Meijerink Nathalie, de Oliveira Jean E, van Haarlem Daphne A, Hosotani Guilherme, Lamot David M, Stegeman J Arjan, Rutten Victor P M G, Jansen Christine A
Department Biomolecular Health Sciences, Division Infectious Diseases and Immunology, Faculty of Veterinary Medicine, Utrecht University, 3584 CL Utrecht, The Netherlands.
Cargill R&D Center Europe, B-1800 Vilvoorde, Belgium.
Vet Sci. 2021 Jun 12;8(6):110. doi: 10.3390/vetsci8060110.
Restrictions on the use of antibiotics in the poultry industry stimulate the development of alternative nutritional solutions to maintain or improve poultry health. This requires more insight in the modulatory effects of feed additives on the immune system and microbiota composition. Compounds known to influence the innate immune system and microbiota composition were selected and screened in vitro, in ovo, and in vivo. Among all compounds, 57 enhanced NK cell activation, 56 increased phagocytosis, and 22 increased NO production of the macrophage cell line HD11 in vitro. Based on these results, availability and regulatory status, six compounds were selected for further analysis. None of these compounds showed negative effects on growth, hatchability, and feed conversion in in ovo and in vivo studies. Based on the most interesting numerical results and highest future potential feasibility, two compounds were analyzed further. Administration of glucose oligosaccharide and long-chain glucomannan in vivo both enhanced activation of intraepithelial NK cells and led to increased relative abundance of lactic acid bacteria (LAB) amongst ileum and ceca microbiota after seven days of supplementation. Positive correlations between NK cell subsets and activation, and relative abundance of LAB suggest the involvement of microbiota in the modulation of the function of intraepithelial NK cells. This study identifies glucose oligosaccharide and long-chain glucomannan supplementation as effective nutritional strategies to modulate the intestinal microbiota composition and strengthen the intraepithelial innate immune system.
家禽行业对抗生素使用的限制刺激了替代性营养解决方案的发展,以维持或改善家禽健康。这需要更深入了解饲料添加剂对免疫系统和微生物群组成的调节作用。选择了已知会影响先天免疫系统和微生物群组成的化合物,并在体外、卵内和体内进行筛选。在所有化合物中,有57种增强了自然杀伤(NK)细胞的激活,56种增加了吞噬作用,22种在体外增加了巨噬细胞系HD11的一氧化氮(NO)产生。基于这些结果、可得性和监管状况,选择了六种化合物进行进一步分析。在卵内和体内研究中,这些化合物均未对生长、孵化率和饲料转化率产生负面影响。基于最有趣的数值结果和最高的未来潜在可行性,对两种化合物进行了进一步分析。在体内给予低聚葡萄糖和长链葡甘露聚糖,均增强了上皮内NK细胞的激活,并在补充七天后导致回肠和盲肠微生物群中乳酸菌(LAB)的相对丰度增加。NK细胞亚群与激活以及LAB相对丰度之间的正相关表明微生物群参与了上皮内NK细胞功能的调节。本研究确定补充低聚葡萄糖和长链葡甘露聚糖是调节肠道微生物群组成和增强上皮内先天免疫系统的有效营养策略。