Time-resolved identification of individual mononucleotide molecules in aqueous solution with pulsed semiconductor lasers

Markus Sauer, Jutta Arden-Jacob, Karl H Drexhage, Florian Göbel, Ulrike Lieberwirth, Klaus Mühlegger, Ralph Müller, Jürgen Wolfrum, Christoph Zander
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引用次数: 46

Abstract

We applied a short-pulse diode laser emitting at 640 nm with a repetition rate of 56 MHz in combination with a confocal microscope to study bursts of fluorescence photons from individual differently labeled mononucleotide molecules in water. Two newly synthesized dyes, an oxazine dye (MR121) and a rhodamine dye (JA53), and two commercially available dyes, a carbocyanine dye (Cy5) and a bora-diaza-indacene dye (Bodipy630/650), were used as fluorescent labels. The time-resolved fluorescence signals of individual mononucleotiode molecules in water were analyzed and identified by a maximum likelihood estimator (MLE). Taking only those single molecule transits which contain more than 30 collected photoelectrons, the two labeled mononucleotide molecules, Cy5-dCTP and Bodipy-dUTP, can be identified by time-resolved fluorescence spectroscopy with a probability of correct classification of greater than 99%. Our results show that at least three differently labeled mononucleotide molecules can be identified in a common aqueous solution. We obtain an overall classification probability of 90% for the time-resolved identification of Cy5-dCTP, MR121-dUTP and Bodipy-dUTP molecules via their characteristic fluorescence lifetimes of 1.05 ± 0.33 ns (Cy5-dCTP), 2.07 ± 0.59 ns (MR121-dUTP) and 3.88 ± 1.71 ns (Bodipy-dUTP).

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脉冲半导体激光在水溶液中单个单核苷酸分子的时间分辨鉴定
我们使用640nm波长的重复频率为56mhz的短脉冲二极管激光,结合共聚焦显微镜,研究了水中单个不同标记的单核苷酸分子的荧光光子爆发。两种新合成的染料,一种嗪染料(MR121)和一种罗丹明染料(JA53),以及两种市售染料,一种碳菁染料(Cy5)和一种硼二氮二茚二烯染料(Bodipy630/650),被用作荧光标记。用最大似然估计器(MLE)分析和鉴定了水中单个单核苷酸分子的时间分辨荧光信号。仅选取含有30个以上收集到的光电子的单分子透射谱,时间分辨荧光光谱就能识别出Cy5-dCTP和Bodipy-dUTP这两个标记的单核苷酸分子,其分类正确率大于99%。我们的结果表明,至少三个不同标记的单核苷酸分子可以识别在一个共同的水溶液。Cy5-dCTP、MR121-dUTP和Bodipy-dUTP分子的特征荧光寿命分别为1.05±0.33 ns (Cy5-dCTP)、2.07±0.59 ns (MR121-dUTP)和3.88±1.71 ns (Bodipy-dUTP),时间分辨鉴定的总体分类概率为90%。
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