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Antibiotics in Canadian poultry productions and anticipated alternatives

机译:加拿大家禽生产中的抗生素及预期替代品

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摘要

The use of antibiotics in food-producing animals has significantly increased animal health by lowering mortality and the incidence of diseases. Antibiotics also have largely contributed to increase productivity of farms. However, antibiotic usage in general and relevance of non-therapeutic antibiotics (growth promoters) in feed need to be reevaluated especially because bacterial pathogens of humans and animals have developed and shared a variety of antibiotic resistance mechanisms that can easily be spread within microbial communities. In Canada, poultry production involves more than 2600 regulated chicken producers who have access to several antibiotics approved as feed additives for poultry. Feed recipes and mixtures vary greatly geographically and from one farm to another, making links between use of a specific antibiotic feed additive and production yields or selection of specific antibiotic-resistant bacteria difficult to establish. Many on-farm studies have revealed the widespread presence of antibiotic-resistant bacteria in broiler chickens. While some reports linked the presence of antibiotic-resistant organisms to the use of feed supplemented with antibiotics, no recent studies could clearly demonstrate the benefit of antimicrobial growth promoters on performance and production yields. With modern biosecurity and hygienic practices, there is a genuine concern that intensive utilization of antibiotics or use of antimicrobial growth promoters in feed might no longer be useful. Public pressure and concerns about food and environmental safety (antibiotic residues, antibiotic-resistant pathogens) have driven researchers to actively look for alternatives to antibiotics. Some of the alternatives include pre- and probiotics, organic acids and essential oils. We will describe here the properties of some bioactive molecules, like those found in cranberry, which have shown interesting polyvalent antibacterial and immuno-stimulatory activities.
机译:通过降低死亡率和疾病发病率,在食用动物中使用抗生素已大大提高了动物健康水平。抗生素也极大地提高了农场的生产力。但是,通常需要重新评估饲料中抗生素的使用情况以及饲料中非治疗性抗生素(生长促进剂)的相关性,特别是因为人类和动物的细菌病原体已经形成并共有多种抗生素抗性机制,可以很容易地在微生物群落中传播。在加拿大,家禽生产涉及2600多家受管制的鸡肉生产商,他们可以使用几种被批准用作家禽饲料添加剂的抗生素。饲料的配方和混合物在地理位置上以及从一个农场到另一个农场都相差很大,这使得在使用特定抗生素饲料添加剂与生产产量或选择特定抗抗生素细菌之间难以建立联系。许多农场研究表明,肉鸡中普遍存在抗生素抗性细菌。尽管一些报告将抗药性生物的存在与使用补充了抗生素的饲料联系在一起,但最近的研究未能清楚地表明抗菌生长促进剂对生产性能和产量的好处。随着现代生物安全和卫生规范的实施,真正引起关注的是饲料中大量使用抗生素或使用抗菌生长促进剂可能不再有用。公众压力以及对食品和环境安全的关注(抗生素残留,抗药性病原体)驱使研究人员积极寻找抗生素的替代品。一些替代品包括益生菌和益生菌,有机酸和精油。我们将在这里描述一些生物活性分子的特性,例如在蔓越莓中发现的那些,它们显示出有趣的多价抗菌和免疫刺激活性。

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