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早期喂养可导致哺乳仔猪肠道黏膜免疫系统的分子成熟。

Early feeding leads to molecular maturation of the gut mucosal immune system in suckling piglets.

机构信息

Host-Microbe Interactomics Group, Department of Animal Sciences, Wageningen University & Research, Wageningen, Netherlands.

Adaptation Physiology Group, Department of Animal Sciences, Wageningen University & Research, Wageningen, Netherlands.

出版信息

Front Immunol. 2023 May 25;14:1208891. doi: 10.3389/fimmu.2023.1208891. eCollection 2023.

Abstract

INTRODUCTION

Diet-microbiota-host interactions are increasingly studied to comprehend their implications in host metabolism and overall health. Keeping in mind the importance of early life programming in shaping intestinal mucosal development, the pre-weaning period can be utilised to understand these interactions in suckling piglets. The objective of this study was to investigate the consequences of early life feeding on the time-resolved mucosal transcriptional program as well as mucosal morphology.

METHODS

A customised fibrous feed was provided to piglets (early-fed or EF group; 7 litters) from five days of age until weaning (29 days of age) in addition to sow's milk, whereas control piglets (CON; 6 litters) suckled mother's milk only. Rectal swabs, intestinal content, and mucosal tissues (jejunum, colon) were obtained pre- and post-weaning for microbiota analysis (16S amplicon sequencing) and host transcriptome analysis (RNA sequencing).

RESULTS

Early feeding accelerated both microbiota colonisation as well as host transcriptome, towards a more "mature state", with a more pronounced response in colon compared to jejunum. Early feeding elicited the largest impact on the colon transcriptome just before weaning (compared to post-weaning time-points), exemplified by the modulation of genes involved in cholesterol and energy metabolism and immune response. The transcriptional impact of early feeding persisted during the first days post-weaning and was highlighted by a stronger mucosal response to the weaning stress, via pronounced activation of barrier repair reactions, which is a combination of immune activation, epithelial migration and "wound-repair" like processes, compared to the CON piglets.

DISCUSSION

Our study demonstrates the potential of early life nutrition in neonatal piglets as a means to support their intestinal development during the suckling period, and to improve adaptation during the weaning transition.

摘要

简介

饮食-微生物群-宿主相互作用越来越受到关注,以了解它们对宿主代谢和整体健康的影响。考虑到早期生活编程对肠道黏膜发育的重要性,哺乳期可以用来理解哺乳仔猪的这些相互作用。本研究的目的是研究早期喂养对黏膜转录程序和黏膜形态的时间分辨的影响。

方法

从五天大开始,除了母猪的奶之外,还向仔猪(早期喂养或 EF 组;7 窝)提供一种定制的纤维饲料,直到断奶(29 天大),而对照组仔猪(CON;6 窝)只吸吮母乳。在断奶前和断奶后采集直肠拭子、肠道内容物和黏膜组织(空肠、结肠),用于微生物群分析(16S 扩增子测序)和宿主转录组分析(RNA 测序)。

结果

早期喂养加速了微生物群的定植和宿主转录组的成熟,使其更接近“成熟状态”,结肠的反应比空肠更明显。早期喂养对结肠转录组的影响最大,就在断奶前(与断奶后时间点相比),这表现在参与胆固醇和能量代谢以及免疫反应的基因的调节上。早期喂养的转录影响在断奶后持续存在,并通过明显激活屏障修复反应来突出表现,与 CON 仔猪相比,这是免疫激活、上皮迁移和“伤口修复”样过程的组合,这在断奶应激下的黏膜反应中更为明显。

讨论

本研究表明,早期生命营养在新生仔猪中的潜力,可以作为支持其哺乳期肠道发育的一种手段,并改善断奶过渡期的适应能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/832d/10248722/7dc4b9ae7ddd/fimmu-14-1208891-g001.jpg

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