Multiple Heart-Cutting Two-Dimensional Liquid Chromatography: Recent Developments and Applications

分辨率(逻辑) 高分辨率 分离法 色谱法 工艺工程 计算机科学 化学 材料科学 工程类 人工智能 遥感 地质学
作者
Brynish R. Dsouza,Alex Joseph,Subham Das,Angel Treasa Alex
出处
期刊:Current Analytical Chemistry [Bentham Science Publishers]
卷期号:17 (3): 339-354 被引量:19
标识
DOI:10.2174/1573411016666200630114826
摘要

Background: Over the last few decades, there has been a growing interest in Two- Dimensional Liquid Chromatography (2D-LC). This advanced technology has become a relevant solution for solving all the analytical challenges encountered in the pharmaceutical industry. The primary purpose of this review is to give a brief account of the developing techniques notable in 2D-LC. Methods: Review of recent literature on advanced separation techniques for complex mixtures revealed that 2D-LC is the most widely used technique in the pharmaceutical laboratory for the separation of complex samples. Among the various techniques used in 2D-LC, comprehensive 2D-LC and heart-cutting 2D-LC are highly used techniques. To enhance the resolution, further development has been made to heart-cutting 2D-LC called multiple heart-cutting 2D-LC, which has recently become a very popular technique in the pharmaceutical industry. Therefore research articles mentioning the use of multiple heart-cutting 2D-LC for separation of complex mixtures were reviewed. Results: The most crucial benefit of multiple heart-cutting 2D-LC is its reduced effort in method development and also the storage of multiple sample sections for further analysis. The multiple heartcutting 2D-LC is suited, preferably for method development and impurity analysis of pharmaceutical substances, fine chemicals and offers better peak separation, which is otherwise not possible by comprehensive 2D-LC. Conclusion: The advantage of two-dimensional liquid chromatography over one-dimensional liquid chromatography is its high resolving power. Further improvement in resolution was achieved by using the advanced multiple heart-cutting 2D-LC which appears to have an imperative role in pharmaceutical and food analysis.
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