Mantovani Veronica, Galeotti Fabio, Maccari Francesca, Volpi Nicola
Department of Life Sciences, University of Modena and Reggio Emilia, Modena, Italy.
Electrophoresis. 2016 Jun;37(11):1514-24. doi: 10.1002/elps.201500477. Epub 2016 Feb 24.
Free human milk oligosaccharides (HMOs) are unique due to their highly complex nature and important emerging biological and protective functions during early life such as prebiotic activity, pathogen deflection, and epithelial and immune cell modulation. Moreover, four genetically determined heterogeneous HMO secretory groups are known to be based on their structure and composition. Over the years, several analytical techniques have been applied to characterize and quantitate HMOs, including nuclear magnetic resonance spectroscopy, high-performance liquid chromatography (HPLC), high pH anion-exchange chromatography, off-line and on-line mass spectrometry (MS), and capillary electrophoresis (CE). Even if these techniques have proven to be efficient and simple, most glycans have no significant UV absorption and derivatization with fluorophore groups prior to separation usually results in higher sensitivity and an improved chromatographic/electrophoretic profile. Consequently, the analysis by HPLC/CE of derivatized milk oligosaccharides with different chromophoric active tags has been developed. However, UV or fluorescence detection does not provide specific structural information and this is a key point in particular related to the highly complex nature of the milk glycan mixtures. As a consequence, for a specific determination of complex mixtures of oligomers, analytical separation is usually required with evaluation by means of MS, which has been successfully applied to HMOs, resulting in efficient compositional analysis and profiling in various milk samples. This review aims to give an overview of the current state-of-the-art techniques used in HMO analysis.
游离人乳寡糖(HMOs)因其高度复杂的性质以及在生命早期具有的重要新出现的生物学和保护功能(如益生元活性、病原体偏转以及上皮细胞和免疫细胞调节)而独具特色。此外,已知基于其结构和组成存在四个由基因决定的异质HMO分泌组。多年来,已应用多种分析技术来表征和定量HMOs,包括核磁共振光谱法、高效液相色谱法(HPLC)、高pH值阴离子交换色谱法、离线和在线质谱法(MS)以及毛细管电泳法(CE)。即便这些技术已被证明高效且简便,但大多数聚糖没有显著的紫外吸收,在分离前用荧光团进行衍生化通常会带来更高的灵敏度和改善的色谱/电泳图谱。因此,已开发出用不同发色活性标签对衍生化乳寡糖进行HPLC/CE分析的方法。然而,紫外或荧光检测无法提供特定的结构信息,这尤其是与乳聚糖混合物高度复杂的性质相关的一个关键点。因此,为了对寡聚物的复杂混合物进行特定测定,通常需要借助MS评估进行分析分离,MS已成功应用于HMOs,可对各种乳样品进行有效的成分分析和图谱分析。本综述旨在概述HMO分析中使用的当前最先进技术。