Yao Zhen, Zhu Kehan, Gu Tianyi, Schmitz Oliver J, Li Duxin
College of Pharmaceutical Science, Soochow University, Suzhou 215123, PR China.
Applied Analytical Chemistry, Faculty of Chemistry, University of Duisburg-Essen, Universitaetsstr. 5-7, Essen 45141, Germany.
J Chromatogr A. 2024 Mar 29;1719:464730. doi: 10.1016/j.chroma.2024.464730. Epub 2024 Feb 14.
Polysaccharides have unique physio-chemical properties and various biological functions and have rapidly expanded interest over the last two decades. The purification of polysaccharides and their degraded oligosaccharides is challenging because carbohydrates have no chromophore and need a proper detector to monitor the chromatographic elution process. This study proposed an active derivatization detection (ADD) method based on active splitting from post-column flow, a microchannel reactor for efficient derivatization of polysaccharide reducing sugars with p-hydroxybenzoic acid hydrazide, and in-line detection by the UV detector of liquid chromatography system. The method and device were validated by the use of 11 monosaccharides, sulfated oligosaccharides (from degraded carrageenan), and polysaccharides (from Zizania latifolia). It has shown much better performance than the traditional phenol-sulfuric acid method (gold standard). Moreover, the ADD module presumes an add-in to the original preparative LC system, independent of the scale of the purification process and type of system. The developed method is versatile for chromatographic separation of carbohydrates and lays the foundation for their subsequent studies.
多糖具有独特的物理化学性质和多种生物学功能,在过去二十年中受到的关注迅速增加。多糖及其降解的低聚糖的纯化具有挑战性,因为碳水化合物没有发色团,需要合适的检测器来监测色谱洗脱过程。本研究提出了一种基于柱后流主动拆分的活性衍生化检测(ADD)方法、一种用于多糖还原糖与对羟基苯甲酸酰肼高效衍生化的微通道反应器以及通过液相色谱系统的紫外检测器进行在线检测。该方法和装置通过使用11种单糖、硫酸化低聚糖(来自降解的卡拉胶)和多糖(来自茭白)进行了验证。它表现出比传统的苯酚 - 硫酸法(金标准)更好的性能。此外,ADD模块假定是原始制备液相色谱系统的一个插件,与纯化过程的规模和系统类型无关。所开发的方法对于碳水化合物的色谱分离具有通用性,并为其后续研究奠定了基础。