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Cholesterol Dependence of Cell Membrane Dynamics

机译:胆固醇对细胞膜动力学的依赖性

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摘要

Membranes of living cells are characterized by laser-assisted fluorescence microscopy, in particular a combination of microspectrofluorometry, total internal reflection fluorescence microscopy (TIRFM) and fluorescence decay kinetics. The generalized polarization (GP, characterizing a spectral shift which depends on the phase of membrane lpids), the time constant of fluorescence anisotropy (τ_r) as well as the fluorescence lifetime (τ) of the membrane marker laurdan revealed to be appropriate measures for membrane stiffness and fluidity. GP decreased with increasing temperature and was always higher for the plasma membrane than for intracellular membranes. The latter effect was correlated with the intracellular content of cholesterol, which could be modified using defined protocols of depletion or enrichment. Concomitant with generalized polarization the fluorescence lifetime τ increased with the content of cholesterol. Changes of cholesterol amounts in cell membranes have previously been related to specific diseases and may have some influence on the uptake of pharmaceutical agents.
机译:活细胞膜的特征在于激光辅助荧光显微镜,特别是微光谱荧光法,全内反射荧光显微镜(TIRFM)和荧光衰减动力学的组合。广义极化(GP,表征取决于膜脂质相位的光谱偏移),荧光各向异性的时间常数(τ_r)以及膜标记物劳尔丹的荧光寿命(τ)被证明是对膜的适当测量刚度和流动性。 GP随着温度的升高而降低,质膜的GP始终高于细胞内膜。后者的作用与胆固醇的细胞内含量有关,可以使用定义的耗竭或富集方案对其进行修饰。与广义极化同时,荧光寿命τ随胆固醇含量的增加而增加。以前,细胞膜中胆固醇含量的变化与特定疾病有关,并且可能对药物的吸收产生某些影响。

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