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Conference Committee | ||
Mechanism of cell destruction and cell protection during methylene-blue-induced PDT | 2 | |
Type III photosensitization: attempt for quantification and a way toward new sensitizers | 11 | |
Eradication of bacterial species via photosensitization | 18 | |
Characterization of the cellular uptake of 5-aminolevulinic acid | 28 | |
Photodynamic treatment of pancreatic cancer cells: genotoxicity and chromosome damage induced by red light and zinc tetrasulfonated phthalocyanines (ZnPcS[subscript 4]) | 38 | |
Evaluation of photodynamically induced damage to healthy eye tissues of rabbits using the second-generation photosensitizers bacteriochlorin a and mTHPC | 52 | |
Chlorins with six-membered imide ring as prospective sensitizers for cancer PDT | 59 | |
Experimental study of PDT with aluminum sulphophthalocyanine using sodium ascorbate and hyperbaric oxygenation | 68 | |
Formation of protoporphyrin IX in mouse skin after topical application of 5-aminolevulinic acid and its methyl esther | 77 | |
ALA-PDT of the normal rat esophagus: efficiency and safety largely depends on the timing of illumination | 82 | |
Latest results of 5-ALA-based fluorescence diagnosis and other medical disciplines | 90 | |
Quantitative methods for studying the role of free radicals in biology | 100 | |
Effect of wavelength and light dose in photodynamic therapy of the normal rat esophagus with ALA-induced photosensitization | 112 | |
Cooperative effects of photosensitized cell killing | 120 | |
Theoretical model for fluorescent field calculation in nonhomogeneous and scattering biological tissues | 125 | |
Interaction between a photosensitizer, chemotherapeutic drug, and HSA: implications for photodynamic therapy | 137 | |
5-aminolevulinic acid (ALA) mediated photodynamic therapy of bladder cancer cell lines | 143 | |
Aluminium sulphophthalocyanine as an NIR photosensitizer for PDT | 148 | |
PDT-induced apoptosis in bladder carcinoma cells | 152 | |
Clearance of protoporphyrin IX from mouse skin after topical application of 5-aminolevulinic acid and its methyl ester | 161 | |
Author Index | 168 |
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