Category Archives: Microbiological Risk Assessment

USA – New E. coli outbreak hits children; investigation ongoing with no source yet

Food Safety News

ecoli

At least seven children are sick with E. Coli infections in a new outbreak involving an unknown source. All of the sick children are younger than 14, with three of them younger than five years old, according to an outbreak announcement by King County, WA, health officials.

“Our investigation is ongoing, and we have not identified any foods, restaurants, or other sources in common among all cases. It is not yet known whether these cases share the same source or not,” officials reported in the announcement.

The children became ill between April 22 and May 1. Six of the seven children have been so sick they had to be admitted to hospitals. One of the sick children is confirmed as having developed a life-threatening kidney complication called hemolytic uremic syndrome (HUS) and is recovering. A second child is suspected to have HUS.

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Cueta – Six people hospitalized after Salmonella poisoning in Ceuta

Explica

At least six people have been admitted this Monday at the University Hospital of Ceuta and four more have been treated at the same center as a result of a salmonella poisoning in a downtown restaurant.

Hospital admissions have occurred during the day due to salmonella poisoning, since all those who have come to the hospital have reported having had lunch in the same restaurant, with pictures of vomiting, diarrhea, abdominal pain, and fever, which have forced six of them to remain hospitalized, as reported by health and police sources.

The technicians of the Health Area of ​​the Ceuta Government they have opened an investigation to know the origin of the outbreak and determine the food that may have led to this poisoning.

Spain – The control of Listeria monocytogenes in the process of preparation, marketing and sale of frozen vegetables

ACSA

This document is based on the conclusions of a study carried out by experts on microbiological risks from the European Food Safety Authority (EFSA) and published in April 2020. The need to carry it out arose from an outbreak of Listeria monocytogenesST6, between the years 2015 and 2018, which affected several countries and caused 53 people sickened and 10 died. The source of infection was some frozen vegetables. Its processing included a previous bleaching in freezing. Bleaching is a procedure that is carried out with hot water or steam in order to stop the enzymatic activity that causes changes in the color, flavor and texture of the food. Environmental contamination from a freezing plant was the origin and reason for the persistence of the strain that caused the outbreak from 2015 to 2018.

EFSA already published in the summer of 2018 recommendations on sampling and microbiological methods to maximize the sensitivity of detection of L. monocytogenes in the processing water and in the environment of the premises that produce frozen fruits, vegetables or herbs. Recommendations were also made on the identification of critical sampling sites to carry out monitoring of the environment of these establishments (ME).

Germany – More salmonella infections in Europe: Hygiene rules help prepare poultry safely

BRF

Food Poisoning Salmonella

In recent months, more than three hundred cases of salmonellosis have occurred in various European countries and Canada, which are linked to each other. In the UK the cases could be partly traced back to frozen breaded poultry meat. The cause was contamination with the bacterium Salmonella Enteritidis, which causes gastrointestinal inflammation. Salmonella is not killed by deep freezing and can remain infectious at temperatures below zero degrees Celsius. The Robert Koch Institute (RKI) and the BfR are monitoring the situation together with the Federal Office of Consumer Protection and Food Safety (BVL). In Germany, the number of reported cases has currently risen to more than 20 in six federal states. In 2020, there were a total of about 10,000 reported cases of salmonellosis in Germany, most of which were caused by the consumption of contaminated food. In principle, foodborne infections can be avoided by paying particular attention to hygienic care when preparing raw poultry. Due to the measures taken to contain the COVID 19 pandemic, people are currently cooking more often at home and, in the course of this, convenience products such as frozen goods are also being used more frequently. Sometimes it is not obvious at first glance whether such products contain pre-cooked or raw meat. Sufficient heating should always be ensured during preparation, especially of products containing raw poultry meat. In addition, bacterial contamination of other dishes via the raw meat and breading is possible. “Especially for children and elderly people there is a higher risk of getting sick from salmonella,” says BfR President Prof. Dr. Dr. Andreas Hensel.

USA – USPOULTRY to research vaccinating turkeys against Salmonella

The Poultry Site

USPOULTRY approved approximately $60,000 in funding for a new research grant to evaluate strategies to reduce Salmonella Reading colonization in turkeys through the Board Research Initiative program. The topic and request for proposal were selected by the USPOULTRY board of directors. The Foundation Research Advisory Committee evaluated several research proposals and then recommended which proposal to fund to the board.

