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控制饲料原料和全价饲料中猪病毒的生物安全与缓解策略

Biosecurity and Mitigation Strategies to Control Swine Viruses in Feed Ingredients and Complete Feeds.

作者信息

Shurson Gerald C, Urriola Pedro E, Schroeder Declan C

机构信息

Department of Animal Science, University of Minnesota, St. Paul, MN 55108, USA.

Department of Veterinary Population Medicine, University of Minnesota, St. Paul, MN 55108, USA.

出版信息

Animals (Basel). 2023 Jul 21;13(14):2375. doi: 10.3390/ani13142375.

Abstract

No system nor standardized analytical procedures at commercial laboratories exist to facilitate and accurately measure potential viable virus contamination in feed ingredients and complete feeds globally. As a result, there is high uncertainty of the extent of swine virus contamination in global feed supply chains. Many knowledge gaps need to be addressed to improve our ability to prevent virus contamination and transmission in swine feed. This review summarizes the current state of knowledge involving: (1) the need for biosecurity protocols to identify production, processing, storage, and transportation conditions that may cause virus contamination of feed ingredients and complete feed; (2) challenges of measuring virus inactivation; (3) virus survival in feed ingredients during transportation and storage; (4) minimum infectious doses; (5) differences between using a food safety objective versus a performance objective as potential approaches for risk assessment in swine feed; (6) swine virus inactivation from thermal and irradiation processes, and chemical mitigants in feed ingredients and complete feed; (7) efficacy of virus decontamination strategies in feed mills; (8) benefits of functional ingredients, nutrients, and commercial feed additives in pig diets during a viral health challenge; and (9) considerations for improved risk assessment models of virus contamination in feed supply chains.

摘要

商业实验室中不存在促进和准确测量全球饲料原料和全价饲料中潜在活病毒污染的系统或标准化分析程序。因此,全球饲料供应链中猪病毒污染的程度存在很大不确定性。为了提高我们预防猪饲料中病毒污染和传播的能力,需要填补许多知识空白。本综述总结了当前的知识状况,包括:(1)生物安全协议的必要性,以识别可能导致饲料原料和全价饲料病毒污染的生产、加工、储存和运输条件;(2)测量病毒灭活的挑战;(3)饲料原料在运输和储存过程中的病毒存活情况;(4)最小感染剂量;(5)使用食品安全目标与性能目标作为猪饲料风险评估潜在方法的差异;(6)热、辐照过程以及饲料原料和全价饲料中的化学减轻剂对猪病毒的灭活作用;(7)饲料厂中病毒去污策略的效果;(8)在病毒健康挑战期间,功能性成分、营养素和商业饲料添加剂在猪日粮中的益处;以及(9)改进饲料供应链中病毒污染风险评估模型的考虑因素。

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