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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Development of a high-throughput glycoanalysis method for the characterization of oligosaccharides in human milk utilizing multiplexed capillary gel electrophoresis with laser-induced fluorescence detection
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Development of a high-throughput glycoanalysis method for the characterization of oligosaccharides in human milk utilizing multiplexed capillary gel electrophoresis with laser-induced fluorescence detection

机译:高通量糖分析方法的发展,该方法通过使用多重毛细管凝胶电泳和激光诱导荧光检测来表征人乳中的寡糖

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摘要

During the last decade, enormous progress regarding knowledge about composition and properties of human milk (HM) has been made. Besides nutrition, the three macro-nutrients: proteins, lipids, and carbohydrates combine a large variety of properties and functions. Especially, complex oligosaccharides emerge as important dietary factors during early life with multiple functions. The characterization of these HM oligosaccharides (HMOS) within the total carbohydrate fraction is prerequisite to understand the relationship between milk composition and biological effects. Therefore, extended studies of large donor cohorts and thus, new high-throughput glycoanalytical methods are needed. The developed method comprises sample preparation, as well as analysis of HMOS by multiplexed CGE with LIF detection (xCGE-LIF). Via a respective database the generated "fingerprints" (normalized electropherograms) could be used for structural elucidation of HMOS. The method was tested on HM samples from five different donors, partly sampled as a series of lactation time points. HMOS could be easily identified and quantified. Consequently, secretor and Lewis status of the donors could be determined, milk typing could be performed and quantitative changes could be monitored along lactation time course. The developed xCGE-LIF based "real" high-throughput HMOS analysis method enables qualitative and quantitative high-performance profiling of the total carbohydrate fraction composition of large sets of samples.
机译:在过去的十年中,关于人乳(HM)的成分和性质的知识取得了巨大进步。除了营养外,三种宏观营养素:蛋白质,脂质和碳水化合物还具有多种特性和功能。特别是,复杂的低聚糖在生命早期就具有多种功能,成为重要的饮食因素。在总碳水化合物部分中表征这些HM寡糖(HMOS)是了解牛奶成分与生物学效应之间关系的前提。因此,需要对大型供者队列进行扩展研究,因此需要新的高通量糖分析方法。所开发的方法包括样品制备,以及通过具有LIF检测的多路CGE(xCGE-LIF)分析HMOS。通过相应的数据库,可以将生成的“指纹”(归一化电泳图)用于HMOS的结构解析。该方法在来自五个不同供体的HM样品上进行了测试,部分被采样为一系列泌乳时间点。 HMOS易于识别和量化。因此,可以确定供体的分泌物和路易斯状态,可以进行乳汁分型,并且可以沿泌乳时间过程监测定量变化。基于xCGE-LIF的开发的“真实”高通量HMOS分析方法可对大型样品的总碳水化合物组分组成进行定性和定量的高性能分析。

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