混合有机酸可改善断奶后仔猪的肠道形态并影响炎症反应

Nienke de Groot, Fernando Fariñas, Carolina G. Cabrera-Gómez, Francisco J. Pallarés, Guillermo Ramis
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摘要

断奶是仔猪一生中的一个应激期,此时胃肠道会发生许多形态和功能上的变化。例如屏障功能的改变和细胞因子分泌的增加,这表明断奶后胃肠道的免疫系统被激活。本研究的目的是评估一种基于中短链脂肪酸的市售饲料添加剂对支持断奶后仔猪肠道健康和减少肠道炎症的效果。70 头仔猪分为两种处理,一种是对照日粮,另一种是中短链脂肪酸(包括丁酸盐)混合日粮。断奶后第 0、15、30 和 45 天,从牺牲的仔猪身上采集血液样本和肠道组织样本。对血液和组织样本进行细胞因子基因表达分析,并对空肠和回肠组织样本进行形态学和紧密连接基因表达分析。结果表明,使用包括丁酸盐在内的中短链脂肪酸混合物可改善肠道形态(以绒毛长度和 v/c 比值衡量)、减少紧密连接蛋白的表达并影响肠道中细胞因子的产生,这意味着使用有机酸作为饲料添加剂有可能减少断奶对肠道屏障造成的损害,而且由于绒毛的吸收能力更强,有可能改善营养吸收。
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Blend of organic acids improves gut morphology and affects inflammation response in piglets after weaning
Weaning is a stressful period in a piglet’s life, when many morphological and functional changes occur in the gastrointestinal tract. Examples are an alteration of the barrier function and an increase in production of cytokines, suggesting the immune system of the GIT is activated after weaning. The goal of this study was to evaluate the effect of a commercially available feed additive based on short and medium chain fatty acids on supporting intestinal health and reduce inflammation in the intestine of post-weaning piglets. Seventy piglets were divided over 2 treatments, a control diet and a blend of short and medium chain fatty acids, including butyrate. On day 0, 15, 30 and 45 after weaning blood samples and intestinal tissue samples were collected from sacrificed piglets. Blood and tissue samples were analysed for cytokine gene expression, and tissue samples from jejunum and ileum were analysed on morphology and gene expression of tight junctions. Results show that the use of a blend of short and medium chain fatty acids, including butyrates, improved intestinal morphology, measured by villous length and v/c ratio, reduced expression of tight junction proteins and influenced cytokine production in the intestine, implicating that the use of organic acids as feed additives potentially can reduce damage caused by weaning to the intestinal barrier and due to the higher absorption capacity of the villi potentially improve nutrient absorption.
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