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Effects of dietary fatty acids on gut health and function of pigs pre- and post-weaning

机译:膳食脂肪酸对猪肠道健康和断奶后猪功能的影响

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摘要

Fatty acids (FA) play a major role in relation to mucosal immune responses, epithelial barrier functions, oxidative stress, and inflammatory reactions. The dietary FA composition and the molecular structures (chain length and number of double bonds) influence digestion, absorption and metabolism, and the bioactivity of the FA. Piglets post-weaning having an immature intestine and not fully formed immune functions are very vulnerable to invading microorganisms. Manipulation of the milk FA composition via sow nutrition, or inclusion of dietary fat sources in the feed for newly weaned pigs, may be used as a strategic tool to enhance pig performance and their gut health and function pre- and post-weaning. Medium-chain fatty acids (MCFA) are absorbed directly into the portal blood and may contribute to immediate energy for the enterocytes. In addition, the MCFA, similarly to the short-chain fatty acids (SCFA), possess antibacterial effects and may thereby prevent overgrowth of pathogenic bacteria in the gastrointestinal tract. The essential FA, linoleic (LA) and α-linolenic (ALA) FA, form the building blocks for the long-chain polyunsaturated n-3 and n-6 FA. The conversion of ALA and LA into n-3 and n-6 eicosanoids, respectively, influences the molecular structures of metabolites and inflammatory reactions and other immune responses upon bacterial challenges. Dietary manipulation of the lactating sow influences the transfer of the n-3 and n-6 polyunsaturated fatty acids (PUFA) from the sow milk to the piglet and the incorporation of the FA into piglet enteric tissues and cell membranes, which exerts bioactivity of importance for immune responses and the epithelial barrier function. Especially, the n-3 PUFA present in fish oil seem to influence the gut health and function of pigs, and this is of importance during the transition periods such as post-weaning in which piglets are prone to inflammation. The proportion of unsaturated FA in the cell membranes influences the susceptibility to oxidative stress. Oxidative stress accompanies infectious diseases, and the development of lipid peroxides and other reactive oxygen products may be harmful to the epithelial barrier function. Fatty acid peroxides from the feed may also be absorbed with other lipid-solubles and thereby harm the intestinal function. Hence, antioxidative protection is important for the enteric cells. In conclusion, manipulation of the dietary FA composition can influence the gut health and function in pigs and may support a normal immune system and modulate resistance to infectious diseases during especially stressful phases of a pig’s life such as post-weaning.
机译:脂肪酸(FA)在粘膜免疫应答,上皮阻隔功能,氧化应激和炎症反应中起主要作用。膳食FA组成和分子结构(链长度和双键数)影响消化,吸收和代谢,以及FA的生物活性。仔猪断奶后肠道未发生肠道,不完全形成的免疫功能非常易于入侵微生物。通过播种营养或将膳食脂肪来源的饲料进行操纵,或者在新断奶猪的饲料中包含饮食脂肪来源,可用作增强猪的性能及其肠道健康和函数预先和后期的战略工具。中链脂肪酸(MCFA)被直接吸收到门耳血上,可能有助于肠细胞的立即能量。此外,类似于短链脂肪酸(SCFA)的MCFA具有抗菌作用,从而防止胃肠道中的病原细菌过度生长。基本FA,亚油(LA)和α-亚麻酸(ALA)FA,形成长链多不饱和N-3和N-6 FA的构建块。分别将Ala和La转化为N-3和N-6籽糖蛋白,影响代谢物和炎症反应的分子结构和对细菌挑战的其他免疫反应。哺乳母猪的膳食操纵会影响来自母牛的N-3和N-6多不饱和脂肪酸(PUFA)转移到仔猪中,并将FA掺入仔猪肠道组织和细胞膜,这施加了重要性的生物活性用于免疫应答和上皮屏障功能。特别是,鱼油中存在的N-3 PUFA似乎影响了猪的肠道健康和功能,并且在过渡期间,这种仔猪易患炎症的后续期间,这是重要的。细胞膜中不饱和Fa的比例影响对氧化应激的敏感性。氧化胁迫伴随着传染病,以及脂质过氧化物的发育和其他反应性氧产物可能对上皮屏障功能有害。来自进料的脂肪酸过氧化物也可以被其他脂质溶解的吸收,从而造成肠功能。因此,抗氧化保护对于肠溶细胞很重要。总之,饮食成分组合物的操纵可以影响猪的肠道健康和功能,并且可以支持正常的免疫系统,并在猪寿命中特别压力阶段调节对传染病的抗性,如断奶后的母猪。

著录项

  • 期刊名称 Journal of Animal Science
  • 作者

    Charlotte Lauridsen;

  • 作者单位
  • 年(卷),期 2020(98),4
  • 年度 2020
  • 页码 skaa086
  • 总页数 12
  • 原文格式 PDF
  • 正文语种
  • 中图分类 动物学 ;
  • 关键词

    机译:屏障功能;脂肪酸;免疫;炎症;微生物疱疹;仔猪;

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