Category Archives: Microbiology

Research – Listeria monocytogenes in dairy plants in Southern Brazil: Occurrence, virulence potential, and genetic diversity

Wiley Online

Abstract

Listeria monocytogenes is a foodborne pathogen widely distributed in nature. The aims of this study were to evaluate the occurrence of Listeria spp. in three dairy plants located in Southern Brazil, and to characterize the L. monocytogenes isolates according to serotypes, virulence genes, and PFGE. A total of 212 samples were collected, and 15 were positive for Listeria spp., of which seven were L. monocytogenes. L. monocytogenes isolates harbored all the 11 virulence genes evaluated and belonged to the main virulent serotypes, indicating potential risks of listeriosis for consumers. The PFGE analysis indicated low genetic diversity among the isolates, and the same pulsotypes were detected in a 2‐month period, indicating persistence of L. monocytogenes.

Practical applications

The study evaluated the occurrence of Listeria spp. in three dairy plants located in Southern Brazil, as well as characterized the L. monocytogenes isolates according to serotypes, virulence genes and PFGE. The presence of Listeria species indicated postprocessing contamination in the dairy plants and threat to public health. Furthermore, the isolates showed a low genetic diversity, since only two pulsotypes were identified, highlighting the strain’s persistence in the processing environment and/or the presence of clones in this region.

Supporting Information

USA – Human Salmonella Illnesses linked to Pig Ears hits 143 in 25 States

Food Poison Journal kswfoodworld salmonella

As of August 26, 2019, a total of 143 people infected with the outbreak strains of Salmonella have been reported from 35 states. A list of the states and the number of cases in each can be found on the Map of Reported Cases page.

Illnesses started on dates ranging from June 10, 2015 to July 30, 2019. Ill people range in age from less than 1 year to 90 years, with a median age of 39 years. Sixty (46%) ill people are female. Of 110 ill people with information available, 33 (30%) have been hospitalized. No deaths have been reported.

RASFF Alert – Animal Feed – Enterobacteriaceae – Complete Feed

RASFF-Logo

RASFF – high count of Enterobacteriaceae (1550 CFU/g) in complete feed from China in Sweden

RASFF Alerts – Animal Feed – Salmonella – Foal Feed – Chewing Sticks – Fish Meal – Rapeseed Meal

RASFF-Logo

RASFF – Salmonella (present /25g) in feed for foals from Germany in Germany

RASFF – Salmonella enterica ser. Brandenburg (in 2 out of 5 samples /25g), Salmonella enterica ser. London (in 1 out of 5 samples /25g), Salmonella enterica ser. Rissen (in 1 out of 5 samples /25g) and Salmonella enterica ser. Typhimurium monophasic (1 ,4, [5], 12:i:-) (in 1 out of 5 samples /25g) in chewing sticks from Germany in Austria

RASFF  – Salmonella enterica ser. Amsterdam (presence /25g) in fish meal from Mauritania in Greece

RASFF – Salmonella group E4 (presence /25g) in post-extraction rapeseed meal from Ukraine in Poland

USA – Brutus & Barnaby LLC recalls all size bags of “Pig Ears Natural Treats for Dogs” because of a possible Salmonella health risk

FDA

Company Announcement

Brutus & Barnaby of Clearwater, Florida is recalling all size variations of our Pig Ears for Dogs because it has the potential to be contaminated with Salmonella. Salmonella can affect animals eating the products and there is risk to humans from handling contaminated pet products, especially if they have not thoroughly washed their hands after having contact with the products or any surfaces exposed to these products.

Healthy people infected with Salmonella should monitor themselves for some or all of the following symptoms: nausea, vomiting, diarrhea or bloody diarrhea, abdominal cramping and fever. Rarely, Salmonella can result in more serious ailments, including arterial infections, endocarditis, arthritis, muscle pain, eye irritation, and urinary tract symptoms. Consumers exhibiting these signs after having contact with this product should contact their healthcare providers.

Pets with Salmonella infections may be lethargic and have diarrhea or bloody diarrhea, fever, and vomiting. Some pets will have only decreased appetite, fever and abdominal pain. Infected but otherwise healthy pets can be carriers and infect other animals or humans. If your pet has consumed the recalled product and has these symptoms, please contact your veterinarian.

Bags of our Pig Ears were distributed throughout all states via Amazon.com, Chewy.com, Brutusandbarnaby.com and the brick and mortar Natures Food Patch in Clearwater, Florida.

