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Automated microextraction sample preparation coupled on-line to FT-ICR-MS: Application to desalting and concentration of river and marine dissolved organic matter

机译:在线自动微萃取样品制备与FT-ICR-MS耦合:在河流和海洋溶解有机物的脱盐和浓缩中的应用

摘要

Sample preparation procedures are in most cases sample- and time-consuming and commonly require the use of a large amount of solvents. Automation in this regard can optimize the minimal-needed injection volume and the solvent consumption will be efficiently reduced. A new fully automated sample desalting and pre-concentration technique employing microextraction by packed sorbents (MEPS) cartridges is implemented and coupled to an ion cyclotron resonance Fourier-transform mass spectrometer (ICR-FT/MS). The performance of non-target mass spectrometric analysis is compared for the automated versus off-line sample preparation for several samples of aqueous natural organic matter. This approach can be generalized for any metabolite profiling or metabolome analysis of biological materials but was optimized herein using a well characterized but highly complex organic mixture: a surface water and its well-characterized natural organic matter and a marine sample having a highly salt charge and enabling to validate the presented automatic system for salty samples. The analysis of Suwannee River water showed selective C18-MEPS enrichment of chemical signatures with average H/C and O/C elemental ratios and loss of both highly polar and highly aromatic structures from the original sample. Automated on-line application to marine samples showed desalting and different chemical signatures from surface to bottom water. Relative comparison of structural footprints with the C18-concentration/desalting procedure however enabled to demonstrate that the surface water film was more concentrated in surface-active components of natural (fatty acids) and anthropogenic origin (sulfur-containing surfactants). Overall, the relative standard deviation distribution in terms of peak intensity was improved by automating the proposed on-line method. © 2009 Springer-Verlag.
机译:样品制备程序在大多数情况下是耗时且费时的,并且通常需要使用大量的溶剂。在这方面,自动化可以优化所需的最小进样量,并有效减少溶剂消耗。实施了一种新的全自动样品脱盐和预浓缩技术,该技术采用填充吸附剂(MEPS)柱进行微萃取,并与离子回旋共振傅里叶变换质谱仪(ICR-FT / MS)耦合。比较了几种天然有机水样品的自动和离线样品制备的非目标质谱分析性能。该方法可用于生物材料的任何代谢产物谱分析或代谢组分析,但可在此处使用特征明确但高度复杂的有机混合物进行优化:地表水及其特征明确的天然有机物以及盐分高,能够验证所提出的咸样品自动系统。 Suwannee河水的分析表明,选择性C18-MEPS富集了具有平均H / C和O / C元素比的化学特征的化学特征,并且从原始样品中损失了高极性和高芳族结构。对海洋样品的自动在线应用显示了淡化和从地表水到底部水的不同化学特征。但是,将结构足迹与C18浓缩/脱盐程序的相对比较能够证明,地表水膜更多地集中在天然(脂肪酸)和人为来源(含硫的表面活性剂)的表面活性成分中。总体而言,通过自动化建议的在线方法,可以改善相对标准偏差在峰强度方面的分布。 ©2009年Springer-Verlag。

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