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Miniaturized ultra-high performance liquid chromatography coupled to electrochemical detection: Investigation of system performance for neurochemical analysis

机译:微型化超高效液相色谱法与电化学检测耦合:神经化学分析的系统性能研究

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摘要

The interest in implementation of miniaturized ultra-high performance liquid chromatography (UHPLC) in neurochemical research is growing because of the need for faster, more selective and more sensitive neurotransmitter analyses. The instrument performance of a tailor designed microbore UHPLC system coupled to electrochemical detection (ECD) is investigated, focusing on the quantitative monoamine determination in in vivo microdialysis samples. The use of a microbore column (1.0 mm I.D.) requires miniaturization of the entire instrument, though a balance between extra-column band broadening and injection volume must be considered. This is accomplished through the user defined Performance Optimizing Injection Sequence, whereby 5 mu L sample is injected on the column with a measured extra-column variance of 4.5-9.0 mu L-2 and only 7 mu L sample uptake. Different sub-2 mu m and superficially porous particle stationary phases are compared by means of the kinetic plot approach. Peak efficiencies of about 16 000-35 000 theoretical plates are obtained for the Acquity UPLC BEH C-18 column within 13 min analysis time. Furthermore, the coupling to ECD is shown suitable for microbore UHPLC analysis thanks to the miniaturized flow cell design, sufficiently fast data acquisition and mathematical data filtering. Ultimately, injection of in vivo samples demonstrates the applicability of the system for microdialysis analysis. (C) 2015 Elsevier B.V. All rights reserved.
机译:由于需要更快,更选择性和更灵敏的神经递质分析,因此在神经化学研究中对实施微型超高效液相色谱(UHPLC)的兴趣日益浓厚。研究了定制设计的微孔UHPLC系统与电化学检测(ECD)的仪器性能,重点是体内微透析样品中单胺的定量测定。使用微孔色谱柱(内径1.0 mm)需要使整个仪器小型化,尽管必须考虑色谱柱外色谱带展宽与进样量之间的平衡。这是通过用户定义的“性能优化进样顺序”完成的,其中将5 µL样品注入色谱柱中,测得的柱外差异为4.5-9.0 µL-2,仅吸收7 µL样品。通过动力学图法比较了不同的亚2微米和表面多孔颗粒固定相。在13分钟的分析时间内,Acquity UPLC BEH C-18色谱柱获得了约16000-35000理论塔板的峰值效率。此外,得益于微型流通池设计,足够快速的数据采集和数学数据过滤,显示出与ECD的偶联适合微孔UHPLC分析。最终,体内样品的注射证明了该系统可用于微透析分析。 (C)2015 Elsevier B.V.保留所有权利。

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