The research grant is as follows, and the research was made possible in part by donations to the USPOULTRY Foundation. The donations came from a wide range of poultry and egg companies, individuals and families to support the Foundation’s mission of funding industry research and recruiting students into poultry careers.

Research – Microbial Growth Study on Pork Loins as Influenced by the Application of Different Antimicrobials

MDPI

The use of antimicrobials in the pork industry is critical in order to ensure food safety and, at the same time, extend shelf life. The objective of the study was to determine the impact of antimicrobials on indicator bacteria on pork loins under long, dark, refrigerated storage conditions. Fresh boneless pork loins (n = 36) were split in five sections and treated with antimicrobials: Water (WAT), Bovibrom 225 ppm (BB225), Bovibrom 500 ppm (BB500), Fit Fresh 3 ppm (FF3), or Washing Solution 750 ppm (WS750). Sections were stored for 1, 14, 28, and 42 days at 2–4 °C. Mesophilic and psychrotrophic aerobic bacteria (APC-M, APC-P), lactic acid bacteria (LAB-M), coliforms, and Escherichia coli were enumerated before intervention, after intervention, and at each storage time. All bacterial enumeration data were converted into log10 for statistical analysis, and the Kruskal–Wallis test was used to find statistical differences (p < 0.05). Initial counts did not differ between treatments, while, after treatment interventions, treatment WS750 did not effectively reduce counts for APC-M, APC-P, and coliforms (p < 0.01). BB500, FF3, and WS750 performed better at inhibiting the growth of indicator bacteria when compared with water until 14 days of dark storage. View Full-Text

Research – Fate of Salmonella spp. in the Fresh Soft Raw Milk Cheese during Storage at Different Temperatures

MDPI

The aim of this study was to determine the survival kinetics of Salmonella spp. in unripened, fresh raw milk cheese during storage at 5, 15 and 25 °C. Microbiological (coliforms and E. coliS. thermophilusLactococcus sp., total microbial count and Enterobacteriaceae) and physicochemical (pH and aw) characteristics were also determined. Two primary models were used to estimate the kinetic parameters of Salmonella spp., namely Weibull and Baranyi and Roberts (no lag) models. Additionally, goodness-of-fit of the primary models was assessed by calculating the R-Square and mean square error. Salmonella spp. growth in the unripened raw milk cheese was inhibited during storage, but nevertheless bacteria survived at 5 °C for 33 days (2.5 log cfu/g) and 15 °C for 18 days (1.8 log cfu/g). A decrease in the number of Salmonella spp. populations from an initial concentration 6.6 log cfu/g to below a detection limit was observed at 25 °C after 7 days of storage of contaminated cheese samples. It was concluded that the storage temperature significantly influenced the inactivation rate of Salmonella spp. in fresh raw milk cheese and proceeded faster at 25 °C compared to remaining storage temperatures.

Research – Stress test finds cracks in the resistance of harmful hospital bugs

Science Daily

Research has identified critical factors that enable dangerous bacteria to spread disease by surviving on surfaces in hospitals and kitchens.

The study into the mechanisms which enable the opportunistic human pathogen Pseudomonas aeruginosa to survive on surfaces, could lead to new ways of targeting harmful bacteria.

To survive outside their host, pathogenic bacteria must withstand various environmental stresses. One mechanism is the sugar molecule, trehalose, which is associated with a range of external stresses, particularly osmotic shock — sudden changes to the salt concentration surrounding cells.

Researchers at the John Innes Centre analysed how trehalose is metabolised by P. aeruginosa to define its role in protection against external stresses.

Combining analytical biochemistry and reverse genetics — using mutated bacteria lacking key functions — they show that trehalose metabolism in P. aeruginosa is connected to biosynthesis of the carbon storage molecule glycogen.

Experiments showed that disruption of either trehalose or glycogen pathways significantly reduced the ability of P. aeruginosa to survive on human-made surfaces such as kitchen or hospital counters.

The study found that while both trehalose and glycogen are important for stress tolerance in P. aeruginosa they counter distinct stresses: trehalose helps the bacteria to survive in conditions of elevated salt; glycogen contributes to survival in dry (desiccated) environments.

The findings raise the possibility of targeting the trehalose and glycogen pathways to limit pathogen survival on human-made surfaces.

“We have shown how a dangerous human pathogen Pseudomonas aeruginosa responds to environmental challenges, such as salt stress or drying out. Disrupting the production of certain stress-tolerance sugars in this bug significantly reduces its ability to survive on kitchen and hospital worksurfaces,” said corresponding author of the study Dr Jacob Malone.

