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From Invention to Innovation: Risk Analysis to Integrate One Health Technology in the Dairy Farm

机译:从发明到创新:奶牛场整合一项卫生技术的风险分析

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摘要

Current Hazard Analysis Critical Control Points (HACCP) approaches mainly fit for food industry, while their application in primary food production is still rudimentary. The European food safety framework calls for science-based support to the primary producers’ mandate for legal, scientific, and ethical responsibility in food supply. The multidisciplinary and interdisciplinary project ALERT pivots on the development of the technological invention (BEST platform) and application of its measurable (bio)markers—as well as scientific advances in risk analysis—at strategic points of the milk chain for time and cost-effective early identification of unwanted and/or unexpected events of both microbiological and toxicological nature. Health-oriented innovation is complex and subject to multiple variables. Through field activities in a dairy farm in central Italy, we explored individual components of the dairy farm system to overcome concrete challenges for the application of translational science in real life and (veterinary) public health. Based on an HACCP-like approach in animal production, the farm characterization focused on points of particular attention (POPAs) and critical control points to draw a farm management decision tree under the One Health view (environment, animal health, food safety). The analysis was based on the integrated use of checklists (environment; agricultural and zootechnical practices; animal health and welfare) and laboratory analyses of well water, feed and silage, individual fecal samples, and bulk milk. The understanding of complex systems is a condition to accomplish true innovation through new technologies. BEST is a detection and monitoring system in support of production security, quality and safety: a grid of its (bio)markers can find direct application in critical points for early identification of potential hazards or anomalies. The HACCP-like self-monitoring in primary production is feasible, as well as the biomonitoring of live food producing animals as sentinel population for One Health.
机译:当前的危害分析关键控制点(HACCP)方法主要适用于食品工业,而它们在初级食品生产中的应用仍然很初级。欧洲食品安全框架要求对主要生产者的食品供应中的法律,科学和道德责任负有科学依据。多学科和跨学科项目ALERT的重点是在牛奶链的战略重点上开发技术发明(BEST平台)及其可测量的(生物)标记,以及风险分析的科学进步,以节省时间和降低成本尽早识别微生物和毒理学性质的有害和/或意外事件。以健康为导向的创新是复杂的,并且受多个变量的影响。通过在意大利中部一个奶牛场的野外活动,我们探索了奶牛场系统的各个组成部分,以克服转化科学在现实生活和(兽医)公共卫生中的应用所面临的具体挑战。基于类似于HACCP的动物生产方法,农场表征重点关注特别关注点(POPA)和关键控制点,以根据“一种健康”的观点(环境,动物健康,食品安全)绘制农场管理决策树。该分析基于清单的综合使用(环境;农业和动物技术实践;动物健康和福利)以及井水,饲料和青贮饲料,粪便样本和散装牛奶的实验室分析。对复杂系统的理解是通过新技术完成真正创新的条件。 BEST是一个支持生产安全性,质量和安全性的检测和监视系统:其(生物)标记网格可以直接在关键点找到应用,以便尽早识别潜在的危害或异常情况。在初级生产中进行类似HACCP的自我监测是可行的,并且可以将生产活食动物的动物作为“一个健康”的定点种群进行生物监测。

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