Category Archives: E.coli

Research – Heat resistance in Escherichia coli and its implications on ground beef cooking recommendations in Canada

Wiley Online

This study assessed the adequacy of the current cooking recommendations in relation to heat resistant Escherichia coli by evaluating eight potentially heat resistant E. coli strains (four generic and four E. coli O157:H7) along with AW1.7. The D60°C‐values for these strains varied from 1.3 to 9.0 min, with J3 and AW1.7 being the least and most heat resistant strains, respectively. The D60°C‐values for E. coli 62 and 68 were similar and were not affected by growth medium, while the heat resistance of C37, J3, and AW1.7 varied with the growth medium. When heated in extra lean ground beef (100 g) in vacuum pouches, the mean D54°CD57°C, and D60°C‐values were 44.8, 18.6, and 2.9 min for C37, 13.8, 6.9, and 0.9 min for J3, and 40.5, 9.1, and 6.1 min for AW1.7. Burger temperatures continued to rise after being removed from heat when the target temperature was reached, by 3–5°C, and resting of 1 min would result in a destruction of 133, 374 and 14 log C37, J3 and AW1.7. These findings along with the very low occurrence of heat resistant E. coli expected in ground beef show that cooking ground beef to 71°C should be adequate.

Research – Microbiological and parasitological contamination of vegetables, water and soil in rural communities

AJOM

Microbiological and parasitological contamination of vegetables, water and soil in rural communities of a municipality in the state of Bahia, Brazil, was assessed. Samples of Lactuca sativa, L., Coriandrum sativum and Solanum lycopersicum, soil, and irrigation water were analyzed between August and October, 2015. Total coliforms (TC), Escherichia coli, molds and yeasts on vegetables, soil and water, heterotrophic bacteria in water and soil were counted. Parasitological analyses were performed by spontaneous sedimentation method and by Rugai technique for vegetables and soil and by direct and Faust exams for water. Physical and chemical analyses included pH, temperature, dissolved oxygen and turbidity. TC counts were higher in lettuce samples (mean 2.8 log CFU g-1). E. coli counts did not comply with legislation in a lettuce sample with 3.3 log CFU g-1. TC had the highest counts, with mean between 3.7 and 4.9 log CFU g-1 in soil samples. All water samples showed poor conditions and most samples were positive for at least one parasite. Due to high microbial density and several parasite types in most samples, results showed poor sanitary quality of vegetables with health risks for people. It is crucial to invest in educational activities for handlers and farmers so that a better vegetable quality could be offered to the population. More efficient monitoring is required by health authorities, requiring periodic assessments for parasites so that consumers may have a better life quality.

Research – Novel composite antimicrobial film could take a bite out of foodborne illnesses

Science Daily

A novel composite film — created by the bonding of an antimicrobial layer to conventional, clear polyethylene plastic typically used to vacuum-package foods such as meat and fish — could help to decrease foodborne illness outbreaks, according to researchers in Penn State’s College of Agricultural Sciences.

The antimicrobial lining of the film is comprised of a pullulan-based biopolymer produced from starch syrup during a fermentation process, which is already approved for use in foods. Pullulan, a water-soluble “polysaccharide,” is essentially a chain of sugar, glycerin and cellulose molecules linked together. To kill pathogens such as SalmonellaListeria and pathogenic E. coli, researchers infused the pullulan with Lauric arginate, made from naturally occurring substances and already approved for use in foods.

Development of the composite antimicrobial film is important because 76 million cases of foodborne illnesses occur each year in the U.S. alone, resulting in 300,000 hospitalizations and 5,000 deaths, according to the U.S. Centers for Disease Control and Prevention. In light of this problem and the commercial potential of this discovery, Penn State has applied for a provisional patent on the composite antimicrobial film.

Research – Scientists Find Harmful Bacteria on 90% of Make-Up

Labmate

In a finding that could have millions of people around the world rethinking their makeup regimes, a team of researchers from Aston University have found potentially harmful bacteria in around 90% of cosmetics products. Bacterium detected include dangerous strains such as E. coli and Staphylococci, with the highest traces found on mascara, lip gloss and applicators.

Research – Microbial contamination of grocery shopping trolleys and baskets in west Texas, 2020

Barf Blog

Indicator microorganisms evaluated were those detected by aerobic plate count (APC), yeast and molds (YM), Enterobacteriaceae (EB). Environmental listeria (EL), coliforms (CF), and E. coli (EC).  In addition, listeria monocytogenes, staphylococcus aureus, Escherichia coli O157 and salmonella sp. Were tested for.  Trolley grills (n=36) had 2.7 x 10CFU/cm2.  Trolley handles (n=36) had 2.7 x 10of CF and 5.2 CFU/cm2 of YM.  The bottom of handheld baskets (n=25) had 3.5 x 105 CFU/cm2 of CF and 5.07 CFU/cmof EC.  S. aureus was found on 96% of the baskets, 50% of the trolley handles (18 out of 36 samples), and 42% of the trolleys’ grills.  E. coli O157 was identified on 17% of baskets, 3% on trolley grills, and 3% on handles.  Salmonella sp. was detected on 16% of baskets and 8% of trolley grills.  L. monocytogenes was detected on 17% of the bottoms of handheld baskets but on none of the other samples. 

