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Natural alternatives to in-feed antibiotics in pig production: can immunomodulators play a role?

机译:猪生产中饲料中抗生素的天然替代品:免疫调节剂能否发挥作用?

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As a result of the European ban of in-feed growth-promoting antibiotics, new strategies are being developed to increase the resistance to disease in farm animals. In pig production, this is of particular importance during the weaning transition when piglets are subjected to major stressful events, making them highly sensitive to digestive disorders. At this time, the development of both innate and adaptive immunity at the mucosal surface is critical in preventing the potential harmful effects of intestinal pathogenic agents. Strategies aiming at stimulating natural host defences through the use of substances able to modulate immune functions have gained increasing interest in animal research, and different bioactive components a priori sharing those properties have been the subject of in vivo nutritional investigations in pig. Among these, yeast derivates ( beta -glucans and mannans) are able to interact with immune cells, particularly phagocytic cells. However, studies where they have been fed to pigs have shown inconsistent results, suggesting that their ability to target the sensitive immune cells through the oral route is questionable. The plant extracts, which would benefit from a positive image in the public opinion, have also been tested. However, due to a lack of data on the bioactive components of particular plants and the large diversity of species, it has proved difficult to prepare extracts of equivalent potency and thus, the literature on their influence on pig immunity remains inconclusive. In considering piglet immunity and health benefits, the most promising results to date have been obtained with spray-dried animal plasma, whose positive effects would be provided by specific antibodies and non-specific competition of some plasma components with bacteria for intestinal receptors. The major positive effect of spray-dried animal plasma is in reducing the infiltration of gut-associated lymphoid tissue by immune cells, which is likely to be the result of a decreased colonisation by potentially harmful bacteria. This review also highlights the limitations of some of the published in vivo studies on the immunomodulatory activity of certain feed additives. Among those, the lack of standardisation of extracts and the heterogeneity of piglet-rearing conditions (e.g. exposure to pathogens) are likely the most limiting.
机译:欧洲禁止饲料中促进生长的抗生素的结果是,正在开发新的策略来提高对家畜的抗病性。在仔猪生产中,这一过程在断奶过渡期间尤其重要,因为仔猪遭受重大压力事件,使它们对消化系统疾病高度敏感。此时,粘膜表面先天免疫和适应性免疫的发展对于预防肠道病原体的潜在有害作用至关重要。通过使用能够调节免疫功能的物质来刺激自然宿主防御的策略已在动物研究中引起了越来越多的兴趣,具有这些特性的不同生物活性成分已经成为研究的主题。猪体内营养研究。其中,酵母衍生物(β-葡聚糖和甘露聚糖)能够与免疫细胞,特别是吞噬细胞相互作用。但是,将它们喂给猪的研究结果却不一致,这表明它们通过口服途径靶向敏感免疫细胞的能力令人怀疑。还可以对植物提取物进行测试,该提取物将受益于公众舆论的正面印象。但是,由于缺乏有关特定植物的生物活性成分的数据以及物种的多样性,已证明难以制备具有同等效力的提取物,因此有关其对猪免疫力影响的文献尚无定论。考虑到仔猪的免疫力和健康益处,迄今为止,用喷雾干燥的动物血浆获得了最有希望的结果,其积极作用将由特异性抗体和某些血浆成分与细菌对肠受体的非特异性竞争而提供。喷雾干燥动物血浆的主要积极作用是减少免疫细胞对肠道相关淋巴样组织的浸润,这很可能是潜在有害细菌定植减少的结果。这篇综述还强调了一些关于某些饲料添加剂的免疫调节活性的体内研究的局限性。其中,提取物缺乏标准化和仔猪饲养条件的异质性(例如暴露于病原体)可能是最大的限制。

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