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A new approach to polarized fluorescence using phase and modulation fluorometry
Authors:H Pottel  B W Van der Meer  W Herreman  H Depauw
Institution:(1) Interdisciplinair Research Centrum, Katholieke Universiteit Leuven, Campus Kortrijk, B-8500 Kortrijk, Belgium;(2) Department of Pharmacology, University of Texas, Health Science Center at Dallas, 5323 Harry Hines Boulevard, 75235 Dallas, Texas, USA;(3) RUCA-Laboratorium voor Biochemie van de mens, Rijksuniversitair Centrum Antwerpen, 171 Groenenborgerlaan, B-2020 Antwerpen, Belgium;(4) Present address: Thrombosis/Hematology Research Program, OMRF, 825 N.E. 13th Street, 73104 Oklahoma City, OK, USA
Abstract:In the preceding paper, an alternative method is described for obtaining information about the reorientational behavior of a fluorophore in a membrane system from frequency domain measurements. To demonstrate this new analysis procedure, we present data for the probe-molecule 1,6-diphenyl-1,3,5-hexatriene (DPH) in l-agr-dimyristoyl- and l-agr-dipalmitoylphosphatidylcholine (DMPC and DPPC) obtained with two different phase fluorometers: the SLM 4800A Subnanosecond Spectrofluorometer which has only three fixed frequencies available (6, 18 and 30 MHz) and the recently constructed continuously variable multifrequency phasefluorometer (Gratton and Limkeman 1983).It will be shown that reasonable information about the anisotropy behavior of a fluorophore can be obtained even if only three frequencies are used. The phase modulation technique was also used to check the new expression for the anisotropy, r(t), called the general model and introduced by Van der Meer et al. (1984). The parameters langP 2rang, langP 4rang and D, obtained from the nonlinear least squares fit (Bevington 1969) for this general model, confirm the results from the pulse technique of Ameloot and coworkers (Ameloot et al. 1984; Pottel et al. 1986).
Keywords:Fluorescence anisotropy  phase fluorometry  diphenylhexatriene
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