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用于具有高度重叠发射光谱的探针的荧光光谱相关光谱法(FSCS)。

Fluorescence spectral correlation spectroscopy (FSCS) for probes with highly overlapping emission spectra.

作者信息

Benda Aleš, Kapusta Peter, Hof Martin, Gaus Katharina

出版信息

Opt Express. 2014 Feb 10;22(3):2973-88. doi: 10.1364/OE.22.002973.

Abstract

We present a fluorescence correlation spectroscopy (FCS) approach to obtain spectral cross-talk free auto- and cross-correlation functions for probes with highly overlapping emission spectra. Confocal microscopes with either a hyperspectral EM-CCD or six-channel PMT array spectral detection were used, followed by a photon filtering correlation approach that results in spectral unmixing. The method is highly sensitive and can distinguish between Atto488 and Oregon Green 488 signals so that auto-correlation curves can be fitted without the need for cross-talk correction. We also applied the approach to the membrane dye Laurdan whose emission is dependent on the lipid order within the bilayer. With fluorescence spectral correlation spectroscopy (FSCS), we could obtain spectral cross-talk free auto- and cross-correlation functions corresponding to Laurdan located in liquid ordered and liquid disordered phases.

摘要

我们提出了一种荧光相关光谱法(FCS),用于为发射光谱高度重叠的探针获取无光谱串扰的自相关和互相关函数。使用配备了高光谱EM-CCD或六通道PMT阵列光谱检测的共聚焦显微镜,随后采用光子滤波相关方法进行光谱解混。该方法具有高灵敏度,能够区分Atto488和俄勒冈绿488信号,从而无需进行串扰校正即可拟合自相关曲线。我们还将该方法应用于膜染料劳丹,其发射取决于双层内的脂质有序性。通过荧光光谱相关光谱法(FSCS),我们能够获得与处于液晶态和液晶无序态的劳丹相对应的无光谱串扰的自相关和互相关函数。

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