Research -Evaluation of the Efficacy of Three Direct Fed Microbial Cocktails To Reduce Fecal Shedding of Escherichia coli O157:H7 in Naturally Colonized Cattle and Fecal Shedding and Peripheral Lymph Node Carriage of Salmonella in Experimentally Infected Cattle

Journal of Food Protection

ABSTRACT

Two experiments were conducted to evaluate the feeding of direct fed microbials (DFMs) on fecal shedding of Escherichia coli O157:H7 in naturally infected cattle (experiment I) and on Salmonella in the feces and peripheral lymph nodes (PLNs) of experimentally infected cattle (experiment II). Thirty cattle, 10 per treatment, were used in each experiment. Treatments in experiment I consisted of a control (lactose carrier only); DFM1, a 1:1 ratio of Enterococcus faecium and Lactobacillus animalis; and DFM2, a 1:1 ratio of Lactobacillus acidophilus and Pediococcus acidilactici. In Experiment II, DFM1 was replaced with DFM3, a 1:2 ratio of Lactobacillus reuteri and other Lactobacillus strains. Additives were mixed in water and applied as a top-dressing to each pen’s daily ration for 50 days. Approximately half-way through each experiment, the DFM concentration was doubled for the remainder of the study. Fecal samples were collected throughout experiment I and cultured for E. coli O157:H7. Cattle in experiment II were inoculated intradermally with Salmonella Montevideo on days 32, 37, and 42 and then necropsied on days 49 and 50 (five cattle per treatment on each day). Innate immune function was assessed on days 29, 49, and 50. In experiment I, fecal concentration and prevalence of E. coli O157:H7 were not different (P > 0.10) nor was there an effect (P = 0.95) on the percentage of super shedders (cattle shedding ≥3.0 log CFU/g of feces). In experiment II, no treatment differences (P > 0.05) were observed for Salmonella in the PLNs except for the inguinal nodes, which had a significantly lower Salmonella prevalence in DFM-supplemented cattle than in the controls. Immune function, as measured by monocyte nitric oxide production and neutrophil oxidative burst, was decreased (P < 0.05) in the DFM treatment groups. Although results of this research indicate little to no effect of these DFMs on E. coli O157:H7 or Salmonella in cattle, an increase in the duration of administration to that similar to what is used for commercial cattle might elicit treatment differences.

HIGHLIGHTS
  • Direct fed microbials were evaluated for pathogen mitigation in cattle.

  • No treatment effects on fecal shedding of E. coli O157:H7 were observed.

  • DFM treatment reduced Salmonella in only one the four lymph node types examined.

  • Under these experimental conditions, short-term feeding of DFMs failed to mitigate pathogens.

 

Research – Effect of Eryngium caeruleum essential oil on microbial and sensory quality of minced fish and fate of Listeria monocytogenes during the storage at 4°C

Wiley Online

The present study investigated in vitro antimicrobial activity of Eryngium caeruleum essential oil (EEO) against five foodborne pathogenic bacteria based on microdilution and disk diffusion methods. Moreover, its effects on specific spoilage microorganisms, inoculated Listeria monocytogenes, and its sensory changes in minced fish were evaluated during 12 days of storage at refrigeration temperature. The results showed that Staphylococcus aureus and Escherichia coli were the most sensitive and the most resistant bacteria with a minimum inhibitory concentration of 0.125 and 1 mg/ml, as well as inhibition zones of 15.66 and 11.66 mm, respectively. Regarding the antimicrobial effect of EEO on the microbial profile and inoculated L. monocytogenes, treating with 0.4% EEO caused a significant decrease in the studied microorganisms when compared to the control group (p < 0.05). In addition, considering the sensory evaluation, the best scores were observed for the samples treated with 0.2% and 0.4% EEO. However, none of the groups obtained acceptable scores until the final day of storage except for the color attribute. In general, sensory evaluation and its correlation with microbial counting indicated that the treatment with 0.4% EEO was able to preserve the microbial quality of the minced fish at refrigeration temperature without any undesirable sensory effects.

