singlet oxygenJournal of Photochemistry, 1984
- Uptake of the components of hematoporphyrin derivative by cells and tumoursCancer Letters, 1983
- PHOTOOXIDATION AND SINGLET OXYGEN SENSITIZATION BY PROTOPORPHYRIN IX AND ITS PHOTOOXIDATION PRODUCTSPhotochemistry and Photobiology, 1982
- INTERACTION OF HUMAN SERUM ALBUMIN WITH HEMATOPORPHYRIN AND ITS ZN2+‐AND FE3+‐DERIVATIVESInternational Journal of Peptide and Protein Research, 1981
- The mechanism of photodynamic inactivation of human cells in vitro in the presence of haematoporphyrinBritish Journal of Cancer, 1979
- Lifetime and reactivity of singlet oxygen in an aqueous micellar system: A pulsed nitrogen laser studyChemical Physics Letters, 1978