The product is identified by our trademarked logo  and says “Pig Ears 100% Natural Treats for Dogs”.  These were available in 4 different sizes:

  • 8 Count
  • 12 Count
  • 25 Count
  • 100 Count

Brutus & Barnaby has ceased the production and distribution of the product as FDA and the company continue their investigation as to what caused the problem.

Consumers who have purchased Brutus & Barnaby pig ears are urged to destroy any remaining product not yet consumed and to contact the place of purchase for a full refund. Consumers with questions may contact the company at 1-800-489-0970   Monday-Friday 9am-5 PM EST.

Research – Distribution and Persistence of Listeria monocytogenes in a Heavily Contaminated Poultry Processing Facility

Journal of Food Protection

ABSTRACT

We studied the colonization and distribution of Listeria monocytogenes in a heavily contaminated poultry processing plant over a 1-year period. A total of 180 nonfood contact surfaces, 70 food contact surfaces, 29 personnel, and 40 food samples were analyzed. L. monocytogenes isolates were subtyped by PCR serotyping, pulsed-field gel electrophoresis (PFGE), and multilocus sequence typing. L. monocytogenes was detected in samples collected at every visit to the plant, and 43.8% (visit 4) to 65.6% (visit 7) of samples were positive, for an overall prevalence of 55.2%. The deboning area had the highest prevalence of positive samples (83.3%), and the processing area had the highest diversity of PFGE types. Ninety percent of the final products were positive for L. monocytogenes. Most of the isolates belonged to well-known persistent L. monocytogenes sequence types (ST9 and ST121). This study illustrates a well-established L. monocytogenes contamination problem in a poultry processing plant associated with a generalized failure of the food safety system as a whole. These findings reflect the potential for L. monocytogenes contamination when the food safety and quality management system is unsatisfactory, as described in the present study. It is essential to revise food safety and quality management systems to eliminate L. monocytogenes from food processing facilities, to control the entrance of sporadic sequence types, and to prevent L. monocytogenes spread within such facilities, especially in those premises with higher L. monocytogenes prevalence in the environment and final food products.

HIGHLIGHTS
  • Deboning and processing areas had the highest L. monocytogenes contamination.

  • PFGE3/ST9 and PFGE7/ST121 were the most prevalent and persistent strains.

  • Improving hygiene measures is essential for reducing the 100% prevalence in the final product.

Research – How E. coli knows how to cause the worst possible infection

Science Daily

Ecoli Istock

Image CDC

A pair of University of Virginia School of Medicine scientists have revealed how E. coli seeks out the most oxygen-free crevices of your colon to cause the worst infection possible. The discovery could one day let doctors prevent the infection by allowing E. coli to pass harmlessly through the body.

The new discovery shows just how the foodborne pathogen knows where and when to begin colonizing the colon on its way to making you sick. By recognizing the low-oxygen environment of the large intestine, the dangerous bacterium gives itself the best odds of establishing a robust infection — one that is punishing for the host.

“Bacterial pathogens typically colonize a specific tissue in the host. Therefore, as part of their infection strategies, bacterial pathogens precisely time deployment of proteins and toxins to these specific colonization niches in the human host. This allows the pathogens to save energy and avoid detection by our immune systems and ultimately cause disease,” said researcher Melissa Kendall, PhD, of UVA’s Department of Microbiology, Immunology and Cancer Biology. “By knowing how bacterial pathogens sense where they are in the body, we may one day be able to prevent E. coli, as well as other pathogens, from knowing where it is inside a human host and allow it to pass through the body without causing an infection.”

A Bacterial Goldilocks

E. coli naturally lives in our colons, and most strains do us no harm. But there are several strains that can cause cramps, diarrhea, vomiting, even kidney failure and death. Children are at particular risk. As such, E. coli outbreaks appear periodically in the news. In July, for example, people in several states were sickened by E. coli linked to ground bison meat.

Kendall and graduate student Elizabeth M. Melson have shed important light on how harmful E. coli infections establish themselves in the body. The researchers outlined a process the bacteria use to detect low oxygen levels in the large intestine and then produce proteins that allow E. coli to attach to host cells and establish infection.

Oxygen actually diffuses from the intestinal tissue into the gut, and there are comparably higher levels in the small intestine than the large. E. coli specifically waits until it has reached the-low oxygen large intestine before striking.

E. coli‘s vital asset is a small form of RNA that activates particular genes when oxygen levels are low enough, the researchers reveal. It’s at this point that the infection really gets established. Thanks to this natural sensing process, the bacteria are able to establish infection and begin to manufacture harmful Shiga toxins.