USA – Statement on the Salinas-linked romaine lettuce E. coli O157:H7 outbreak and status update on investigation

FDA

The U.S. Food and Drug Administration, along with the U.S. Centers for Disease Control and Prevention and state and local partners, previously reported on Dec. 12 that public health experts were tracking three separate outbreaks linked to romaine lettuce caused by three different strains of E. coli O157:H7. We also reported that, through the FDA’s traceback investigation, we were able to identify a common grower between each of these outbreaks in Salinas, California based on available supply chain information.

Today, the FDA is providing an update on the status of the E. coli O157:H7 illnesses linked to romaine lettuce, along with recent findings based on our investigation of fields linked to a common grower, which was identified in our traceback. It should be noted that romaine from this grower does not explain all of the illnesses seen in these outbreaks.

Outbreaks declared over, consumer advisory lifted

The FDA is lifting the consumer advisory to avoid romaine lettuce from Salinas as the growing season for this region is over, and there is no longer a need for consumers to avoid it. There is also no need to avoid other produce products from Salinas.

The FDA and CDC have been tracking two multi-state romaine lettuce outbreaks. Today, federal health officials are declaring both multi-state romaine lettuce outbreaks over. One of the outbreaks sickened 167 people in 27 states. The other outbreak, linked to Fresh Express salad kits, sickened 10 people in five states.

There was also a third outbreak in Washington State that sickened 11 people. This outbreak has also been declared over.

The last reported illness onset date for all the outbreaks was Dec. 21. Based on this information, it appears that our Nov. 22 advisory to not eat romaine from Salinas played an important role in preventing illnesses and containing this outbreak because it prompted the removal of romaine lettuce from Salinas from the marketplace and warned consumers to throw away romaine from that growing region.

Common grower, multiple fields investigated

The FDA traceback investigation for these outbreaks required investigators to go through hundreds of supply chain records to find a commonality to a single grower with multiple fields. We were able to narrow this down further to at least 10 fields in the lower Salinas Valley.

Investigators from the FDA, CDC, the California Department of Food and Agriculture and the California Department of Public Health, visited several of these fields and took a variety of samples from water, soil and compost. So far, sample results have come back negative for all of the three outbreak strains of E. coli O157:H7. However, we did find a strain of E. coli that is unrelated to any illnesses in a soil sample taken near a run-off point in a buffer zone between a field where product was harvested and where cattle are known to occasionally graze. This could be an important clue that will be further examined as our investigation continues. However, this clue does not explain the illnesses seen in these outbreaks.

Our investigation is ongoing, and we are doing everything possible to find the source or sources of contamination. The investigation into how this contamination occurred is important, so romaine growers can implement measures that will prevent future contamination and illnesses.

The FDA is planning to conduct an additional, in-depth, root-cause investigation. The investigation will further characterize how contamination might have occurred and will inform what preventive controls are needed to prevent future outbreaks. Once complete, we plan to issue a prompt report and share lessons learned, so that growers can implement best practices to protect consumers from contaminated produce.

Investigation will inform future prevention

As we mentioned in our last update, it is important to remember that millions of servings of fresh leafy greens are safely eaten every day by consumers, although the repeat nature of these outbreaks linked to leafy greens – and more specifically to romaine lettuce – remains a concern.

We are doing our part by continuing our sampling assignment to monitor for pathogens in romaine lettuce across the nation. Industry can and must do their part too. Everyone across the romaine supply chain must do everything possible to fully understand why and how these outbreaks keep happening and continue to aggressively implement preventive measures to further protect consumers.

Outbreaks illustrate need to stay focused on prevention

It’s critical that all stakeholders, including growers, processors, distributors and retailers, stay laser-focused on prevention to help bend the curve of foodborne illness. We understand the importance of food safety, and we know there’s a human face to every foodborne illness.

The FDA remains committed to doing everything we can to prevent outbreaks, working with fellow regulators and the food industry to identify and address causes and keep consumers aware of potential risks.

Rest assured that we are working hard every day to try to prevent foodborne illness. We also know that food safety is a shared responsibility. It involves food producers, distributors, manufacturers, retailers and certainly regulatory officials at the federal, state, local, territorial and tribal levels. That’s why we work directly with our partners on things such as training and inspections. We also work closely with industry, so they understand our requirements and are educated on the latest scientific standards and good agricultural practices. Working together, we have and will continue to advance food safety.

A New Era of Smarter Food Safety

While we will always place emphasis on prevention, being able to promptly respond to an outbreak when it occurs is a critical part of our food safety mission.

As public health agencies have gotten better at detecting foodborne illnesses, our ability to trace back to the source of contaminated foods that may have caused the illnesses has lagged, due in part to the lack of modernized food traceability capabilities.

As part of the FDA’s New Era of Smarter Food Safety initiative, we plan to use advances in technology to improve our ability to track and trace products through the supply chain. We’ll be launching a New Era of Smarter Food Safety Blueprint in early 2020 that will outline how we will advance our work in this area. This blueprint will help consumers get information more quickly, enabling people to better protect themselves and their families.

