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基于超高效超临界流体色谱的替代策略,用于五味子果实多糖中单糖组成的全面分析。

An alternative strategy based on ultra-high-performance supercritical fluid chromatography for full monosaccharide compositional analysis of polysaccharides in Schisandra chinensis fruits.

机构信息

Key Laboratory of Basic and Application Research of Beiyao, Heilongjiang University of Chinese Medicine, Ministry of Education, Harbin, P. R. China.

出版信息

J Sep Sci. 2023 Apr;46(8):e2200797. doi: 10.1002/jssc.202200797. Epub 2023 Feb 22.

Abstract

Due to green and environment-friendly characteristics, ultra-high-performance supercritical fluid chromatography has been widely used in analytical fields in recent years, but until now few reports are available for monosaccharide compositional analysis of macromolecule polysaccharides. In this study, an ultra-high-performance supercritical fluid chromatography technology with an unusual binary modifier is used to determine the monosaccharide compositions of natural polysaccharides. Each carbohydrate herein is simultaneously labeled as 1-pheny-3-methyl-5-pyrazolone and acetyl-derivative via pre-column derivatizations aiming to increase UV absorption sensitivity and decrease water solubility. Ten common monosaccharides are fully separated and detected on ultra-high-performance supercritical fluid chromatography combined with a photo-diode array detector by systematic optimization of multiple relevant parameters, for example, column stationary phases, organic modifiers, additives, flow rates, and so on. Compared with carbon dioxide as a mobile phase, the addition of a binary modifier increases the resolution of analytes. Additionally, this method has the advantages of small consumption of organic solvent, safety, and being environmental-friendly. It has been successfully applied for full monosaccharide compositional analysis of heteropolysaccharides from Schisandra chinensis fruits. To sum up, a new alternative approach is provided for monosaccharide compositional analysis of natural polysaccharides.

摘要

由于超高效临界流体色谱具有绿色环保的特点,近年来已广泛应用于分析领域,但迄今为止,关于超高效临界流体色谱用于分析大分子多糖的单糖组成的报道较少。本研究采用一种具有特殊二元修饰剂的超高效临界流体色谱技术,用于测定天然多糖的单糖组成。通过柱前衍生化,每个碳水化合物同时被标记为 1-苯基-3-甲基-5-吡唑啉酮和乙酰衍生物,以提高紫外吸收灵敏度和降低水溶性。通过对多个相关参数(如色谱柱固定相、有机改性剂、添加剂、流速等)进行系统优化,在超高效临界流体色谱-光电二极管阵列检测器上对十种常见的单糖进行了完全分离和检测。与二氧化碳作为流动相相比,二元修饰剂的添加增加了分析物的分辨率。此外,该方法还具有有机溶剂消耗少、安全环保等优点。已成功应用于五味子果实杂多糖的单糖组成分析。总之,为天然多糖的单糖组成分析提供了一种新的替代方法。

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