Literature DB >> 31522662

An outbreak of Bacillus cereus toxin-mediated emetic and diarrhoeal syndromes at a restaurant in Canberra, Australia 2018.

Callum E Thirkell1, Timothy S Sloan-Gardner2, Marlena C Kacmarek3, Ben Polkinghorne4.   

Abstract

A cluster of gastrointestinal illness was detected following receipt of a complaint of becoming ill after a multi-course dinner at a restaurant in Canberra, Australian Capital Territory (ACT), Australia. The complaint led to an investigation by ACT Health. Food samples retained by the restaurant for microbiological analysis returned an unsatisfactory level of Bacillus cereus in beef (19,000 colony forming units/gram [cfu/g]) and a satisfactory level in arancini (50 cfu/g). These positive samples underwent whole genome sequencing and genes encoding diarrhoeal toxins were detected with no laboratory evidence of the emetic toxin. No stool specimens were collected. A cohort study was undertaken and 80% (33/41) of patrons took part in a structured interview. There was no significant difference in age or sex between those ill and not ill. Due to universal exposure most foods were unable to be statistically analysed and no significant results were found from the food history. The ill cohort diverged into two distinct groups based on incubation period and symptoms suggesting this outbreak involved B. cereus intoxication with both diarrhoeal and potentially emetic toxins. Some hygiene practices during food preparation were noted to be inadequate and heating and cooling procedures were unverified when questioned. A combination of the incubation periods and symptom profile, food laboratory evidence, and genomic sequencing of the B. cereus diarrhoeal gene suggest a probable aetiology of B. cereus intoxication. Public health action included the restaurant rectifying hygiene practices and documenting heating/cooling procedures. © Commonwealth of Australia CC BY-NC-ND.

Entities:  

Keywords:  Bacillus cereus; diarrhoeal syndrome; emetic syndrome; foodborne disease; gastroenteritis; genomic sequencing; universal exposure

Mesh:

Substances:

Year:  2019        PMID: 31522662     DOI: 10.33321/cdi.2019.43.40

Source DB:  PubMed          Journal:  Commun Dis Intell (2018)        ISSN: 2209-6051


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