Manicke Nicholas E, Wedasingha Lahiru, Rydberg Magnus
Department of Chemistry and Chemical Biology, Indiana University, Indianapolis, Indiana, USA.
Mass Spectrom Rev. 2024 Dec 15. doi: 10.1002/mas.21921.
Mass spectrometry (MS) is a powerful analytical technique that typically involves sample preparation and online analytical separation before MS detection. Traditional methods often face bottlenecks in sample preparation and analytical separation, despite the rapid detection capabilities of MS. This review explores the integration of electrokinetic manipulations directly with the ionization step to enhance MS performance, focusing on methods that eliminate or simplify sample preparation and separation processes. Techniques such as paper spray, electrophoresis in nanoelectrospray ionization (nESI) emitters, induced nESI, counterflow gradient electrofocusing, and in-syringe electrokinetics are highlighted for their ability to combine extraction and ionization in a single step, significantly improving throughput. The review delves into the use of electric fields during sample preparation and separations for these methods, demonstrating the efficiency of electrophoretic methods in driving extractions, crude separations, desalting, and enhanced sensitivity. The integration of these methods directly with MS ionization aims to enhance the analytical capabilities of mass spectrometry, while reducing costs and increasing throughput relative to traditional approaches.
质谱分析(MS)是一种强大的分析技术,通常在质谱检测之前涉及样品制备和在线分析分离。尽管质谱具有快速检测能力,但传统方法在样品制备和分析分离方面常常面临瓶颈。本综述探讨了将电动操作直接与电离步骤相结合以提高质谱性能,重点关注消除或简化样品制备和分离过程的方法。诸如纸喷雾、纳米电喷雾电离(nESI)发射器中的电泳、诱导nESI、逆流梯度电聚焦和注射器内电动学等技术因其能够在单个步骤中结合提取和电离而受到关注,显著提高了通量。该综述深入探讨了这些方法在样品制备和分离过程中电场的使用,证明了电泳方法在驱动提取、粗分离、脱盐和提高灵敏度方面的效率。将这些方法直接与质谱电离相结合旨在增强质谱分析能力,同时相对于传统方法降低成本并提高通量。