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Role of pH in the recovery of bovine milk oligosaccharides from colostrum whey permeate by nanofiltration

机译:pH在纳滤中从初乳乳清渗透物中回收牛乳低聚糖的作用

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摘要

Milk oligosaccharides are associated with improved health outcomes in infants. Nanofiltration (NF) is used for isolation of bovine milk oligosaccharides (BMO). The study aim was to improve the recovery of BMO from lactose-hydrolyzed colostrum whey permeate. The retention factors of carbohydrates at various pH and transmembrane pressures were determined for a nanofiltration membrane, which was used at pilot scale to purify BMO. Carbohydrates were quantified by liquid chromatography and characterized using nano-LC-Chip-QToF mass spectrometry. BMO purity was improved from an initial 4% in colostrum whey permeate to 98%, with 99.8% permeation of monosaccharides and 96% recovery of oligosaccharides, represented by 23 unique BMO compounds identified in the final retentate. The pH during NF was a determining factor in the selectivity of carbohydrate separation. This NF method can be applied to conventional cheese-whey permeate and other milk types for extraction of bioactive oligosaccharides providing new options for the dairy industry.
机译:牛奶低聚糖与婴儿健康状况改善相关。纳滤(NF)用于分离牛乳寡糖(BMO)。该研究的目的是提高乳糖水解初乳乳清渗透液中BMO的回收率。确定了纳米过滤膜在各种pH和跨膜压力下碳水化合物的保留因子,该膜以中试规模用于纯化BMO。通过液相色谱对碳水化合物进行定量,并使用纳米LC-Chip-QToF质谱进行表征。 BMO的纯度从初乳乳清的最初4%提高到98%,单糖的渗透率为99.8%,寡糖的回收率为96%,这在最终渗余物中鉴定出23种独特的BMO化合物。 NF期间的pH是碳水化合物分离选择性的决定因素。该NF方法可应用于传统的乳清干酪乳清渗透液和其他类型的牛奶,以提取生物活性低聚糖,为乳制品行业提供了新的选择。

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