Evaluation of QMRA performance for Listeria monocytogenes in cold smoked salmon

V. Popov, H. Lauzon, M. N. Haque, F. Leroi, R. Gospavic
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引用次数: 1

Abstract

Food-borne listeriosis, caused by Listeria monocytogenes (Lm), is relatively rare but the relatively high rate of fatality (20–30%) compared to other food-borne microbial pathogens such as Salmonella makes it a serious disease. The foodstuff is recognised as the primary route of transmission for human exposure. A wide variety of food or raw material may become contaminated with Lm but the majority of listeriosis cases are related to ready-to-eat (RTE) food. The important factor related to food-borne listeriosis is that Lm can grow under low (refrigerated) temperatures when given sufficient time. Therefore, RTE products with long shelf life are under risk with respect to growth of Lm to critical concentrations. A stochastic model for the growth of Lm with the inhibiting effect of lactic acid bacteria (LAB) in cold smoked salmon (CSS) was developed. An existing deterministic model for the growth of Lm was adapted by adding the Winner stochastic process in order to simulate the growth of Lm. The Poisson distribution is used to represent the initial count (occurrence) of Lm. A deterministic model for growth of LAB is used and the inhibiting effects of Lm and LAB on each other are taken into account. The Beta-Poisson model is used for estimating the dose response. The model has been tested during field trials with CSS performed in August 2010. The salmon was slaughtered in Norway and transported to France where it was processed. The model, implemented within the QMRA module, indicated that growth of Lm would occur in the CSS samples investigated. However, the
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冷烟熏鲑鱼中单核增生李斯特菌QMRA性能评价
由单核增生李斯特菌(Lm)引起的食源性李斯特菌病相对罕见,但与沙门氏菌等其他食源性微生物病原体相比,致死率相对较高(20-30%),使其成为一种严重疾病。食品被认为是人类接触的主要传播途径。各种各样的食物或原料都可能被李斯特菌污染,但大多数李斯特菌病病例与即食食品有关。与食源性李斯特菌病有关的重要因素是,如果给予足够的时间,李斯特菌可以在低温(冷藏)下生长。因此,具有较长保质期的RTE产品在Lm增长到临界浓度方面存在风险。建立了具有乳酸菌抑制作用的Lm在冷熏鲑鱼(CSS)中生长的随机模型。为了模拟Lm的生长,对已有的Lm生长确定性模型进行了改进,加入了Winner随机过程。泊松分布用于表示Lm的初始计数(出现次数)。采用确定性生长模型,考虑了Lm和LAB对彼此的抑制作用。β -泊松模型用于估计剂量响应。该模型已在2010年8月进行的CSS现场试验中进行了测试。三文鱼在挪威屠宰,然后运往法国进行加工。该模型在QMRA模块中实现,表明在所调查的CSS样本中会发生Lm的生长。然而,
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