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Infrared spectroscopy of fluid lipid bilayers

机译:流体脂质双层的红外光谱

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Infrared spectroscopy is a powerful technique for examining lipid bilayers; however, it says little about the fluidity of the bilayer-a key physical aspect. It is shown here that it is possible to both acquire spectroscopic data of supported lipid bilayer samples and make measurements of the membrane fluidity. Attenuated total reflection-Fourier transform infrared spectroscopy (ATR-FT-IR) is used to obtain the spectroscopic information and fluorescence recovery after photobleaching (FRAP) is used to determine the fluidity of the samples. In the infrared spectra of lipid bilayers composed of 1 -palmitoyl-2-oleoylsn-glycero-3-phosphocholine, the following major peaks were observed; v(as)(CH3) 2954 cm(-1), v(s)(CH3) 2870 cm(-1), V-as(CH2) 2924 cm(-1), v(s)(CH2) 2852 cm(-1), v(C=O) 1734 cm(-1), delta(CH2) 1463-1473 cm(-1), V-as(PO2-) 1226 cm(-1), V-s(PO2-) 1084 cm(-1), and V-as(N+(CH3)(3)) 973 cm(-1). The diffusion coefficient of the same lipid bilayer was measured to be 3.5 +/- 0.5 mu m(2)/S With visual recovery also noted through use of epifluorescence microscopy. FRAP and visual data confirm the formation of a uniform, mobile supported lipid bilayer. The combination of ATR-FT-IR and FRAP provides complementary data giving a more complete picture of fully hydrated model membrane systems.
机译:红外光谱是检查脂质双层的有力技术。但是,它几乎没有说明双层的流动性,这是关键的物理方面。在此表明,既可以获取所支持的脂质双层样品的光谱数据,又可以测量膜的流动性。衰减全反射-傅立叶变换红外光谱(ATR-FT-IR)用于获取光谱信息,光漂白(FRAP)后的荧光恢复用于确定样品的流动性。在由1-棕榈酰基-2-油酰基sn-甘油-3-磷酸胆碱组成的脂质双层的红外光谱中,观察到以下主要峰; v(as)(CH3)2954厘米(-1),v(s)(CH3)2870厘米(-1),V-as(CH2)2924厘米(-1),v(s)(CH2)2852厘米(-1),v(C = O)1734 cm(-1),delta(CH2)1463-1473 cm(-1),V-as(PO2-)1226 cm(-1),Vs(PO2-) 1084厘米(-1)和V-as(N +(CH3)(3))973厘米(-1)。相同脂质双层的扩散系数经测量为3.5 +/- 0.5μm(2)/ S,通过使用落射荧光显微镜也观察到了视觉恢复。 FRAP和视觉数据证实了均匀的,可移动的脂质双分子层的形成。 ATR-FT-IR和FRAP的组合提供了补充数据,为完全水合模型膜系统提供了更完整的图像。

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