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Phytogenic Compounds as Alternatives to In-Feed Antibiotics: Potentials and Challenges in Application

机译:植物源性化合物替代饲用抗生素:应用中的潜力和挑战

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摘要

This article summarizes current experimental knowledge on the efficacy, possible mechanisms and feasibility in the application of phytogenic products as feed additives for food-producing animals. Phytogenic compounds comprise a wide range of plant-derived natural bioactive compounds and essential oils are a major group. Numerous studies have demonstrated that phytogenic compounds have a variety of functions, including antimicrobial/antiviral, antioxidative and anti-inflammation effects and improvement in the palatability of feed and gut development/health. However, the mechanisms underlying their functions are still largely unclear. In the past, there has been a lack of consistency in the results from both laboratory and field studies, largely due to the varied composition of products, dosages, purities and growing conditions of animals used. The minimal inhibitory concentration (MIC) of phytogenic compounds required for controlling enteric pathogens may not guarantee the best feed intake, balanced immunity of animals and cost-effectiveness in animal production. The lipophilic nature of photogenic compounds also presents a challenge in effective delivery to the animal gut and this can partially be resolved by microencapsulation and combination with other compounds (synergistic effect). Interestingly, the effects of photogenic compounds on anti-inflammation, gut chemosensing and possible disruption of bacterial quorum sensing could explain a certain number of studies with different animal species for the better production performance of animals that have received phytogenic feed additives. It is obvious that phytogenic compounds have good potential as an alternative to antibiotics in feed for food animal production and the combination of different phytogenic compounds appears to be an approach to improve the efficacy and safety of phytogenic compounds in the application. It is our expectation that the recent development of high-throughput and “omics” technologies can significantly advance the studies on the mechanisms underlying phytogenic compounds’ functions and, therefore, guide the effective use of the compounds.
机译:本文总结了当前的实验知识,涉及将植物性产品用作食品生产动物的饲料添加剂的功效,可能的机理和可行性。植物源性化合物包括多种植物来源的天然生物活性化合物,精油是主要的组。大量研究表明,植物性化合物具有多种功能,包括抗微生物/抗病毒,抗氧化和抗发炎作用以及改善饲料和肠道发育/健康的适口性。但是,其功能的基本机制仍不清楚。过去,实验室和现场研究的结果一直缺乏一致性,这在很大程度上是由于所用动物的产品组成,剂量,纯度和生长条件的不同。控制肠道病原体所需的植物抑制化合物的最低抑菌浓度(MIC)可能无法保证最佳的采食量,平衡的动物免疫力和动物生产的成本效益。光致化合物的亲脂性质也对有效递送至动物肠道提出了挑战,这可以通过微囊化和与其他化合物组合(协同效应)部分解决。有趣的是,光致化合物对抗发炎,肠道化学感应和细菌群体感应的可能破坏的影响,可以解释一些针对不同动物物种的研究,这些研究旨在提高接受植物性饲料添加剂的动物的生产性能。显然,植物性化合物具有替代食用动物饲料中抗生素的潜力,并且将多种植物性化合物组合在一起似乎是提高应用中植物性化合物功效和安全性的一种方法。我们期望,高通量和“组学”技术的最新发展可以显着推进有关植物性化合物功能的基本机制的研究,从而指导化合物的有效使用。

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