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通过荧光相关光谱法对荧光分子进行超灵敏检测与鉴定:对免疫生物学的影响

Ultrasensitive detection and identification of fluorescent molecules by FCS: impact for immunobiology.

作者信息

Földes-Papp Z, Demel U, Tilz G P

机构信息

Clinical Immunology and Jean Dausset Laboratory, Graz University Medical School and Hospital, Auenbruggerplatz 8, A-8036 Graz, LKH, Austria.

出版信息

Proc Natl Acad Sci U S A. 2001 Sep 25;98(20):11509-14. doi: 10.1073/pnas.181337998.

Abstract

An experimental application of fluorescence correlation spectroscopy is presented for the detection and identification of fluorophores and auto-Abs in solution. The recording time is between 2 and 60 sec. Because the actual number of molecules in the unit volume (confocal detection volume of about 1 fl) is integer or zero, the fluorescence generated by the molecules is discontinuous when single-molecule sensitivity is achieved. We first show that the observable probability, N, to find a single fluorescent molecule in the very tiny space element of the unit volume is Poisson-distributed below a critical bulk concentration c*. The measured probability means we have traced, for example, 5 x 10(10) fluorophore molecules per ml of bulk solution. The probability is related to the average frequency, C, that the volume of detection contains a single fluorescent molecule and to the concentration, c, of the bulk solution. The analytical sensitivity of an assay is calculated from the average frequency C. In the Goodpasture experiment, we determined as analytical sensitivity a probability of 99.1% of identifying one single immune complex. Under these conditions, a single molecule event is proven. There exist no instrumental assumptions of our approach on which the experiment itself, the theoretical background, or the conclusion are based. Our results open up a broad field for analytics and diagnostics in solution, especially in immunology.

摘要

本文介绍了荧光相关光谱技术在溶液中检测和识别荧光团及自身抗体的实验应用。记录时间在2至60秒之间。由于单位体积(共聚焦检测体积约为1飞升)内分子的实际数量为整数或零,当实现单分子灵敏度时,分子产生的荧光是不连续的。我们首先表明,在低于临界本体浓度c*时,在单位体积的极小空间元素中找到单个荧光分子的可观测概率N服从泊松分布。例如,测量到的概率意味着我们已经追踪到每毫升本体溶液中有5×10¹⁰个荧光团分子。该概率与检测体积中包含单个荧光分子的平均频率C以及本体溶液的浓度c有关。分析测定的灵敏度由平均频率C计算得出。在Goodpasture实验中,我们确定识别单个免疫复合物的概率为99.1%作为分析灵敏度。在这些条件下,证明了单分子事件的存在。我们的方法不存在作为实验本身、理论背景或结论基础的仪器假设。我们的结果为溶液中的分析和诊断,特别是在免疫学领域,开辟了广阔的前景。

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