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Use of Fourier Transforms in the Analysis of Fluorescence Data. 2. Fluorescenceof Pyrene-Labeled Phosphatidylcholine in Lipid Bilayer Membrane. Test of the Birks Model

机译:傅里叶变换在荧光数据分析中的应用。 2.脂质双层膜中芘标记的磷脂酰胆碱的荧光。 Birks模型的测试

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In this paper the validity of the Birks model has been tested in the case ofpyrene labeled lipid probes in membranes. The Birks model has been proved to be inadequate at high modulation frequency (greater than 3 MHz). Phase properties and lateral distribution of lipids in membranes are frequently studied by fluorescence of pyrene-labeled lipids. The analysis of the data derived from the fluorescence of pyrene-labeled lipids is usually performed by means of the Birks model. The Birks model has been proved correct in describing pyrene fluorescence in isotropic media at low pyrene concentrations, but it failed to describe properly the fluorescence of pyrene molecules embedded into lipid membranes. In this paper we test the validity of the Birks model directly in the case of pyrene-labeled lipid probes in membranes. The steady-state and phase-modulation fluorescence of N-(1-pyrenyl)-decanoyl)phosphatidylcholine in multilamellar vesicles of 1,2-dimyristoyl-L-alpha-phosphatidylcholine has been examined at a wide range of lipid compositions and different temperatures. The model parameter invariant predictions of the Birks model have been tested under the basis of the general methods developed in the preceding paper (part 1 of this series). The model proved to be inadequate at high modulation frequencies. Another indication of the inadequacy of the Birks model is that the fitted model parameters varied on an uncorrelated manner with varying membrane composition.

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