Campa Cristiana, Coslovi Anna, Flamigni Anna, Rossi Marco
Bracco Imaging SpA, CRM-Trieste, Trieste, Italy.
Electrophoresis. 2006 Jun;27(11):2027-50. doi: 10.1002/elps.200500960.
The increasing interest for carbohydrates as holder of essential bioinformations has boosted their full characterization through analytical techniques. The intent of this review is to summarize the recent trends regarding on-line and off-line CE-MS coupling for carbohydrate analysis. A statistical survey on the articles that use derivatizing agents as well as on the analyzer and type of instrument coupling (i.e. on- or off-line) is depicted. From a general overview it can be concluded that, whereas derivatization might be useful for the detection of neutral carbohydrates improving separation selectivity with volatile buffers and increasing sensitivity of the MS detection, relatively few works with derivatized carbohydrates were found; this was noticed in particular for glycosides and saccharides carrying ionizable groups, which are normally analyzed without any chemical modification. The most applied coupling is the on-line sheath-liquid interface; for on-line applications, ESI is the sole source used, whilst the most common analyzer is the IT. MS(n) is often exploited, as fragmentation increases the achieved structural information. CE-MS turned out to be mainly used for the analysis of carbohydrates in drug development (i.e. study of oligosaccharides from pathogens, carbohydrate-based drugs and drug metabolites), in nutrition and for characterization of glycans from glycoproteins. The reader will find elucidating tables regarding these recent CE-MS applications, including the main information on the analysis conditions. Comments are meant to help the immediate focus on the usefulness of the analytical technique and predict the difficulties found during analysis and, in case, their overcoming.
对作为重要生物信息载体的碳水化合物的兴趣日益增加,推动了通过分析技术对其进行全面表征。本综述的目的是总结碳水化合物分析中在线和离线CE-MS联用的最新趋势。文中描述了对使用衍生剂以及分析仪和仪器联用类型(即在线或离线)的文章的统计调查。从总体概述可以得出结论,虽然衍生化可能有助于检测中性碳水化合物,通过挥发性缓冲液提高分离选择性并增加MS检测的灵敏度,但发现使用衍生化碳水化合物的研究相对较少;对于带有可电离基团的糖苷和糖类尤其如此,它们通常无需任何化学修饰即可进行分析。应用最多的联用方式是在线鞘液接口;对于在线应用,ESI是唯一使用的离子源,而最常用的分析仪是离子阱(IT)。通常利用MS(n),因为碎片化增加了获得的结构信息。CE-MS主要用于药物开发中碳水化合物的分析(即病原体寡糖、基于碳水化合物的药物和药物代谢物的研究)、营养领域以及糖蛋白聚糖的表征。读者将找到有关这些最新CE-MS应用的说明性表格,包括分析条件的主要信息。评论旨在帮助立即关注分析技术的实用性,并预测分析过程中遇到的困难以及如何克服这些困难。