Xu Youzhi, Chen Sheng, Feng Xiaojun, Du Wei, Luo Qingming, Liu Bi-Feng
Division of Biomedical Photonics at Wuhan National Laboratory for Optoelectronics, Department of Systems Biology, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan, PR China.
Electrophoresis. 2008 Feb;29(3):734-9. doi: 10.1002/elps.200700238.
Multiphoton-excited fluorescence (MPEF) is a complementary and useful mode of LIF detection in CE with advantages of ultra-low mass detectability and spectral excitability, but it is currently quite limited by its end-column configuration. In this article, we demonstrate a novel strategy of on-column schemes that can greatly facilitate MPEF detection in CE. FITC-labeled amine species were used as the model samples for the evaluation and comparison of those detection scenarios. By using the square capillary instead of the conventional cylindrical one, the on-column MPEF could be readily achieved, with detection sensitivity of 0.72 microM that was comparable with the end-column mode. However, this strategy unfavorably reduced separation efficiency. The theoretical plate number on averaging all the sample peaks was significantly decreased from 283,000 to 19,000/m. To minimize such an influence, a short square capillary acting as an on-column MPEF detection cell was then mounted to a long cylindrical capillary responsible for the CE separation. Results indicated that both high separation efficiency (240,000/m) and better detectability (0.42 microM) were realized simultaneously by using this binary-capillary configuration. Quantitative analysis was performed under the optimized detector configuration and revealed a linear dynamic range of 2 orders of magnitude, with mass detection limit down to the mid-yottomole level.
多光子激发荧光(MPEF)是毛细管电泳中激光诱导荧光检测的一种补充且有用的模式,具有超低质量检测能力和光谱激发性等优点,但目前其柱端配置受到很大限制。在本文中,我们展示了一种柱上方案的新策略,该策略可极大地促进毛细管电泳中的MPEF检测。使用异硫氰酸荧光素标记的胺类物质作为模型样品来评估和比较这些检测方案。通过使用方形毛细管而非传统的圆柱形毛细管,可以很容易地实现柱上MPEF,其检测灵敏度为0.72微摩尔,与柱端模式相当。然而,该策略不利地降低了分离效率。所有样品峰的平均理论塔板数从283,000显著降至19,000/m。为了最小化这种影响,将一个用作柱上MPEF检测池的短方形毛细管安装到负责毛细管电泳分离的长圆柱形毛细管上。结果表明,使用这种二元毛细管配置可同时实现高分离效率(240,000/m)和更好的检测能力(0.42微摩尔)。在优化的检测器配置下进行了定量分析,结果显示线性动态范围为2个数量级,质量检测限低至中阿托摩尔水平。