Category Archives: Microbiological Risk Assessment

Sweden sees another rise in illnesses for 2022

 

 

Food Safety News

Most foodborne infections rose in Sweden in 2022 compared to the year before, according to the latest figures.

A report by the National Veterinary Institute (SVA), Folkhälsomyndigheten (the Public Health Agency of Sweden), Livsmedelsverket (the Swedish Food Agency) and Jordbruksverket (Swedish Board of Agriculture) showed a rise for Campylobacter, Salmonella, Listeria, and E. coli infections. Some of this was because of increased travel and more people being infected abroad.

A total of 5,165 cases of campylobacteriosis were reported in 2022 and 57 percent of these were domestic. This is up on more than 4,000 cases in 2021. For domestic infections in 2022, the median age was 51 with a range of 0 to 101. More men, 54 percent, than women were sick.

A correlation between human cases and Campylobacter-positive broiler batches underscores the need for further preventive measures, said the report.

Research – Is Legionella Bacteria Becoming Antibiotic Resistant?

Legionella Control

In this article the water safety specialists at Legionella Control International look at the role of antibiotics in protecting humans against pathogenic organisms, paying particular attention to waterborne bacteria including Pseudomonas aeruginosa and legionella.

USA – No reduction in human illnesses from poultry-caused Salmonella

Food Safety News

“While the prevalence of Salmonella contamination in regulated poultry products has decreased by more than 50 percent in recent years, there has not been a reduction in human illnesses attributable to poultry,” a new USDA report says.

USDA’s Food Safety and Inspection Service (FSIS) has released a survey of Not-Ready-to-Eat Breaded and Stuffed Chicken Products for Salmonella. The June report was prepared by FSIS’s Laboratory Quality Assurance, Response, and Coordination (LQARCS) staff in the Office of Public Health.

According to the survey report: “FSIS worked with the Food Emergency Response Network to test for the presence of Salmonella and sanitary indicator aerobic organism counts using the current validated methods employed by 11 state public health and agriculture laboratories. From July 1, 2022, to September 30, 2022, the laboratories purchased approximately 15 samples of the product per month from nearby retail locations.

USA – Notes from the Field: Multistate Outbreak of Escherichia coli O157:H7 Infections Linked to a National Fast-Food Chain — United States, 2022

CDC

In August 2022, the Michigan Department of Health and Human Services alerted CDC to an approximately fivefold increase in regional cases of Escherichia coli O157:H7 infection. Whole genome sequencing was used to characterize isolates from laboratory-confirmed infections in ill persons. Initial patient interviews indicated that many had consumed meals from the same national fast-food chain. Federal, state, and local officials initiated an investigation to identify the outbreak source and prevent additional cases. This activity was reviewed by CDC and was conducted consistent with applicable federal law and CDC policy.*

CDC defined a case as an E. coli O157:H7 infection with an isolate highly related to the outbreak strain (within 0–2 alleles) by core genome multilocus sequence typing, with illness onset during July 26–August 24, 2022. PulseNet, CDC’s national molecular subtyping network for enteric disease surveillance, detected 109 cases from six states, including Michigan (67; 61%), Ohio (24; 22%), Indiana (11; 10%), Pennsylvania (four; 4%), Kentucky (two; 2%) and New York (one; 1%). The median patient age was 22 years (range = 1–94 years), and 49 (45%) were female. Fifty-two (48%) patients were hospitalized, and 13 (12%) developed hemolytic-uremic syndrome, a recognized complication of E. coli O157:H7 infection; no deaths occurred.

Belgium – Ferrero finds Salmonella again at Belgian factory

Food Safety News

Ferrero has informed Belgian authorities that it has found Salmonella at the site that was behind a major outbreak in 2022.

The confectionery company notified the Federal Agency for the Safety of the Food Chain (FASFC) of the Salmonella detection in the environment of the Arlon factory. It is not clear when the Salmonella positive was found, when authorities were told or whether it is the same type that was behind the outbreak.

Research – Pseudomonas Biofilms Pose Food Safety Threat by Aiding Listeria Survival in Processing Environments

Food Safety.Com

Pseudomonas biofilms can aid the survival of Listeria monocytogenes cells even after disinfection, according to a recent study. Although Pseudomonas are often overlooked as a food safety hazard due to being associated with food spoilage rather than with human foodborne illnesses, the study’s findings suggest that the bacteria may pose a direct threat to food safety in the processing environment.

Pseudomonas are the most commonly found bacteria in food processing environments due to characteristics such as a high growth rate at low temperatures, a high tolerance of antimicrobial agents, and biofilm formation. The bacteria have been of special interest as colonizers in food processing environments, as a food spoilage organism, and as protectors of foodborne pathogens.

Previous research has demonstrated the possibility of surviving bacteria exposed to sub-lethal concentrations of disinfectants being able to co-select for both disinfectant- and antibiotic-resistant properties. Several studies also indicate that interspecies interactions in a biofilm could serve as an accelerator for horizontal gene transfer, as well as facilitate adaptation to environmental conditions and the subsequent decreased susceptibility to antimicrobials. It has been suggested that multi-species, Pseudomonas-dominated biofilms could host and shelter pathogens like L. monocyotogenes.

In the study, researchers from the Norwegian University of Science and Technology isolated Pseudomonas samples from cleaned and disinfected surfaces in a salmon processing facility. A total of 186 isolates were screened for biofilm formation at 12 °C, and were graded as strong, medium, or weak biofilm producers. A high variation in biofilm formation was observed, with 12 percent rated as strong, 29 percent as medium, and 27 percent as weak biofilm producers, as well as 29 percent not producing a detectable biofilm.

