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毛细管等电聚焦的荧光成像检测

Fluorescence imaging detection for capillary isoelectric focusing.

作者信息

Wu X Z, Wu J, Pawliszyn J

机构信息

Department of Chemistry, University of Waterloo, Ontario, Canada.

出版信息

Electrophoresis. 1995 Aug;16(8):1474-8. doi: 10.1002/elps.11501601244.

DOI:10.1002/elps.11501601244
PMID:8529617
Abstract

A simple laser-induced fluorescence (LIF) imaging detector and an ultrasensitive LIF imaging detector are described for capillary isoelectric focusing (CIEF). An argon ion laser beam of 496.5 nm is used as excitation source. In the simple LIF imaging detector, the excitation beam is directed into a capillary column by an optic fiber array. In the ultrasensitive LIF imaging detector, the laser beam is first expanded, then is focused into the 4.5 cm long capillary column by a cylindrical lens. Fluorescence emission is detected by a charge-coupled device (CCD) camera. The feasibility and performance of the LIF imaging detector system for CIEF are first verified with a naturally fluorescent protein, b-phycoerythrin. Then, the ultrasensitive LIF imaging system is used as a detector for CIEF of proteins labeled with fluorescein isothiocyanate (FITC). Three FITC-labeled proteins (i) alpha-D-galatosylated FITC-albumin, (ii) insulin-FITC, and (iii) casein-FITC, are used as model samples. Fluorescence images of the model samples are measured during the CIEF process. The focusing of the protein samples is complete in about 1.5 min. The ultrasensitive detector's detection limits for the FITC-labeled proteins are at the level of 10(-10) M, and the mass detection limits are about 4.5 x 10(-17) mole, even though only 10% of the fluorescence emission is collected. Therefore, the method is capable of separating and detecting 10(-11) M or amole (10(-18) mole) level protein samples with a band-pass filter more specific to the fluorescence light.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

本文描述了一种用于毛细管等电聚焦(CIEF)的简单激光诱导荧光(LIF)成像检测器和一种超灵敏LIF成像检测器。采用波长为496.5 nm的氩离子激光束作为激发源。在简单LIF成像检测器中,激发光束通过光纤阵列导入毛细管柱。在超灵敏LIF成像检测器中,激光束首先被扩束,然后通过柱面透镜聚焦到4.5 cm长的毛细管柱中。荧光发射由电荷耦合器件(CCD)相机检测。首先用天然荧光蛋白b-藻红蛋白验证了LIF成像检测器系统用于CIEF的可行性和性能。然后,将超灵敏LIF成像系统用作检测异硫氰酸荧光素(FITC)标记蛋白质CIEF的检测器。三种FITC标记的蛋白质(i)α-D-半乳糖基化FITC-白蛋白、(ii)胰岛素-FITC和(iii)酪蛋白-FITC用作模型样品。在CIEF过程中测量模型样品的荧光图像。蛋白质样品在约1.5分钟内完成聚焦。即使仅收集10%的荧光发射,超灵敏检测器对FITC标记蛋白质的检测限仍为10^(-10) M水平,质量检测限约为4.5×10^(-17)摩尔。因此,该方法能够使用对荧光更具特异性的带通滤光片分离和检测10^(-11) M或阿托摩尔(10^(-18)摩尔)水平的蛋白质样品。(摘要截短于250字)

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引用本文的文献

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Development of a membrane-less dynamic field gradient focusing device for the separation of low-molecular-weight molecules.开发一种无膜动态场梯度聚焦装置,用于分离低分子量分子。
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Femtomolar concentration detection limit and zeptomole mass detection limit for protein separation by capillary isoelectric focusing and laser-induced fluorescence detection.
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