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量子点标记大分子图像关联传输测量中闪烁偏差的检测与校正。

Detection and correction of blinking bias in image correlation transport measurements of quantum dot tagged macromolecules.

作者信息

Durisic Nela, Bachir Alexia I, Kolin David L, Hebert Benedict, Lagerholm B Christoffer, Grutter Peter, Wiseman Paul W

机构信息

Departments of Physics and Chemistry, McGill University, Montreal, Quebec, Canada.

出版信息

Biophys J. 2007 Aug 15;93(4):1338-46. doi: 10.1529/biophysj.107.106864. Epub 2007 May 25.

Abstract

Semiconductor nanocrystals or quantum dots (QDs) are becoming widely used as fluorescent labels for biological applications. Here we demonstrate that fluorescence fluctuation analysis of their diffusional mobility using temporal image correlation spectroscopy is highly susceptible to systematic errors caused by fluorescence blinking of the nanoparticles. Temporal correlation analysis of fluorescence microscopy image time series of streptavidin-functionalized (CdSe)ZnS QDs freely diffusing in two dimensions shows that the correlation functions are fit well to a commonly used diffusion decay model, but the transport coefficients can have significant systematic errors in the measurements due to blinking. Image correlation measurements of the diffusing QD samples measured at different laser excitation powers and analysis of computer simulated image time series verified that the effect we observe is caused by fluorescence intermittency. We show that reciprocal space image correlation analysis can be used for mobility measurements in the presence of blinking emission because it separates the contributions of fluctuations due to photophysics from those due to transport. We also demonstrate application of the image correlation methods for measurement of the diffusion coefficient of glycosyl phosphatidylinositol-anchored proteins tagged with QDs as imaged on living fibroblasts.

摘要

半导体纳米晶体或量子点(QDs)正被广泛用作生物应用中的荧光标记物。在此,我们证明,使用时间图像相关光谱对其扩散迁移率进行荧光涨落分析极易受到纳米颗粒荧光闪烁所导致的系统误差的影响。对在二维空间中自由扩散的链霉亲和素功能化的(CdSe)ZnS量子点的荧光显微镜图像时间序列进行时间相关分析表明,相关函数能很好地拟合常用的扩散衰减模型,但由于闪烁,测量中的传输系数可能会有显著的系统误差。在不同激光激发功率下对扩散量子点样品进行图像相关测量,并对计算机模拟图像时间序列进行分析,证实了我们观察到的效应是由荧光间歇性引起的。我们表明,互易空间图像相关分析可用于存在闪烁发射时的迁移率测量,因为它将光物理引起的涨落贡献与传输引起的涨落贡献区分开来。我们还展示了图像相关方法在测量活成纤维细胞上成像的用量子点标记的糖基磷脂酰肌醇锚定蛋白的扩散系数方面的应用。

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