在饲料中添加结合蛋白可维持仔猪肠道健康,并减轻大肠杆菌引起的断奶后腹泻

IF 7 1区 农林科学 Q1 Agricultural and Biological Sciences
Jiajia Xu, Melania Andrani, Rikke Brødsgaard Kjærup, Tina Sørensen Dalgaard, Carsten Eriksen, Andreas Hougaard Laustsen, Susanne Brix, Sandra Wingaard Thrane, Nuria Canibe
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引用次数: 0

摘要

仔猪断奶后腹泻(PWD)通常由F4+产肠毒素大肠杆菌(ETEC)引起,对养猪生产构成重大挑战。由于对抗生素耐药性和环境可持续性的担忧日益增加,抗生素和氧化锌等传统解决方案面临越来越多的限制。本研究探讨了针对ETEC毒力因子的二价重链可变结构域(VHH)构建物(BL1.2和BL2.2)在饲料中的应用,以减轻ETEC诱导的断奶仔猪PWD。在豆粕和颗粒饲料中添加BL1.2和BL2.2可显著降低攻毒仔猪腹泻发生率和粪便中F4+ ETEC的排出量。含有VHH结构的颗粒饲料通过维持小肠紧密连接蛋白occludin的水平来帮助保护肠道屏障的完整性。此外,构建物将血液粒细胞计数维持在与未攻毒对照组相似的水平,包括中性粒细胞,并改善攻毒后的急性期蛋白反应。值得注意的是,即使在断奶后的低采食量下,VHH结构也可以通过减轻ecc引起的炎症和由此引起的腹泻来帮助维持仔猪的健康。我们的研究结果表明,使用VHH构建物作为饲料添加剂可以通过减少F4+ ETEC肠道定植和支持断奶仔猪肠道屏障功能,有效地帮助管理ETEC相关的PWD。这些VHH结构的高稳定性支持将其纳入工业饲料生产过程,与传统的抗菌干预措施相比,提供了一种更可持续的预防策略,这可能有助于可持续的农业实践。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In-feed provision of binding proteins sustains piglet gut health and mitigates ETEC-induced post-weaning diarrhea
Post-weaning diarrhea (PWD) in piglets, often caused by F4+ enterotoxigenic Escherichia coli (ETEC), poses significant challenges in pig production. Traditional solutions like antibiotics and zinc oxide face increasing restrictions due to growing concerns over antibiotic resistance and environmental sustainability. This study investigates the application of bivalent heavy chain variable domain (VHH) constructs (BL1.2 and BL2.2) targeting ETEC virulence factors, administered in feed to mitigate ETEC-induced PWD in weaned piglets. The supplementation of BL1.2 and BL2.2 in both mash and pelleted feed significantly reduced the diarrhea incidence and fecal shedding of F4+ ETEC in challenged piglets. Pelleted feed containing VHH constructs helped to preserve gut barrier integrity by maintaining levels of the tight junction protein occludin in the small intestine. Additionally, the constructs maintained blood granulocyte counts at a similar level to the non-challenged control group, including neutrophils, and ameliorated the acute phase protein response after challenge. Notably, even at low feed intake immediately after weaning, VHH constructs helped maintain piglet health by mitigating ETEC-induced inflammation and the resulting diarrhea. Our findings demonstrated that using VHH constructs as feed additives could serve as an effective strategy to help manage ETEC-associated PWD, by reducing F4+ ETEC gut colonization and supporting gut barrier function of weaned piglets. The high stability of these VHH constructs supports their incorporation into industrial feed manufacturing processes, offering a more sustainable preventive strategy compared to traditional antimicrobial interventions, which could contribute to sustainable farming practices.
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来源期刊
Journal of Animal Science and Biotechnology
Journal of Animal Science and Biotechnology AGRICULTURE, DAIRY & ANIMAL SCIENCE-
CiteScore
9.90
自引率
2.90%
发文量
822
审稿时长
17 weeks
期刊介绍: Journal of Animal Science and Biotechnology is an open access, peer-reviewed journal that encompasses all aspects of animal science and biotechnology. That includes domestic animal production, animal genetics and breeding, animal reproduction and physiology, animal nutrition and biochemistry, feed processing technology and bioevaluation, animal biotechnology, and meat science.
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