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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Comparison of excitation and emission ratiometric fluorescence methods for quantifying the membrane dipole potential
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Comparison of excitation and emission ratiometric fluorescence methods for quantifying the membrane dipole potential

机译:激发和发射比率荧光法定量膜偶极电位的比较

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摘要

We are interested in developing fluorescence methods for quantifying lateral variations in the dipole potential across cell surfaces. Previous work in this laboratory showed that the ratio of fluorescence intensities of the voltage-sensitive dye di-8-ANEPPS using excitation wavelengths at 420 and 520 nm correlates well with measurements of the dipole potential. In the present work we evaluate the use of di-8-ANEPPS and an emission ratiometric method for measuring dipole potentials, as Bullen and Saggau (Biophys. J. 65 (1999) 2272-2287) have done to follow changes in the membrane potential in the presence of an externally applied field. Emission ratiometric methods have distinct advantages over excitation methods when applied to fluorescence microscopy because only a single wavelength is needed for excitation. We found that unlike the excitation ratio, the emission ratio does not correlate with the dipole potential of vesicles made from different lipids. A difference in the behaviour of the emission ratio in saturated compared to unsaturated lipid vesicles was noted. Furthermore, the emission ratio did not respond in the same way as the excitation ratio when cholesterol, 6-ketocholestanol, 7-ketocholesterol, and phloretin were added to dimyristoylphosphatidylcholine (DMPC) vesicles. We attribute the lack of correlation between the emission ratio and the dipole potential to simultaneous changes in membrane fluidity caused by changes in membrane composition, which do not occur when the electric field is externally applied as in the work of Bullen and Saggau. Di-8-ANEPPS can, thus, only be used via an excitation ratiometric method to quantify the dipole potential. (c) 2006 Elsevier B.V. All rights reserved.
机译:我们对开发荧光方法以量化整个细胞表面偶极电位的横向变化感兴趣。在该实验室中的先前工作表明,使用在420和520 nm处的激发波长,压敏染料di-8-ANEPPS的荧光强度之比与偶极电势的测量非常相关。在当前的工作中,我们评估了di-8-ANEPPS的使用和发射比率测量法测量偶极电位的方法,正如Bullen和Saggau(Biophys。J. 65(1999)2272-2287)所做的那样,以追踪膜电位的变化在存在外部应用领域的情况下。当应用于荧光显微镜时,发射比率测量方法比激发方法具有明显的优势,因为激发仅需要一个波长。我们发现,与激发率不同,发射率与由不同脂质制成的囊泡的偶极电位不相关。注意到与不饱和脂质囊泡相比,饱和脂质中的发射比的行为有所不同。此外,当向二肉豆蔻酰基磷脂酰胆碱(DMPC)囊泡中添加胆固醇,6-酮胆甾醇,7-酮胆固醇和促肾上腺皮质激素时,发射率与激发率的反应不同。我们将发射率与偶极电势之间缺乏相关性归因于膜组成变化引起的膜流动性的同时变化,而当在外部施加电场时(如在布伦和萨高的工作中),这种情况不会发生。因此,Di-8-ANEPPS只能通过激励比率法来量化偶极子电势。 (c)2006 Elsevier B.V.保留所有权利。

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