Updated Parameters for Listeria monocytogenes Dose–Response Model Considering Pathogen Virulence and Age and Sex of Consumer

Author:

Pouillot Régis1ORCID,Kiermeier Andreas2ORCID,Guillier Laurent3ORCID,Cadavez Vasco45ORCID,Sanaa Moez6

Affiliation:

1. Independent Researcher, 18 rue Mohamed Al Ghazi, Rabat 10170, Morocco

2. Statistical Process Improvement Consulting and Training Pty Ltd., Gumeracha 5233, Australia

3. Risk Assessment Department, French Agency for Food, Environmental and Occupational Health & Safety (Anses), 14 rue Pierre et Marie Curie, 94701 Maisons-Alfort, France

4. Centro de Investigação de Montanha (CIMO), Campus de Santa Apolónia, Instituto Politécnico de Bragança, 5300-253 Bragança, Portugal

5. Laboratório para a Sustentabilidade e Tecnologia em Regiões de Montanha, Campus de Santa Apolónia, Instituto Politécnico de Bragança, 5300-253 Bragança, Portugal

6. Nutrition and Food Safety Department, World Health Organization, 1211 Geneva, Switzerland

Abstract

Better knowledge regarding the Listeria monocytogenes dose–response (DR) model is needed to refine the assessment of the risk of foodborne listeriosis. In 2018, the European Food Safety Agency (EFSA) derived a lognormal Poisson DR model for 14 different age–sex sub-groups, marginally to strain virulence. In the present study, new sets of parameters are developed by integrating the EFSA model for these sub-groups together with three classes of strain virulence characteristics (“less virulent”, “virulent”, and “more virulent”). Considering classes of virulence leads to estimated relative risks (RRs) of listeriosis following the ingestion of 1000 bacteria of “less virulent” vs. “more virulent” strains ranging from 21.6 to 24.1, depending on the sub-group. These relatively low RRs when compared with RRs linked to comorbidities described in the literature suggest that the influence of comorbidity on the occurrence of invasive listeriosis for a given exposure is much more important than the influence of the virulence of the strains. The updated model parameters allow better prediction of the risk of invasive listeriosis across a population of interest, provided the necessary data on population demographics and the proportional contribution of strain virulence classes in food products of interest are available. An R package is made available to facilitate the use of these dose–response models.

Publisher

MDPI AG

Reference25 articles.

1. European Food Safety Authority (EFSA), and European Centre for Disease Prevention and Control (ECDC) (2023). The European Union One Health 2022 Zoonoses Report. EFSA J., 21, e8442.

2. FAO, and WHO (2021). Microbiological Risk Assessment Guidance for Food, World Health Organization.

3. Microbial Risk Assessment: Dose-Response Relations and Risk Characterization;Buchanan;Int. J. Food Microbiol.,2000

4. New Data, Strategies, and Insights for Listeria monocytogenes Dose-Response Models: Summary of an Interagency Workshop, 2011;Hoelzer;Risk Anal.,2013

5. FAO, and WHO (2004). Risk Assessment of Listeria monocytogenes in Ready to Eat Foods, World Health Organization. Technical Report.

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