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Analytical characterization of human milk oligosaccharides – potential applications in pharmaceutical analysis

机译:人乳低聚糖的分析表征 - 药物分析中的潜在应用

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Highlights ? An overview of the structure and function of human milk oligosaccharides (HMOs). ? Potential applications of HMOs in the pharmaceutical industry is highlighted. ? A summary of analytical methods for the determination of HMOs in complex matrices. ? LC, GC and CE methods for the separation of milk oligosaccharides are reviewed. ? Approaches involving MS analysis for the quantitation of HMOs are discussed. Abstract Human breast milk is the gold standard for infant feeding and the best possible nourishment a new-born could have. Breastfeeding is the natural way to provide optimal nutritional, immunological and emotional nurturing for the healthy growth and development of infants. Human milk is a complex and dynamic biofluid comprised of many hundreds to thousands of distinct bioactive structures, among which one of the most abundant substances are the non-conjugated complex carbohydrates referred to as human milk oligosaccharides (HMOs). Due to their structural diversity and abundance, HMOs possess many beneficial biological functions. In order to understand human milk composition and HMO functions, state-of-the-art glycomic methods are inevitable. The industrial, large scale chemoenzymatic production of the most abundant HMOs became a reality in the last years and it evokes the need for straightforward and genuine analytical procedures to monitor the synthetic process and the quality of the products. It is obvious, that HMOs represent the next breakthrough in infant nutrition, as the addition of HMOs (such as 2′-fucosyllactose or lacto- N -neotetraose) to infant- and follow-on formulas, processed cereal-based food and baby foods for infants and young children etc. will revolutionize this field. This review highlights the potential applications of HMOs in the (bio)pharmaceutical industry, also summarizes the analytical methods available for the characterization of HMOs. An overview of the structure and function of HMOs along with their determination methods in complex matrices are provided. Various separation methods including liquid- and gas chromatography and capillary electrophoresis for the characterization and novel approaches for the quantitation of HMOs are discussed.
机译:强调 ?人乳寡糖(HMOS)结构和功能概述。还是HMOS在制药行业中的潜在应用是突出的。还是复杂矩阵中HMOS测定分析方法的概述。还是综述了用于分离牛奶寡糖的LC,GC和CE方法。还是讨论了涉及MS分析用于定量HMOS的方法。摘要人类母乳是婴儿喂养的黄金标准,最佳营养营养可能拥有。母乳喂养是提供最佳营养,免疫学和情感培养的自然方式,为健康增长和婴儿发育。人乳是一种复合物和动态的生物流体,其包含数百至数千个不同的生物活性结构,其中最丰富的物质之一是未缀合的复合碳水化合物称为人乳寡糖(HMOS)。由于其结构多样性和丰富,HMOS具有许多有益的生物功能。为了理解人乳成分和HMO功能,最先进的糖类方法是不可避免的。工业,大规模化学酶的生产最丰富的HMOS在过去几年成为现实,它唤起了对监测合成过程和产品质量的直接和真正的分析程序的需要。显而易见的是,HMOS代表婴儿营养的下一个突破,因为将HMOS(例如2'-岩藻糖糖糖糖糖糖(如2'-岩藻糖糖苷糖糖糖(如乳糖蛋白酶)添加到婴儿和后续配方,加工谷物的食物和婴儿食品对于婴儿和幼儿等。将彻底改变这一领域。本综述突出了HMO在(BIO)制药业中的潜在应用,还总结了用于HMOS表征的分析方法。提供了HMOS的结构和功能以及它们在复杂矩阵中的确定方法的概述。讨论了各种分离方法,包括液体和气相色谱和毛细管电泳,用于定量HMOS的表征和新方法。

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