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首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Natural compounds analysis using liquid and supercritical fluid chromatography hyphenated to mass spectrometry: Evaluation of a new design of atmospheric pressure ionization source
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Natural compounds analysis using liquid and supercritical fluid chromatography hyphenated to mass spectrometry: Evaluation of a new design of atmospheric pressure ionization source

机译:使用液体和超临界流体色谱法分析的天然化合物分析质谱法:评价大气压电离源的新设计

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The MS hyphenation performance of UniSpray (R), a new design of atmospheric pressure ionization source was evaluated in both SFC and RPLC modes. Sensitivity, stability, versatility and matrix effects offered by the UniSpray were assessed in positive and negative ionization modes and systematically compared to an electrospray source (ESI) using 120 natural compounds covering an extended chemical space. In a first instance, a multivariate approach was used to screen and optimize the UniSpray source settings to maximize detection sensitivity. The position of the source capillary against the fixed charged rod was highlighted as the major parameter affecting the detection sensitivity. The sensitivity improvement in Unispray vs. ESI strongly depends on the compounds chemical class and the chromatographic mode. For a few compounds (i.e. anabasine, theanine, caproic acid, fumaric acid and protopanaxatriol), up to a 10-fold increase in sensitivity was noticed with UniSpray. The signal stability over multiple injections was also found to be equivalent between both sources with RSD values on peak intensity lower than 14% on 100 injections, in both chromatographic modes. On complex plant extract, the matrix effects occurring from the secondary metabolites were also found to be comparable between ESI and UniSpray, at least in the positive ionization mode. However, a systematic decrease of MS signal intensity was observed in SFC mode when compounds were ionized using UniSpray in the negative ion mode.
机译:在SFC和RPLC模式中评估UNISPRAY(R)的MS连字性能,新设计的大气压电离源的新设计。通过覆盖延长化学空间的120天然化合物,在正极和负电离模式中评估UNISPRAY提供的敏感性,稳定性,多功能性和基质效应,并系统地与电喷雾源(ESI)进行了系统地进行了系统地进行了比较。首先,使用多变量方法来筛选和优化UniSpray源设置以最大化检测灵敏度。源毛细管对固定带电杆的位置被突出显示为影响检测灵敏度的主要参数。 UNISPRAY与ESI的敏感性改进强烈取决于化合物化学类和色谱模式。对于几种化合物(即,Anabasine,Theanine,己酸,富马酸和原烷酸盐),Unispray注意到敏感性的增加至10倍。在多个注射上的信号稳定性也被发现在两个源之间的峰值强度的源极值之间相当于峰值强度的峰值强度低于14%。 100喷射,在两种色谱模式中。在复杂的植物提取物上,还发现从次级代谢物发生的基质效应在ESI和UNISPRAY之间相当,至少在正电离模式之间。然而,当使用Unispray在负离子模式中使用Unispray电离时,在SFC模式下观察到MS信号强度的系统性降低。

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