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Interaction of photosensitizers with liposomes containing unsaturated lipid
Authors:Voszka István  Budai Marianna  Szabó Zsófia  Maillard Philip  Csík Gabriella  Gróf Pál
Institution:Institute of Biophysics and Radiation Biology, Semmelweis University, Puskin Street 9, POB 263, Budapest H-1444, Hungary. voszka@puskin.sote.hu
Abstract:Small unilamellar liposomes were made of dipalmitoyl-phosphatidylcholine and dioleoyl-phosphatidylcholine, and photosensitized by a symmetrically or an asymmetrically substituted glycosilated tetraphenyl-porphyrin derivative. As differential scanning calorimetry and electron paramagnetic resonance spectroscopy (EPR) revealed these porphyrin derivatives were localized in different depth within the lipid bilayer. Both porphyrin derivatives were able to induce photoreaction and consequent structural changes in the membrane. 5-, 12-, or 16-doxyl stearic acid labeled lipid bilayers were applied and the efficiency of photoinduced reaction was followed by the decay of their EPR signal amplitude. Light dose-dependent destruction of nitroxide radical proved to be dependent on the position of spin label. In this process the porphyrin localized in closer connection with the double bond of unsaturated fatty acid was more effective. EPR signal decay was also dependent on the unsaturated fatty acid content of the liposome and the oxygen saturation of the solvent.
Keywords:DOPC  1  2-dioleoyl-sn-glycero-3-phosphocholine  DPPC  1  2-dipalmitoyl-sn-glycero-3-phosphocoline  DSC  differential scanning calorimetry  EPR  electron paramagnetic resonance  PDT  photodynamic therapy  PBS  phosphate-buffered saline  TGPP  5  10  15  d-glucosylphenyl)-porphyrin" target="_blank">20-tetrakis(4-β-d-glucosylphenyl)-porphyrin  TPFP  5  10  d-galactosylphenyl)" target="_blank">15-(4-β-d-galactosylphenyl)  20-(2′  3′  4′  5′  6′-pentafluorophenyl)-porphyrin  TPP  tetraphenyl-porphyrin  5-DSA  5-doxyl stearic acid  12-DSA  12-doxyl stearic acid  16-DSA  16-doxyl stearic acid
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