Department of Chemistry Indiana University Bloomington, Indiana 47405, United States.
Anal Chem. 2013 Nov 5;85(21):10408-16. doi: 10.1021/ac4023814. Epub 2013 Oct 18.
Among of the most urgent needs of the glycobiology community is to generate libraries of pure carbohydrate standards. While many oligosaccharides have recently been synthesized, some glycans of biomedical importance are still missing in existing collections or are available in only limited amounts. To address this need, we demonstrate the use of the relatively unexplored technique of recycling high-performance liquid chromatography (R-HPLC) to isolate and purify glycoconjugates from several natural sources. We were able to routinely achieve purities greater than 98%. In several cases, we were able to obtain isomerically pure substances, particularly for glycans with different positional isomerism. These purified substances can then be used in different analytical applications, for example, as standards for mass spectrometry (MS) and capillary-based separations. Moreover, using a bifunctional aromatic amine, the same derivatization agent can be used to enable UV detection of oligosaccharides during their purification and link the isolated molecules to functionalized surfaces and potentially create glycan arrays.
糖生物学领域最迫切的需求之一是生成纯碳水化合物标准品库。虽然最近已经合成了许多寡糖,但现有的收藏中仍然缺少一些具有生物医学重要性的聚糖,或者只能获得有限数量的聚糖。为了满足这一需求,我们展示了一种相对未被探索的技术,即回收高效液相色谱 (R-HPLC) 从几种天然来源中分离和纯化糖缀合物。我们能够常规地实现纯度大于 98%。在某些情况下,我们能够获得具有立体异构纯度的物质,特别是对于具有不同位置异构的聚糖。然后,这些纯化的物质可以用于不同的分析应用,例如作为质谱 (MS) 和基于毛细管的分离的标准品。此外,使用双官能芳族胺,相同的衍生试剂可用于在纯化过程中对寡糖进行 UV 检测,并将分离的分子连接到功能化表面上,并有可能创建糖缀合物阵列。