University of Amsterdam, van 't Hoff Institute for Molecular Sciences, Analytical-Chemistry Group, Science Park 904, 1098 XH Amsterdam, The Netherlands.
Faraday Discuss. 2019 Aug 15;218(0):72-100. doi: 10.1039/c8fd00233a.
Two-dimensional liquid chromatography (2D-LC) formats have emerged to help address separation problems that are too complex for conventional one-dimensional LC. There are a number of obstacles to the proliferation of 2D-LC that are gradually being removed. Reliable commercial instrumentation has become available and data analysis software is being improved. Detector-sensitivity and phase-system compatibility issues can largely be solved by using active-modulation strategies. The remaining challenge, developing good and fast 2D-LC methods within a reasonable time, may be solved with smart algorithms. The technology platform that has been developed for 2D-LC also creates a number of other possibilities. Between the two separation stages, all kinds of physical (e.g. dissolution) or chemical (e.g. enzymatic or light-induced degradation) processes can be made to take place, allowing a wide variety of experiments to be performed within a single, efficient and automated analysis. All these developments are discussed in this paper and a number of critical issues are identified. A practical example, the characterization of polysorbates by high-resolution comprehensive two-dimensional liquid chromatography in combination with high-resolution mass spectrometry, is described as a culmination of recent developments in 2D-LC and as an illustration of the current state of the art.
二维液相色谱(2D-LC)技术的出现,有助于解决传统一维液相色谱无法解决的复杂分离问题。尽管二维液相色谱的普及仍面临一些障碍,但这些障碍正逐渐被克服。可靠的商业仪器和数据分析软件已投入使用。通过采用主动调制策略,可以在很大程度上解决检测器灵敏度和相系统兼容性问题。开发在合理时间内获得良好且快速的二维液相色谱方法的剩余挑战,可能会通过智能算法得以解决。为二维液相色谱开发的技术平台也创造了许多其他可能性。在两个分离阶段之间,可以进行各种物理(例如溶解)或化学(例如酶促或光诱导降解)过程,从而可以在单个高效和自动化分析中执行各种实验。本文讨论了所有这些进展,并确定了一些关键问题。通过高效二维液相色谱与高分辨率质谱联用对聚山梨酯的高分辨率全面表征作为二维液相色谱的最新进展的一个总结,并说明了当前的技术水平。