Institute of Microanalytical Systems, Department of Chemistry, Zhejiang University, Hangzhou, 310058, China.
Analyst. 2013 Aug 21;138(16):4642-8. doi: 10.1039/c3an00345k. Epub 2013 Jun 14.
This paper describes a simple and efficient approach to reduce the background level of confocal laser induced fluorescence (LIF) detection for round capillaries by laterally shifting the laser focus point. A phenomenon of spontaneous separation of the fluorescence and reflected laser beams at the pinhole of a confocal LIF system when the laser focus point deviates from the center of a capillary channel to the sides was observed for the first time. On the basis of this phenomenon, the reflected laser light from the capillary-air interfaces could be mostly eliminated with a spatial filtering pinhole. A comprehensive study on the phenomenon and optimization of the shift distance was carried out using both experimental and simulation methods. A best shift distance of ±20 μm was obtained, with which background intensity could be significantly reduced by 98.9%, while fluorescence intensity was only reduced by 25.7%, resulting in an improvement of signal-to-noise ratio of 8.3 times, compared with that at a shift distance of 0 μm usually used in most of the confocal LIF systems for round capillaries. A limit of detection of 66 fM was obtained for sodium fluorescein. To demonstrate its potential as an on-column sensitive detector for microscale separation systems, the present system was coupled with a capillary electrophoresis system for separation of four fluorescein isothiocyanate labeled amino acids with concentrations of 100 pM.
本文描述了一种简单有效的方法,通过横向移动激光焦点,来降低圆形毛细管共焦激光诱导荧光(LIF)检测的背景水平。首次观察到,当激光焦点偏离毛细管通道中心到侧面时,共焦 LIF 系统的小孔处的荧光和反射激光束会自发分离的现象。基于这一现象,通过空间滤波小孔,可以大部分消除毛细管-空气界面的反射激光光。通过实验和模拟方法对该现象和最佳偏移距离进行了综合研究。得到最佳的偏移距离为±20 μm,与通常用于大多数圆形毛细管共焦 LIF 系统的 0 μm 偏移距离相比,背景强度可显著降低 98.9%,而荧光强度仅降低 25.7%,从而使信噪比提高了 8.3 倍。对于荧光素钠,获得了 66 fM 的检测限。为了证明其作为微尺度分离系统的柱上灵敏检测器的潜力,本系统与毛细管电泳系统耦合,用于分离四种浓度为 100 pM 的异硫氰酸荧光素标记的氨基酸。