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Two-Dimensional Liquid Chromatography (2D-LC) in Pharmaceutical Analysis: Applications Beyond Increasing Peak Capacity

机译:药物分析中的二维液相色谱(2D-LC):超出峰值容量增加的应用

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摘要

Abstract One-dimensional liquid chromatography (1D-LC) is not always capable of efficiently separating complex samples. This drawback is not solely due to the lack of column efficiency, but is mainly due to insufficient selectivity and the need to separate the analytes of interest with orthogonal retention mechanisms. In this regard, two-dimensional liquid chromatography (2D-LC) is currently attracting much interest for its markedly higher resolving power compared to one-dimensional separation. In this work, three applications of 2D-LC from the pharmaceutical industry are presented with the goal not only to increase peak capacity, but also to support investigations. In the first application, the retention times of peaks of interest are matched under different mobile phase conditions for the purpose of transferring the method from a mass spectrometry (MS) incompatible buffer to an MS compatible buffer. The second application includes developing a method for simultaneous detection and quantitation of degradants and aggregates in a biologics and small molecule combination product. The third application supports method development by confirming the purity of separated peaks using orthogonal separation conditions in the first and second dimensions and to investigate mass balance issues where some peaks are expected to elute in the solvent front.
机译:摘要一维液相色谱(1D-LC)并不总能有效地分离复杂的样品。这种缺点不是由于缺乏柱效率,但主要是由于选择性不足,并且需要将兴趣分析与正交保留机制分开。在这方面,与一维分离相比,二维液相色谱(2D-LC)目前对其显着更高的分辨功率的吸引力很大。在这项工作中,来自制药行业的2D-LC的三种应用,并不仅仅增加了峰值容量,而且支持调查。在第一个应用中,感兴趣的峰的保留次数在不同的流动相条件下匹配,以便将该方法从质谱(MS)不相容的缓冲液转移到MS兼容缓冲液。第二申请包括开发用于同时检测和定量降解剂和聚集在生物制剂和小分子组合产物中的方法。第三应用通过在第一和第二维度中使用正交分离条件确认分离的峰的纯度并研究预期在溶剂前方洗脱的质量平衡问题,通过正交分离条件进行分离的峰的纯度支持方法开发。

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