The researchers believe that other bacterial pathogens, such as Shigella and Salmonella, likely employ a similar control mechanism, though more work needs to be done to establish that.

“If scientists can figure how to block oxygen sensing, we may be able to prevent E. coli from making proteins that allow it to stick to our guts,” Kendall said. “This may be an effective strategy to limit infection, and because we are not targeting growth or survival, E. coli may not develop drug resistance — it just doesn’t know where it is.”

Research – Ozone-based treatments for inactivation of Salmonella enterica in tree nuts: Inoculation protocol and surrogate suitability considerations

Science Direct

Abstract

The feasibility of using gaseous ozone, alone or in combination with other treatments, to decontaminate in-shell almonds and pistachios, prepared under different pathogen-inoculation conditions, was explored. Nuts were inoculated with either Salmonella enterica serovar Enteritidis or a potential Salmonella surrogate, Enterococcus faecium OSY 31284. The effect of inoculation method (with or without vacuum application), and of drying inoculated nuts (up to three days) on treatment efficacy was investigated. Inoculated nuts were subjected to gaseous ozone alone (almonds, pistachios) or ozone in combination with heating in brine solution (pistachios). Ozone treatment included application of vacuum (10 in Hg), followed by vessel pressurization to 12.5 psig with ozone‑oxygen mixture (160 g ozone/m3 gas mixture) and holding for 30 min. Heating was conducted in a brine solution (5% NaCl) at 70 °C, for 10 min. Ozone-based treatments were significantly more effective (P < 0.05) on almonds than pistachios, with maximum S. Enteritidis reduction of 2.9 vs. 0.8 log CFU/g, regardless of inoculation method or the drying time. Treatment of inoculated pistachios with heated brine and gaseous ozone reduced S. Enteritidis population by 5.0 to 7.0 log CFU/g and was not significantly more effective than treatment with heated brine alone (reduction of 4.8 to 7.1 log CFU/g). Application of vacuum during inoculation increased bacterial population on nut kernels by approximately 1.2 log CFU/g, but the increase in inoculum population had no effect on inactivation of either species of inoculated bacteria. Decontamination treatments were less effective against both bacteria by up to 2 log CFU/g when drying time of inoculated nuts increased. E. faecium was significantly more resistant to heat and ozone treatment (P < 0.05) than was S. Enteritidis on pistachios, but not on almonds. Results of this study show that laboratory methodology affects observed treatment effectiveness. Considering its high resistance to the heat-ozone combination, E. faecium may not be a suitable surrogate for S. Enteritidis during processing of pistachios by this treatment. Efficacy of ozone gas to decontaminate S. Enteritidis–inoculated nuts depends heavily on the type of nut. Although reductions of S. Enteritidis populations on in-shell pistachios are low, treatment of in-shell almonds resulted in greater reductions, indicating the promise of this technology to enhance the safety of specific nut products.

USA -Colorado Adds Marijuana Fungus Testing Requirements

Westword

Commercial marijuana products in Colorado will soon be subject to further testing for dangerous fungus, according to the state Marijuana Enforcement Division. In a bulletin recently sent to the state’s marijuana industry, the MED announced that mycotoxins will be added to the microbial testing requirements for concentrates by September 15.

A toxic metabolite produced by fungi, mycotoxins colonize crops and can be found in various forms of mold. Symptoms that appear after consuming mycotoxins include coughing, wheezing, nose stuffiness and irritated eyes and skin — but mycotoxins can also cause severe respiratory damage, and are capable of giving animals and humans chronic, deadly diseases if consumed at high levels for long periods of time.

The new requirements will only be mandatory for batches of concentrate produced from marijuana plant material that already failed microbial testing.

Australia – Logan Farm Pty Ltd — Talley’s Mussels Garlic 375g – Microbial Contamination

Australia

Photograph of Talley's Mussels Garlic 375g

Identifying features

Best before date
19 December 2019
Other
APN/EAN 9414897011796

What are the defects?

The recall is due to the potential for microbial contamination.

What are the hazards?

Potentially contaminated food products may cause illness if consumed.

What should consumers do?

Consumers concerned about their health should seek medical advice and should return the products to the place of purchase for a full refund.

For further information, please contact Logan Farm Pty Ltd on 1800 651 276 or at www.loganfarm.com.au

Traders who sold this product

Coles
IGA
Independent stores
Woolworths

Where the product was sold
Western Australia
Dates available for sale
  • 12 July 2019 – 23 August 2019