An unexpected finding was how the bacteria operates different pathways for different stresses, said Dr Malone: “Conventional wisdom says that trehalose was responsible for both phenotypes, but we have shown that trehalose only protects against osmo-stress and glycogen is needed to protect against desiccation. We were also surprised to see such a marked drop in surface survival when we disrupted the pathways in the bugs.”

The next step for the research is to understand how trehalose and glycogen metabolic pathways are regulated in P. aeruginosa and closely related species. The group also wants to understand how glycogen accumulation allows the bacteria to survive in dry environments and provide more explanation of how and when different parts of the pathways are turned on and off.

P. aeruginosa is a significant pathogen in animals as well as humans. In humans it primarily affects immunocompromised individuals, where it is a major cause of pneumonia and hospital-acquired infections. Chronic P. aeruginosa infections occur in 80% of adult cystic fibrosis patients, where it is the primary cause of morbidity and mortality.


Story Source:

Materials provided by John Innes CentreNote: Content may be edited for style and length.


Journal Reference:

  1. Stuart D. Woodcock, Karl Syson, Richard H. Little, Danny Ward, Despoina Sifouna, James K. M. Brown, Stephen Bornemann, Jacob G. Malone. Trehalose and α-glucan mediate distinct abiotic stress responses in Pseudomonas aeruginosaPLOS Genetics, 2021; 17 (4): e1009524 DOI: 10.1371/journal.pgen.1009524

Research – Lactic acid bacteria can extend the shelf life of foods

Science Daily

Researchers at the National Food Institute have come up with a solution that can help combat both food loss and food waste: They have generated a natural lactic acid bacterium, which secretes the antimicrobial peptide nisin, when grown on dairy waste.

Nisin is a food-grade preservative, which can extend the shelf life of foods, and thus can be used to reduce food waste. The discovery also makes it possible to better utilize the large quantities of whey generated when cheese is made.

Nisin is approved for use in a number of foods, where it can prevent the growth of certain spoilage microorganisms as well as microorganisms that make consumers sick. It can for instance inhibit spore germination in canned soups and prevent late blowing in cheeses — without affecting its flavour.

In theory, nisin could be added to fresh milk to extend its shelf life. However, different countries have different rules stating what types of products nisin may be added to and in which amounts.

Extra step towards better utilization of whey

Many dairies are already turning a profit by extracting protein and lactose from the many tons of whey they generate, which they use in e.g. infant formula and sports nutrition. What is left behind can still be used to produce nisin.

In addition to ensuring better resource utilization, there may be a financial gain from producing nisin: Most commercially available nisin products contain 2.5% nisin and cost approximately 40 euro per kilogram.

Research – Expiration Date of Ready-to-Eat Salads: Effects on Microbial Load and Biochemical Attributes

MDPI

When minimally processed vegetables reach their expiration date, expose an increased microbial load. This includes mainly spoilage microorganisms but also foodborne pathogens, thus affecting the quality and safety of highly consumed ready-to-eat salads. A total of 144 ready-to-eat salads from the Cypriot market were analyzed in an attempt to determine the effects of the expiration date on the microbial load and plant metabolic variables of the salads. Possible correlations between them were also investigated for the first time. Furthermore, the impacts of the season (winter, summer), salad producing companies and type of salad and/or their interactions with the tested parameters were investigated. Results revealed that the microbial load (mainly spoilage microorganisms, such as Pseudomonas spp., yeasts and molds) increased towards the end of the shelf life. The microbial load was differentiated among the five salad producers and/or the salad types, highlighting the importance of a common and safe sanitation-processing chain in the preparation of ready-to-eat salads. Summer was the season in which Escherichia coli counts were found to be higher for plain lettuce, while Staphylococcus spp. was increased numbers for the lettuce+endive/radicchio, lettuce+rocket and lettuce+chives type of salads. Additionally, an increased Staphylococcus spp. was observed for plain rocket salads in winter. All samples examined were found negative for Salmonella enterica and Listeria monocytogenes. Moreover, carbon dioxide production and damage indexes (hydrogen peroxide and lipid peroxidation) increased on expiration date on both winter and summer seasons, indicating plant tissue stress at the end of shelf life. These findings indicate that the expiration date and relevant shelf life of processed vegetables are important parameters to be considered when postharvest management is applied to these products, ensuring safety and quality. View Full-Text