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首页> 外文期刊>Food Chemistry >Human milk pasteurisation reduces pre-lipolysis but not digestive lipolysis and moderately decreases intestinal lipid uptake in a combination of preterm infant in vitro models
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Human milk pasteurisation reduces pre-lipolysis but not digestive lipolysis and moderately decreases intestinal lipid uptake in a combination of preterm infant in vitro models

机译:人乳杀菌降低预脂解,但不会消化脂解,中度降低肠脂摄取的早产儿体外模型

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摘要

Donor human milk, pasteurised for safety reasons, is the first alternative for feeding preterm infants when mothers' own milk is unavailable. Breastmilk pasteurisation impact on lipid digestion and absorption was evaluated by a static in vitro digestion model for preterm infants coupled with intestinal absorption using Caco-2/TC7 cells. Lipid absorption was quantified by digital image analysis of lipid droplets, by measurement of basolateral triglyceride concentration and by analysing the expression of major genes involved. After in vitro digestion, lipolysis extent was 13% lower in pasteurised human milk (PHM) than in raw human milk (RHM). In Caco-2/TC7 cells, the number of lipid droplets was identical for both milk types, while the mean droplet area was 17% smaller with PHM. Altogether, pasteurisation decreased the pre-lipolysis of human milk. This initial difference in free fatty acid amount was only partially buffered by the subsequent processes of in vitro digestion and cellular lipid absorption.
机译:供体牛奶出于安全原因,是母乳母乳不可用的最早喂养早产儿的替代品。通过使用Caco-2 / TC7细胞与肠道吸收结合的早产婴儿的静态体外消化模型评估对脂质消化和吸收对脂质消化和吸收的母乳粉的影响。通过脂质液滴的数字图像分析来量化脂质吸收,通过测量基石甘油三酯浓度,并通过分析所涉及的主要基因的表达。在体外消化后,巴氏灭菌的人牛奶(PHM)中脂解程比在原料中牛奶(rhM)降低。在Caco-2 / TC7细胞中,脂肪液滴的数量对于两种牛奶类型相同,而平均液滴面积与PHM更小17%。共培养后,巴氏杀菌减少了人牛奶的预脂解。游离脂肪酸量的这种初始差仅是通过在体外消化和细胞脂质吸收的后续过程中部分缓冲。

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  • 来源
    《Food Chemistry》 |2020年第1期|126927.1-126927.9|共9页
  • 作者单位

    Univ Claude Bernard Lyon1 Univ Lyon CarMeN Lab INSERM INRAE INSA Lyon Pierre Benite France|Hosp Civils Lyon Croix Rousse Hosp Neonatol Dept Lyon France;

    Inst Agro INRAE STLO Rennes France;

    Univ Claude Bernard Lyon1 Univ Lyon CarMeN Lab INSERM INRAE INSA Lyon Pierre Benite France|INRIA Project Team BEAGLE Villeurbanne France;

    Inst Agro INRAE STLO Rennes France;

    Univ Claude Bernard Lyon1 Univ Lyon CarMeN Lab INSERM INRAE INSA Lyon Villeurbanne France;

    Hosp Civils Lyon Croix Rousse Hosp Neonatol Dept Lyon France;

    Univ Claude Bernard Lyon1 Univ Lyon CarMeN Lab INSERM INRAE INSA Lyon Pierre Benite France;

    Univ Claude Bernard Lyon1 Univ Lyon CarMeN Lab INSERM INRAE INSA Lyon Pierre Benite France;

    Inst Agro INRAE STLO Rennes France;

    Inst Agro INRAE STLO Rennes France;

    Univ Claude Bernard Lyon1 Univ Lyon CarMeN Lab INSERM INRAE INSA Lyon Pierre Benite France|Hosp Civils Lyon Croix Rousse Hosp Neonatol Dept Lyon France;

    Univ Claude Bernard Lyon1 Univ Lyon CarMeN Lab INSERM INRAE INSA Lyon Pierre Benite France|INRIA Project Team BEAGLE Villeurbanne France;

    Univ Claude Bernard Lyon1 Univ Lyon CarMeN Lab INSERM INRAE INSA Lyon Pierre Benite France;

    Univ Claude Bernard Lyon1 Univ Lyon CarMeN Lab INSERM INRAE INSA Lyon Pierre Benite France;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Caco-2 cells; Human milk; In vitro static digestion; Lipid absorption; Pasteurisation;

    机译:Caco-2细胞;人乳;体外静态消化;脂质吸收;巴氏灭菌;

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