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婴儿配方奶粉的蛋白质成分质量会影响新生仔猪的结肠生理、微生物群以及血清代谢组学特征。

The protein ingredient quality of infant formula influences colonic physiology and microbiota and the serum metabolomic profile in neonatal mini-piglets.

作者信息

Chauvet Lucile, Randuineau Gwénaëlle, Guérin Sylvie, Cahu Armelle, Janvier Régis, Dahirel Patrice, Maillard Marie-Bernadette, Dupont Didier, Lemaire Marion, Deglaire Amélie, Huërou-Luron Isabelle Le

机构信息

STLO, INRAE, L'Institut Agro, Rennes, France; Institut NuMeCan, INRAE, INSERM, Univ Rennes, Saint Gilles, France; SODIAAL International, Centre Recherche & Innovation, Rennes, France.

Institut NuMeCan, INRAE, INSERM, Univ Rennes, Saint Gilles, France.

出版信息

Food Res Int. 2025 Jan;200:115511. doi: 10.1016/j.foodres.2024.115511. Epub 2024 Dec 6.

Abstract

Despite the WHO recommendations in favor of breastfeeding, most infants receive infant formulas (IFs), which are complex matrices involving numerous ingredients and processing steps. Our aim was to understand the impact of the quality of the protein ingredient in IFs on gut microbiota and physiology, blood metabolites and brain gene expression. Three IFs were produced using whey proteins (WPs) from cheese whey (IF-A) or ideal whey (IFs-C and -D) and caseins, either in a micellar form (IFs-A and -C) or partly in a non-micellar form (IF-D). Twenty-four Yucatan minipiglets received one of the IFs from 2- to 21-days of age. The piglets were then euthanized 84 min postprandially. Blood, ileal and colonic digesta and tissues, the liver and the hypothalamus were sampled. Gut microbiota composition and activity, the expression of intestinal and brain genes involved in barrier, immune, endocrine, nutrient carrier and neuronal functions and serum metabolite levels were determined. Intestinal paracellular permeability was assessed with an ex vivo Ussing chamber. The data were analyzed using multifactorial and univariate analyses. The colon was the main site to be physiologically affected by the quality of the dairy protein ingredients used in IFs. Colonic paracellular permeability was significantly higher in IF-D-fed piglets than in those receiving IFs-A and -C, in line with the expression of genes encoding tight junction proteins (OCLN, CLDN3 and CLDN4). IF-D up-regulated the colonic expression of genes involved in the immune function (SOCS3, PIGR and TNFα) when compared to IF-A. Although intestinal α- and β-diversities did not significantly differ among IFs, some specific differences were observed, such as the abundances of Campylobacterota phylum and Bacteroides genera and fecal butyrate production, which were increased with IFs-C and -D versus IF-A. The kynurenine pathway was favored in piglets fed IF-D compared to IF-A, based on colonic gene expression and serum metabolites. In addition, levels of some serum metabolites, particularly putrescine, spermidine and spermine, were higher in piglets fed IF-D than IFs-A and -C. Overall, IF-D, which combined ideal WPs and some non-micellar caseins, appeared to differ most from IF-A in terms of its physiological consequences, suggesting that both WP and casein ingredient quality may mediate the physiological properties of IFs, probably through changes to the colonic microbiota composition and activity.

摘要

尽管世界卫生组织建议支持母乳喂养,但大多数婴儿食用婴儿配方奶粉(IFs),婴儿配方奶粉是一种复杂的混合物,涉及多种成分和加工步骤。我们的目的是了解婴儿配方奶粉中蛋白质成分的质量对肠道微生物群和生理功能、血液代谢物以及大脑基因表达的影响。使用来自奶酪乳清的乳清蛋白(WPs)(IF-A)或理想乳清(IFs-C和-D)以及酪蛋白制备了三种婴儿配方奶粉,酪蛋白呈胶束形式(IFs-A和-C)或部分呈非胶束形式(IF-D)。24只尤卡坦仔猪在2至21日龄期间食用其中一种婴儿配方奶粉。然后在餐后84分钟对仔猪实施安乐死。采集血液、回肠和结肠消化物及组织、肝脏和下丘脑样本。测定肠道微生物群组成和活性、参与屏障、免疫、内分泌、营养载体和神经元功能的肠道和大脑基因的表达以及血清代谢物水平。使用离体Ussing小室评估肠道细胞旁通透性。使用多因素和单变量分析对数据进行分析。结肠是受婴儿配方奶粉中所用乳制品蛋白质成分质量生理影响的主要部位。与食用IFs-A和-C的仔猪相比,食用IF-D的仔猪结肠细胞旁通透性显著更高,这与编码紧密连接蛋白(OCLN、CLDN3和CLDN4)的基因表达一致。与IF-A相比,IF-D上调了参与免疫功能的基因(SOCS3、PIGR和TNFα)的结肠表达。尽管不同婴儿配方奶粉之间肠道α-多样性和β-多样性没有显著差异,但观察到了一些特定差异,例如弯曲杆菌门和拟杆菌属的丰度以及粪便丁酸盐产量,与IF-A相比,IFs-C和-D组有所增加。基于结肠基因表达和血清代谢物,与IF-A相比,食用IF-D的仔猪中犬尿氨酸途径更活跃。此外,食用IF-D的仔猪中一些血清代谢物的水平,特别是腐胺、亚精胺和精胺,高于食用IFs-A和-C的仔猪。总体而言,结合了理想乳清蛋白和一些非胶束酪蛋白的IF-D在生理后果方面似乎与IF-A差异最大,这表明乳清蛋白和酪蛋白成分的质量都可能通过改变结肠微生物群组成和活性来调节婴儿配方奶粉的生理特性。

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