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Hyphenation of optimized microfluidic sample preparation with nano liquid chromatography for faster and greener alkaloid analysis

机译:纳米液相色谱联用优化的微流体样品制备系统,可进行更快,更绿色的生物碱分析

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摘要

A glass liquid-liquid extraction (LLE) microchip with three parallel 3.5 cm long and 100 μm wide interconnecting channels was optimized in terms of more environmentally friendly (greener) solvents and extraction efficiency. In addition, the optimized chip was successfully hyphenated with nano-liquid chromatography with ultraviolet and mass spectrometric detection (nanoLC-UV-MS) for on-line analysis. In this system, sample pretreatment, separation and detection are integrated, which significantly shortens the analysis time, saves labor and drastically reduces solvent consumption. Strychnine was used as model analyte to determine the extraction efficiency of the optimized 3-phase chip. Influence of organic solvent, pH of feed phase, type of alkaloid, and flow rates were investigated. The results demonstrated that the 3-phase chip nanoLC-UV/MS hyphenation combines rapid (~25 s) and efficient (extraction efficiency >90%) sample prep, with automated alkaloid analyses. The method was applied to real samples including Strychnos nux-vomica seeds, Cephaelis ipecacuanha roots, Atropa belladonna leaves, and Vinca minor leaves.
机译:在更环保(更绿色)的溶剂和提取效率方面,对具有三个平行的3.5 cm长,100μm宽的互连通道的玻璃液-液萃取(LLE)微芯片进行了优化。此外,优化的芯片已成功通过具有紫外和质谱检测(nanoLC-UV-MS)的纳米液相色谱联用进行在线分析。该系统集成了样品的预处理,分离和检测功能,大大缩短了分析时间,节省了人工,并大大减少了溶剂消耗。士的宁用作模型分析物,以确定优化的三相芯片的提取效率。研究了有机溶剂,进料相pH,生物碱类型和流速的影响。结果表明,三相芯片nanoLC-UV / MS联用结合了快速(〜25 s)和高效(提取效率> 90%)样品制备以及自动生物碱分析。该方法已应用于真实样品,包括马兜铃种子,马尾草根,颠茄叶和长春蔓叶。

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