FB Physik, Universität Leipzig, Linnéstrasse 5, 04103, Leipzig, Germany.
J Fluoresc. 1994 Dec;4(4):339-43. doi: 10.1007/BF01881452.
Fluorescence resonance energy transfer (FRET) from NBD-PE to rhodamine-PE has been used to measure the average area occupied by surfactant molecules in lipid bilayers. The Foerster radius has been determined from the spectral overlap of donor fluorescence and acceptor absorption (R 0=4.6 nm). The results of steady-state as well as of time-resolved investigations have been compared. The analysis of time-resolved fluorescence data by means of nonexponential decay functions yields an average area per lipid of 0.65 nm(2) in pure POPC bilayers. The area per surfactant in two-component C12E n /POPC-membranes (n=2, 4, 6) has been determined and compared with the results of X-ray investigations. The surfactant head group seems to adapt a predominantly disordered confirmation within the bilayer.
荧光共振能量转移(FRET)从 NBD-PE 到 rhodamine-PE 已被用于测量表面活性剂分子在脂质双层中占据的平均面积。福斯特半径是从供体荧光和受体吸收的光谱重叠中确定的(R 0=4.6nm)。比较了稳态和时间分辨研究的结果。通过非指数衰减函数对时间分辨荧光数据的分析得出,在纯 POPC 双层中每个脂质的平均面积为 0.65nm(2)。已确定了两种组分 C12E n / POPC-膜(n=2、4、6)中的每个表面活性剂的面积,并与 X 射线研究的结果进行了比较。表面活性剂头基似乎在双层内适应一种主要无序的构象。