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Targeted three-dimensional liquid chromatography: A versatile tool for quantitative trace analysis in complex matrices

机译:目标三维液相色谱法:用于复杂基质中定量痕量分析的多功能工具

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Targeted multidimensional liquid chromatography (MDLC), commonly referred to as 'coupled-column' or 'heartcutting', has been used extensively since the 1970s for analysis of low concentration constituents in complex biological and environmental samples. A primary benefit of adding additional dimensions of separation to conventional HPLC separations is that the additional resolving power provided by the added dimensions can greatly simplify method development for complex samples. Despite the long history of targeted MDLC, nearly all published reports involve two-dimensional methods, and very few have explored the benefits of adding a third dimension of separation. In this work we capitalize on recent advances in reversed-phase HPLC to construct a three-dimensional HPLC system for targeted analysis built on three very different reversed-phase columns. Using statistical peak overlap theory and one of the most recent models of reversed-phase selectivity we use simulations to show the potential benefit of adding a third dimension to a MDLC system. We then demonstrate this advantage experimentally by developing targeted methods for the analysis of a variety of broadly relevant molecules in different sample matrices including urban wastewater treatment effluent, human urine, and river water. We find in each case that excellent separations of the target compounds from the sample matrix are obtained using one set of very similar separation conditions for all of the target compound/sample matrix combinations, thereby significantly reducing the normally tedious method development process. A rigorous quantitative comparison of this approach to conventional 1DLC-MS/MS also shows that targeted 3DLC with UV detection is quantitatively accurate for the target compounds studied, with method detection limits in the low parts-per-trillion range of concentrations. We believe this work represents a first step toward the development of a targeted 3D analysis system that will be more effective than previous 2D separations as a tool for the rapid development of robust methods for quantitation of low concentration constituents in complex mixtures.
机译:自1970年代以来,靶向多维液相色谱(MDLC)通常被称为“耦合柱”或“心脏切割”,已广泛用于分析复杂的生物和环境样品中的低浓度成分。在常规HPLC分离中增加额外的分离尺寸的主要好处是,增加的尺寸提供的额外分离能力可以大大简化复杂样品的方法开发。尽管有针对性的MDLC已有很长的历史,但几乎所有已发表的报告都涉及二维方法,很少有研究探讨添加第三维分离的好处。在这项工作中,我们利用反相HPLC的最新进展,构建了基于三个截然不同的反相色谱柱的用于目标分析的三维HPLC系统。使用统计峰重叠理论和最新的反相选择性模型之一,我们使用模拟来显示向MDLC系统添加三维的潜在好处。然后,我们通过开发有针对性的方法来分析各种样品基质中各种广泛相关的分子,包括城市废水处理废水,人尿和河水,从而通过实验证明了这一优势。我们发现,在每种情况下,对于所有目标化合物/样品基质组合,使用一组非常相似的分离条件,即可获得目标化合物与样品基质的出色分离,从而显着减少了通常繁琐的方法开发过程。这种方法与常规1DLC-MS / MS的严格定量比较还表明,采用UV检测的目标3DLC对于所研究的目标化合物在定量上是准确的,方法的检测限在每万亿分之几的低浓度范围内。我们相信这项工作代表着开发目标明确的3D分析系统的第一步,该系统比以前的2D分离更有效,可作为快速开发用于定量分析复杂混合物中低浓度成分的可靠方法的工具。

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