首页> 外文期刊>EFSA supporting publications >Urgent scientific and technical assistance to provide recommendations for sampling and testing in the processing plants of frozen vegetables aiming at detecting Listeria monocytogenes
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Urgent scientific and technical assistance to provide recommendations for sampling and testing in the processing plants of frozen vegetables aiming at detecting Listeria monocytogenes

机译:紧急科学和技术援助,旨在为冷冻蔬菜加工厂的抽样和检测提供建议,以检测单核细胞增生李斯特菌

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EFSA was requested to provide recommendations to the European Commission on the sampling strategies and established microbiological methods most appropriate for maximising the sensitivity of detection of L. monocytogenes in processing water and the environment of premises producing frozen fruits, vegetables or herbs (FVH) as well as on the final food produced; and on the identification of critical sampling sites (CSSs) for environmental monitoring of L. monocytogenes. Seven steps are defined for a fit‐for‐purpose sampling strategy which is expected to support competent authorities and food business operators in foodborne outbreak investigations where frozen FVH are implicated. The relevant CSSs can be defined based upon critical inspection inside a freezing plant and the background information described in this report. Typical non‐food contact surfaces where L. monocytogenes can harbour in a freezing plant include: floors, especially cracks and crevices, walls, drains, ceilings, overhead structures, catwalks, wash areas, condensate and standing water, wet insulation in walls and around pipes and cooling units, rubber seals around doors, especially in coolers, metal joints, specially welds and bolts and contents of vacuum cleaners. L. monocytogenes is also commonly found on equipment used for food processing, preparation, storage, and transportation such as freezing tunnels, castings bowls, blade spinner, slicers, knives, cutting boards, conveyor belts, gloves joints, gaskets and dead ends. A concerted effort should be made to plan the sampling around production batches and environmental CSSs. Sampling procedures should be performed as exhaustively as possible covering the largest number of CSSs and samples per CSS to gain insight into the potential variability of the contamination sources. EN ISO standard method 11290‐1 is recommended for L. monocytogenes detection. Characterization of L. monocytogenes isolates using well established molecular techniques is needed to identify strains from positive samples and establish links between isolates from humans and from implicated FVH.
机译:要求欧洲食品安全局(EFSA)向欧洲委员会提供有关最适合最大程度地提高加工用水和生产冷冻水果,蔬菜或草药(FVH)的场所的环境中单核细胞增生李斯特氏菌检测灵敏度的最适抽样策略的建议。如生产的最终食品;以及确定用于单核细胞增生李斯特氏菌环境监测的关键采样位点(CSS)。针对适合的采样策略定义了七个步骤,该策略可望在涉及冷冻FVH的食源性暴发调查中为主管当局和食品企业提供支持。可以根据冷冻工厂内部的严格检查和本报告中描述的背景信息来定义相关的CSS。单核细胞增生李斯特氏菌可在冷冻工厂中容纳的典型非食物接触表面包括:地板,尤其是裂缝和缝隙,墙壁,排水沟,天花板,高架结构,走道,洗涤区,冷凝水和积水,墙壁及周围的湿绝缘管道和冷却装置,门周围的橡胶密封件,尤其是在冷却器中的密封件,金属接头,特别是焊缝和螺栓以及真空吸尘器的内容物。单核细胞增生李斯特氏菌还普遍存在于用于食品加工,制备,储存和运输的设备上,例如冷冻隧道,铸件碗,叶片旋转器,切片机,刀,切菜板,传送带,手套接头,垫圈和固定端。应该齐心协力计划围绕生产批次和环境CSS进行抽样。应尽可能详尽地执行抽样程序,以涵盖最大数量的CSS和每个CSS样本,以深入了解污染源的潜在可变性。建议使用EN ISO标准方法11290-1来检测单核细胞增生李斯特氏菌。需要使用成熟的分子技术对单核细胞增生李斯特菌菌株进行鉴定,以鉴定阳性样品中的菌株,并在人类和相关FVH菌株之间建立联系。

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