Research – Estimating Waterborne Infectious Disease Burden by Exposure Route, United States, 2014

CDC

Abstract

More than 7.15 million cases of domestically acquired infectious waterborne illnesses occurred in the United States in 2014, causing 120,000 hospitalizations and 6,600 deaths. We estimated disease incidence for 17 pathogens according to recreational, drinking, and nonrecreational nondrinking (NRND) water exposure routes by using previously published estimates. In 2014, a total of 5.61 million (95% credible interval [CrI] 2.97–9.00 million) illnesses were linked to recreational water, 1.13 million (95% CrI 255,000–3.54 million) to drinking water, and 407,000 (95% CrI 72,800–1.29 million) to NRND water. Recreational water exposure was responsible for 36%, drinking water for 40%, and NRND water for 24% of hospitalizations from waterborne illnesses. Most direct costs were associated with pathogens found in biofilms. Estimating disease burden by water exposure route helps direct prevention activities. For each exposure route, water management programs are needed to control biofilm-associated pathogen growth; public health programs are needed to prevent biofilm-associated diseases.

Research – Case Study: Clostridium botulinum Poisoning Caused by Canned Pate

Food Safety.Com

Ten cases of Clostridium botulinum poisoning occurred from mid-July to mid-August of 2020, according to the Food Safety Department of Vietnam. All ten victims were treated in the hospital, with two exhibiting severe symptoms. The two elderly victims with severe symptoms of Clostridium botulinum poisoning reported having eaten canned, plant-based pate. Samples of the leftover pate were analyzed by two separate institutions and found to contain Clostridium botulinum toxin, which can be fatal when ingested in a quantity of less than 0.1 mg. 

The Food Safety department convened an urgent meeting with the manufacturer of the pate. The pate was confirmed to have become contaminated with Clostridium botulinum during production. Product recall notices, consumer recommendations, and written requests for handling the case were issued in quick succession. 

Research – Bacillus subtilis PM5 from Camel Milk Boosts Chicken Immunity and Abrogates Salmonella entertitidis Infections

MDPI

Abstract

With the practice of a successful livestock industry using antibiotics, which has continued for more than five decades, researchers have long been interested in finding alternatives to antibiotics for poultry production. Probiotics can potentially reduce enteric diseases in livestock and enhance their productivity. The aim of this study was to isolate putative probiotics from camel milk and test them against Salmonella infection as well as host immune development. Thirteen different isolates were obtained from six different camel milk samples from dairy farms in Saudi Arabia. Three of the six isolates (PM1, PM2, PM3, PM4, PM5, and PM6) that showed Gram-positive characters reacted negatively to catalase and hemolytic assays. PM1, PM5, and PM6 showed significant nonpolar surface properties (>51% hydrophobic) and potent antimicrobial activities against avian pathogens, namely S. enterica, S. typhi, S. aureus, and E. coli. PM5 exhibited substantial probiotic traits; therefore, further focus was given to it. PM5 was identified as Bacillus subtilis OQ913924 by the 16S rRNA sequencing method and showed similarity matrix > 99%. An in vivo chicken model was used to access the health benefits of probiotics. After salmonella infection, the mucosal immune response was significantly increased (p < 0.01), and none of the challenge protocols caused mortality or clinical symptoms after infection in intestinal contents. S. enterica organ infiltration in the spleen, thymus, and small intestine was significantly reduced in the B. subtilis PM5-fed chickens. The S. enterica load in chicken feces was reduced from CFU 7.2 to 5.2 in oral-fed B. subtilis PM5-fed chickens. Probiotic-fed chickens showed buffered intestinal content and positively regulated the level of butyric acid (p < 0.05), and intestinal interleukin 1 beta (IL1-β), C-reactive protein (CRP), and interferon gamma (IFN-γ) levels were reduced (p < 0.05). In addition, B. subtilis PM5 showed significant binding to peritoneal macrophages cells and inhibited S. enterica surface adhesion, indicating co-aggregation of B. subtilis PM5 in macrophage cells. It could be concluded that supplementation with probiotics can improve the growth performance of broilers and the quality of broiler chickens against enteric pathogens. The introduction of this probiotic into the commercial poultry feed market in the near future may assist in narrowing the gap that now exists between chicken breeding and consumer demand.

Research – Listeria monocytogenes Strains Persisting in a Meat Processing Plant in Central Italy: Use of Whole Genome Sequencing and In Vitro Adhesion and Invasion Assays to Decipher Their Virulence Potential

MDPI

Abstract

In this study, we used both a WGS and an in vitro approach to study the virulence potential of nine Listeria monocytogenes (Lm) strains belonging to genetic clusters persisting in a meat processing plant in Central Italy. The studied clusters belonged to CC1-ST1, CC9-ST9, and CC218-ST2801. All the CC1 and CC218 strains presented the same accessory virulence genes (LIPI-3, gltA, gltB, and aut_IVb). CC1 and CC9 strains presented a gene profile similarity of 22.6% as well as CC9 and CC218 isolates. CC1 and CC218 showed a similarity of 45.2% of the same virulence profile. The hypervirulent strains of lineage I (CC1 and CC218) presented a greater ability to adhere and invade Caco-2 cells than hypovirulent ones (CC9). CC1 strains were significantly more adhesive and invasive compared with CC9 and CC218 strains, although these last CCs presented the same accessory virulence genes. No statistically significant difference was found comparing CC218 with CC9 strains. This study provided for the first time data on the in vitro adhesiveness and invasiveness of CC218-ST2801 and added more data on the virulence characteristics of CC1 and CC9. What we observed confirmed that the ability of Lm to adhere to and invade human cells in vitro is not always decipherable from its virulence gene profile.