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采用宽光谱二向色镜的双视角成像系统,实现四色单分子同时检测。

Dual-view imaging system using a wide-range dichroic mirror for simultaneous four-color single-molecule detection.

机构信息

Central Research Laboratory, Hitachi, Ltd., Kokubunji-shi, Tokyo, Japan.

出版信息

Anal Chem. 2011 Sep 15;83(18):6948-55. doi: 10.1021/ac2000797. Epub 2011 Aug 16.

Abstract

A dual-view imaging system for simultaneous four-color single-molecule (SM) detection was developed. As for the detection procedure, four species of SM fluorophores, namely, Alexa 488, 555, 647, and 680, are immobilized on different slides and excited by evanescent-wave illumination. Fluorescence emitted from an SM fluorophore is split by a wide-range dichroic mirror (WR DM) in a dual-view optics and imaged as two SM fluorescence spots (SM spots) on an electron-multiplying charge-coupled device (EM-CCD) at 100 Hz. The transmittance of the WR DM changes gradually over the wavelength range of 500 to 700 nm so that the signal ratios of the two SM spots for the four fluorophore species differ. A method for classifying SM fluorophores into four species in accordance with their signal ratios was developed. It was used to classify 597 SM fluorophores at an accuracy of above 98% for all the species. This accuracy is comparable to that of a conventional four-color SM detection system. To classify four species, the conventional system disperses SM fluorescence with a prism and provides an elongated SM spot that uses more pixels of an EM-CCD chip than that of the developed system. The developed system can thus detect 1.5-fold more SM spots with the same-size EM-CCD chip, so it can achieve 1.5-fold higher throughput. Moreover, the developed system is based on a simple and practical approach, namely, replacing an ordinary dichroic mirror in a commercially available dual-view optics with a WR DM. This replacement transforms a dual-view imaging system for two-color detection into a system for four-color detection. The developed system is suitable for detection systems of next-generation DNA sequencers and DNA microarray-chip analyzers.

摘要

开发了一种用于同时四色单分子(SM)检测的双视角成像系统。对于检测过程,四种 SM 荧光染料,即 Alexa 488、555、647 和 680,分别固定在不同的载玻片上,并通过倏逝波照明激发。从 SM 荧光染料发射的荧光通过双视角光学中的宽范围二向色镜(WR DM)分离,并在 100 Hz 下以两个 SM 荧光点(SM 点)的形式成像在电子倍增电荷耦合器件(EM-CCD)上。WR DM 的透射率在 500 到 700nm 的波长范围内逐渐变化,使得两种 SM 点的信号比对于四种荧光染料的物种不同。开发了一种根据信号比将 SM 荧光染料分类为四种的方法。它用于以超过 98%的准确度对所有物种的 597 个 SM 荧光染料进行分类。这种准确度与传统的四色 SM 检测系统相当。为了对四种物质进行分类,传统系统通过棱镜对 SM 荧光进行色散,并提供一个拉长的 SM 点,该点使用 EM-CCD 芯片的更多像素,比开发系统多。因此,相同尺寸的 EM-CCD 芯片可以检测到 1.5 倍的 SM 点,从而实现 1.5 倍的更高吞吐量。此外,该开发系统基于一种简单实用的方法,即用 WR DM 替换商业上可用的双视角光学中的普通二向色镜。这种替换将双视角成像系统从双色检测系统转换为四色检测系统。该开发系统适用于下一代 DNA 测序仪和 DNA 微阵列芯片分析仪的检测系统。

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