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首页> 外文期刊>Journal of Microscopy >Comparison and accuracy of methods to determine the confocal volume for quantitative fluorescence correlation spectroscopy.
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Comparison and accuracy of methods to determine the confocal volume for quantitative fluorescence correlation spectroscopy.

机译:确定定量荧光相关光谱共焦体积的方法的比较和准确性。

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摘要

Single molecule detection based on fluorescent labels offers the possibility to gain not only qualitative but also quantitative insight into specific functions of complex biological systems. Fluorescence correlation spectroscopy is one of the favourite techniques to determine concentrations and diffusion constants as well as molecular brightness of molecules in the pico- to nano-molar concentration range, with broad applications in biology and chemistry. Although fluorescence correlation spectroscopy in principle has the potential to measure absolute concentrations and diffusion coefficients, the necessity to know the exact size and shape of the confocal volume very often hampers the possibility to obtain quantitative results and restricts fluorescence correlation spectroscopy to relative measurements mainly. The determination of the confocal volume in situ is difficult because it is sensitive to optical alignment and aberrations, optical saturation and variations of the index of refraction as observed in biological specimen. In the present contribution, we compare different techniques to characterize the confocal volume and to obtain the confocal parameters by fluorescence correlation spectroscopy curve fitting, a fluorescence correlation spectroscopy dilution series and confocal scanning of fluorescent beads. The results are compared in the view of quantitative fluorescence correlation spectroscopy measurement and analysis. We investigate how unavoidable artefacts caused by a non-ideal confocal volume can be experimentally determined and validated.
机译:基于荧光标记的单分子检测提供了不仅对复杂生物系统的特定功能进行定性而且定量的洞察的可能性。荧光相关光谱法是确定皮克至纳摩尔浓度范围内分子的浓度和扩散常数以及分子亮度的常用技术之一,在生物学和化学领域具有广泛的应用。尽管原则上荧光相关光谱法具有测量绝对浓度和扩散系数的潜力,但了解共聚焦体积的确切大小和形状的必要性经常会阻碍获得定量结果的可能性,并将荧光相关光谱法主要限于相对测量。共焦体积的原位测定很困难,因为它对光学标本和像差,光学饱和度以及在生物样本中观察到的折射率变化敏感。在目前的贡献中,我们比较了不同的技术来表征共焦体积并通过荧光相关光谱曲线拟合,荧光相关光谱稀释系列和荧光珠的共聚焦扫描获得共焦参数。从定量荧光相关光谱测量和分析的角度比较了结果。我们研究如何通过实验确定和验证由非理想共焦体积引起的不可避免的伪像。

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