食品科学 ›› 2017, Vol. 38 ›› Issue (18): 180-186.doi: 10.7506/spkx1002-6630-201718029

• 成分分析 • 上一篇    下一篇

中国母乳中低聚糖组分及含量变化——以中国广东江门地区为例

魏远安,郑惠玲,吴少辉,吴嘉仪,霍金洪   

  1. (量子高科(中国)生物股份有限公司技术中心,广东?江门 529081)
  • 出版日期:2017-09-25 发布日期:2017-09-04

Change in Composition and Content of?Oligosaccharides?in Human Milk from Chinese Lactating Mothers

WEI Yuan’an, ZHENG Huiling, WU Shaohui, WU Jiayi, HUO Jinhong   

  1. (Technical Center, Quantum Hi-Tech (China) Biological Co. Ltd., Jiangmen 529081, China)
  • Online:2017-09-25 Published:2017-09-04

摘要: 密集收取22?位中国母亲共163?个母乳样品,采用高效阴离子色谱法监测在不同泌乳期中22?种母乳低聚糖(human milk oligosaccharides,HMOs)的组成和含量变化。结果表明,15?种中性低聚糖含量在泌乳初期(初乳)达到最高值后逐渐减少(成熟乳),但是3-岩藻糖乳糖的含量在整个取样阶段均在持续增加。6?种酸性低聚糖在泌乳初期稳定但后期随时间延长逐渐减少,其中唾液酸化-乳糖-N-四糖a只在部分样本中检出。基于Lewis血型类型,可将母亲分为分泌型组和非分泌型组。分泌型母亲的母乳中富含α-1-2-L-岩藻糖基化低聚糖(如2’-岩藻糖乳糖、乳酰-N-岩藻五糖Ⅰ、二岩藻糖基乳糖、乳酰-N-二岩藻六糖Ⅰ)。在分泌型与非分泌型母乳中,α-1-2-L-岩藻糖基化低聚糖的质量浓度范围分别为1?211~7?272?mg/L和100~920?mg/L;然而α-1-3/4-L-岩藻糖基化低聚糖(如乳酰-N-二岩藻六糖Ⅱ、乳糖-N-二岩藻糖基-八糖、3-岩藻糖乳糖、乳酰-N-岩藻五糖 Ⅱ)的质量浓度范围则分别为181~2?722?mg/L和476~4?931?mg/L。总体表明,分泌型和非分泌型母亲在泌乳期内的HMOs的组成和含量均在不断变化且差异明显。

关键词: 高效阴离子色谱, 母乳低聚糖, 分泌型母乳, 非分泌型母乳

Abstract: Twenty two human milk oligosaccharides (HMOs) in 163 milk samples collected from 22 Chinese mothers during different stages of lactation were measured by high-performance anion-exchange chromatography (HPAEC). Levels of 15 neutral HMOs were highest at the early stages of lactation (in colostrum) and decreased later (in mature milk), but?3-fucosyllactose level continuously increased throughout the sampling period. Levels of six sialylated HMOs decreased during the course of lactation, and LSTa was detected only in some samples. Based on the Lewis blood types, the?volunteers were divided into secretor mother group and non-secretor mother group. Milk samples from secretor mothers were rich in α-1-2-linked fucosylated oligosaccharides (such as 2’-FL, LNFP Ⅰ, LDFT, and LNDFH Ⅰ). Specifically, the concentrations of the α-1-2-linked fucosylated oligosaccharides ranged from 1 211 to 7 272 mg/L in milk from secretor mothers and from 100 to 920 mg/L in milk from non-secretor mothers. In contrast, the contents of α-1-3/4-linked fucosylated oligosaccharides (such as LNDFH Ⅱ, DFLNH, 3-FL, and LNFP Ⅱ) was 476–4 931 mg/L in milk from non-secretor mothers, compared to 181–2 722 mg/L for milk from secretor mothers. Generally, this study showed that the composition and contents of HMOs in milk from secretor and non-secretor mothers varied continuously and were different significantly during the lactation period.

Key words: high-performance anion exchange chromatography (HPAEC), human milk oligosaccharides, secretor type milk, non-secretor type milk

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