We look forward to continuing our work with growers, processors, distributors and retailers in our shared efforts to protect consumers, and we will continue to provide updated information as it becomes available.

The FDA, an agency within the U.S. Department of Health and Human Services, protects the public health by assuring the safety, effectiveness, and security of human and veterinary drugs, vaccines and other biological products for human use, and medical devices. The agency also is responsible for the safety and security of our nation’s food supply, cosmetics, dietary supplements, products that give off electronic radiation, and for regulating tobacco products.

USA – Outbreak Investigation of E. coli: Romaine from Salinas, California (November 2019)

FDA

 

Outbreak appears over; FDA investigation efforts continue.

Case Counts

Total Illnesses: 167
Hospitalizations: 85
Deaths: 0
Last illness onset: December 21, 2019

Recommendation

As of January 15, 2020, the CDC reports that the outbreak appears to be over. Contaminated romaine from the Salinas, CA growing region that made people sick in this outbreak is likely no longer available. Consumers need not avoid romaine lettuce, or any other produce, from the Salinas, CA growing area.

Update

FDA will continue its investigation into potential sources and contributing factors that led to the outbreak in order to inform future prevention efforts.

FDA, CDC, and California health and agriculture authorities concluded their investigation of the common grower noted as having supplied romaine lettuce linked to three concurrent outbreaks; this outbreak which includes cases in the U.S. and CanadaExternal Link Disclaimer; one outbreak in Washington state potentially linked to leafy greens; and the third outbreak, with cases in the U.S. and Canada, linked to Fresh Express Sunflower Crisp Chopped Salad Kits.

When investigators arrived on the ranches there was no romaine lettuce in the ground and the fields had been plowed, as the growing season had already ended. Investigators collected water, soil, and compost samples to be analyzed. So far, sample results have come back negative for the three outbreak strains of E. coli. FDA did find a strain of E. coli that is unrelated to any illnesses in a soil sample. This strain of E. coli was determined to be of low risk to people. Although this grower was determined to be a common supplier for all three outbreaks based on available supply chain information, the romaine lettuce from this grower does not explain all the illnesses seen in the three outbreaks.

The outbreak linked to Fresh Express Sunflower Crisp Chopped Salad Kits, with cases in the U. S. and Canada, was declared over by CDC on January 15, 2020. There are no products that caused these illnesses left on the market. The outbreak in Washington state sickened 11 people. This outbreak has also been declared over.

As part of FDA’s ongoing efforts to understand and prevent foodborne illnesses linked to leafy greens, the FDA will conduct a root cause investigation. The investigation will be conducted throughout this year’s romaine lettuce planting, growing, and harvesting season. Results will be shared publicly when the investigation and analysis are concluded.

FDA – Outbreak Investigation of E. coli: Salad Mix (December 2019)

FDA  ecoli

Outbreak linked to Fresh Express brand Sunflower Crisp Chopped Salad Kits appears over.

Total Illnesses: 10
Hospitalizations: 4
Deaths: 0
Last illness onset: November 16, 2019

Recommendation

As of January 15, 2020, the CDC reports that the outbreak appears to be over.

Contaminated Fresh Express Sunflower Crisp Chopped salad kits that made people sick in this outbreak are likely no longer available on the market.

Update

FDA will continue its investigation into the potential sources and contributing factors that led to the outbreak in order to inform future prevention efforts.

This outbreak, a Washington state outbreak potentially linked to leafy greens, and a larger multi-state outbreak linked to romaine lettuce from the Salinas, CA growing region with cases in the U.S. and CanadaExternal Link Disclaimer, all shared a common romaine lettuce supplier with ranches in Salinas, CA. Although this grower was determined to be a common supplier for all three outbreaks based on available supply chain information, the romaine lettuce from this grower does not explain all the illnesses seen in the three outbreaks.

FDA, CDC, and California partners investigated ranches used by the common grower in an attempt to identify the source of the contamination. When investigators arrived on the ranches there was no romaine lettuce in the ground and the fields had been plowed, as the growing season had already ended. Investigators collected water, soil, and compost samples and took them back to the lab for analysis. So far, sample results have come back negative for the three outbreak strains of E. coli. FDA did find a strain of E. coli that is unrelated to any illnesses in a soil sample. This strain of E. coli was determined to be of low risk to people.

As part of FDA’s ongoing efforts to understand and prevent foodborne illnesses linked to leafy greens, the FDA will conduct a root cause investigation. The investigation will be conducted throughout this year’s romaine lettuce planting, growing, and harvesting season. Results will be shared publicly when the investigation and analysis are concluded.