Paper
1 February 1995 Intracellular relocalization of anionic photosensitizers measured by cw and time-gated microscopy and spectroscopy
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Proceedings Volume 2329, Optical and Imaging Techniques in Biomedicine; (1995) https://doi.org/10.1117/12.200888
Event: International Symposium on Biomedical Optics Europe '94, 1994, Lille, France
Abstract
Intracellular modifications of anionic photosensitizers during PDT were observed, dependent on the growth phase of the incubated cells. In addition to steady-state spectroscopy, time- resolved fluorescence spectra between different time gates were measured. Comparative results were obtained for the sensitizers meso-tetra(4-sulfonatophenyl)porphyrine (TPPS4) and aluminumsulfophthalocyanine (AlS2-3Pc). In both cases relocalization of the sensitizer could be observed exclusively for cells in the growing phase, whereas no relocalization was detected for cells in the stationary phase. Moreover, time-gated spectra were different for the two cell types. The formation of a fluorescent band around 615 nm during PDT for the sensitizer TPPS4 was observed mainly for cells in the growing phase. This species was correlated with a short fluorescence decay time (< 5 ns). Similar observations were done with AlS2-3Pc. A fluorescence band blue-shifted in the same order of magnitude (about 30 nm from the original band) and measured predominantly between an `early' time-gate (0-5 ns) was detected for cells in the growing phase.
© (1995) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Angelika C. Rueck, Herbert Schneckenburger, Wolfgang S. L. Strauss, Michael H. Gschwend, and Rudolf W. Steiner "Intracellular relocalization of anionic photosensitizers measured by cw and time-gated microscopy and spectroscopy", Proc. SPIE 2329, Optical and Imaging Techniques in Biomedicine, (1 February 1995); https://doi.org/10.1117/12.200888
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KEYWORDS
Luminescence

Photodynamic therapy

Spectroscopy

Fluorescence spectroscopy

Microscopy

Molecules

Fluorescence correlation spectroscopy

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