DOI: 10.1111/risa.70372 ISSN: 0272-4332

Risk Characterization for a Multi‐Pathway Quantitative Risk Assessment Model: A Case Study on Extended‐Spectrum Beta‐Lactamas Producing E. coli Spread From Broiler Production

Subhasish Basak, Nunzio Sarnino, Lucie Collineau

ABSTRACT

This article revisits the risk characterization phase in Quantitative Microbial Risk Assessment (QMRA) and proposes a methodological framework to translate probabilistic risk estimates into easily interpretable public health metrics, thereby facilitating risk communication. This framework adopts a top‐down perspective, aiming to estimate the public health burden on a particular population associated with the exposure to a specific microbial hazard originating from a predefined production process. Such an approach is useful for risk managers to compare the relative health impacts of a food production system under different scenarios. It also allows a mathematically rigorous use of QMRA model outputs, even when model validation is constrained by unavoidable data and knowledge gaps. The proposed approach is illustrated using a multi‐pathway QMRA model from the literature, assessing the transmission of Extended‐Spectrum Beta‐Lactamase (ESBL)‐producing Escherichia coli ( E. coli ) to humans through broiler production. Under a baseline scenario defined by a parameterized production system and for a given population, the proposed approach classifies different exposure pathways according to their per‐individual risk of colonization, while accounting for the proportion of the general population exposed to each pathway.