Levitt James A, Chung Pei-Hua, Suhling Klaus
J Biomed Opt. 2015 Sep;20(9):096002. doi: 10.1117/1.JBO.20.9.096002.
Spectrally resolved confocal microscopy and fluorescence lifetime imaging have been used to measure the polarity of lipid-rich regions in living HeLa cells stained with Nile red. The emission peak from the solvatochromic dye in lipid droplets is at a shorter wavelength than other, more polar, stained internal membranes, and this is indicative of a low polarity environment. We estimate that the dielectric constant, ϵ , is around 5 in lipid droplets and 25<ϵ<40 in other lipid-rich regions. Our spectrally resolved fluorescence lifetime imaging microscopy (FLIM) data show that intracellular Nile red exhibits complex, multiexponential fluorescence decays due to emission from a short lifetime locally excited state and a longer lifetime intramolecular charge transfer state. We measure an increase in the average fluorescence lifetime of the dye with increasing emission wavelength, as shown using phasor plots of the FLIM data. We also show using these phasor plots that the shortest lifetime decay components arise from lipid droplets. Thus, fluorescence lifetime is a viable contrast parameter for distinguishing lipid droplets from other stained lipid-rich regions. Finally, we discuss the FLIM of Nile red as a method for simultaneously mapping both polarity and relative viscosity based on fluorescence lifetime measurements.
光谱分辨共聚焦显微镜和荧光寿命成像已被用于测量用尼罗红染色的活HeLa细胞中富含脂质区域的极性。脂质滴中溶剂化显色染料的发射峰波长比其他极性更强的染色内膜短,这表明其环境极性较低。我们估计脂质滴中的介电常数ϵ约为5,而其他富含脂质的区域中25<ϵ<40。我们的光谱分辨荧光寿命成像显微镜(FLIM)数据表明,细胞内尼罗红由于短寿命局部激发态和长寿命分子内电荷转移态的发射而呈现复杂的多指数荧光衰减。正如使用FLIM数据的相量图所示,我们测量到随着发射波长增加,染料的平均荧光寿命增加。我们还使用这些相量图表明,最短寿命衰减成分来自脂质滴。因此,荧光寿命是区分脂质滴与其他染色富含脂质区域的可行对比参数。最后,我们讨论了尼罗红的FLIM作为一种基于荧光寿命测量同时绘制极性和相对粘度的方法。