A risk assessment of dietary exposure to Ochratoxin A for the Polish population.

The aim of this study was to determine the content of ochratoxin A (OTA) using high-performance liquid chromatography (HPLC) in selected food products, in the aspect of consumer health hazards. In the study 473 samples of food products, available on the Silesia market in Poland, were analyzed. For the determination of ochratoxin A in food, high performance liquid chromatography (HPLC) with fluorescence detection was used. Almost 22% of the samples were contaminated with ochratoxin A. The highest concentration of OTA was determined in raisins (34.0 μg/kg), which exceeds the permissible level 3.5 times. In one of the analyzed rye flour samples ochratoxin A was determined at level 19.5 μg/kg, where the maximum level is 3 μg/kg. For the general population, there is a risk of exposure to ochratoxin A from food, which justifies the need to monitor the quality of products for mycotoxin contamination.


Dried-Fruit Storage: An Analysis of Package Headspace Atmosphere Changes.

The quality of packaged dried foods depends on storage conditions and is determined largely by the initial gas composition inside and the transference through the container. The aim of this work was to analyze the O₂ and CO₂ concentrations within the internal atmosphere of the packaging. In this study, dried apricots and raisins were packaged in glass jars and polypropylene trays thermosealed with different polymers, and stored at 5, 15, 25, and 35 °C. Some trays were flushed with nitrogen just before sealing. In addition, the work relates to other previous papers to investigate the effect of these gases and packages on the stored products, and compares the influence of permeable and impermeable containers on food quality parameters. When packages were flushed with nitrogen before sealing, the O₂ level in the headspace increased until the outside O₂ concentration was reached. The CO₂ concentration increased over time, regardless of the initial atmosphere. Nitrogen had a great influence on the concentration of O₂, but not on that of CO₂. Finally, this paper shows that the films and initial gas used in this study had no significant effect on the quality of the stored dried fruit.


Assessing Aflatoxin Exposure Risk from Peanuts and Peanut Products Imported to Taiwan.

Aflatoxins are highly toxic and cause disease in livestock and humans. In order to assess Taiwan population exposure to aflatoxin from peanuts and peanut products, a total of 1089 samples of peanut candy, peanut butter, and peanuts etc. were collected in the period from 2011 to 2017 and analyzed using a liquid chromatography/tandem mass spectrometer. The overall mean contamination levels of aflatoxin in peanuts and peanut products were 2.40 μg/kg of aflatoxin B1, 0.41 μg/kg of aflatoxin B2, 0.19 μg/kg of aflatoxin G1, and 0.03 μg/kg of aflatoxin G2. We use margin of exposure (MOE) as a tool to improve food safety management. According to MOE levels of aflatoxins in peanuts and peanut products from China, Indonesia, Thailand, the United States, and the Philippines were above the safe lower limit of 10,000, indicating an absence of public health or safety risk for the majority of the population. However, products from Vietnam were under the MOE safe lower limit, suggesting that regulatory actions must be continued to avoid excessive consumer exposure.


Validation of a nut muffin baking process and thermal resistance characterization of a 7-serovar Salmonella inoculum in batter when introduced via flour or walnuts.

This study was conducted to validate a commercial nut muffin baking process and to compare the survival of a 7-serovar Salmonella cocktail when contaminated via inoculated flour or walnuts. Enriched wheat flour or walnut pieces were mist inoculated with the Salmonella cocktail and dried back to the pre-inoculation weight, resulting in a Salmonella population level of 6.9 and 8.4 log CFU/g, respectively. Nut muffin batters were prepared separately using inoculated flour or walnuts, followed by baking at 375 °F (190.6 °C) oven temperature for 21 min and post-bake ambient air-cooling (B + C). During baking, >5-log CFU/g reductions in the Salmonella population in nut muffins was achieved in 17 min, and Salmonella was not detected by direct plating (<0.2 log CFU/g detection limit) but was recovered by enrichment at the end of 21 min of baking and B + C. In a separate baking study using an extended baking time (24 min) at 375 °F, Salmonella was detected after 24 and 22 min using enrichment plating of nut muffins prepared from inoculated flour and walnuts, respectively. The D-values of the Salmonella cocktail in nut muffin batters prepared from inoculated flour were 24.0, 4.0 and 0.6 min at 60, 65 and 70 °C; whereas, corresponding D-values in batters prepared from inoculated walnuts were 22.0, 3.6 and 1.7 min. The z-values of the Salmonella cocktail in nut muffin batters were 6.1 and 9.0 °C for inoculated flour and walnuts, respectively. This simulated commercial nut muffin baking study utilizing an oven temperature of 190.6 °C for at least 17 min validates that the process will eliminate Salmonella populations by ≥5 log CFU/g if pre-baking contamination occurs via flour or walnut ingredients.


The Influence of Gamma Radiation Processing on the Allergenicity of Main Pistachio Allergens.

BACKGROUND: Gamma irradiation is a form of processing with an array of applications in medical sciences such as microbial decontamination, viruses inactivation, cervical carcinoma and breast cancer treatment. One of the ways in which gamma irradiation has the potential to be used is in reducing the allergenicity of food allergens. METHODS: In the present study, pistachios were irradiated with either a 1, 10, or 100 kGy dose of gamma irradiation. The binding rate of mice and human antibodies to the allergens of the pistachio extracts were examined via Western blot analysis. RESULTS: Our findings show an inverse dose-response relationship between the binding rate of antibodies to the pistachio allergens and the gamma irradiation dose. Despite these promising findings, the results of our sensory evaluation indicate that gamma irradiation causes undesirable changes to the sensory characteristics of pistachios, especially at the dose of 100 kGy. CONCLUSION: Gamma irradiation appears to be an effective method in reducing the allergenicity of pistachios. Thus, this form of processing has the potential to prevent adverse allergic reactions to the major pistachio allergens in sensitized subjects. However, further research must be dedicated to examining the dose sufficient in reducing allergencity, while maintaining adequate sensory quality for satisfactory consumption.


Preventing peanut allergy: where are we now?

Peanut allergy affects 1% to 3% of the Western world, usually begins in early childhood, is rarely outgrown, and has no currently approved treatment. The identification and application of prevention strategies is therefore essential. In 2015, the Learning Early About Peanuts study findings found that early consumption of peanut protein was effective in preventing peanut allergy in high-risk children as compared with peanut avoidance. These findings resulted in changes to allergy prevention guidelines and policy across the world. There are country-specific variations to guidelines, but, within these variations, feeding peanut to children in infancy is a common theme. There are numerous logistical challenges surrounding the implementation of contemporary guidelines at a population level. In the United States, guidelines advise according to risk level with prescreening recommended for high-risk children (mod/severe eczema, egg allergy). Even though high-risk children represent the minority of the childhood population, there are still significant challenges associated with identifying and screening such infants. The need for conducting allergy testing before first giving peanut protein to high-risk infants is debated; although adopting this approach promotes safety, it is financially and logistically challenging. Clinical trials that explore the real-life application of these guidelines are needed as is an assessment of guidelines (Australia, for example) that do not adopt the approach of screening.


Sensitivity, specificity, and predictive value of oral mucosal brush biopsy for the diagnosis of peanut allergy.

BACKGROUND: Current diagnostic testing methods for peanut allergy, including serum specific immunoglobulin E (sIgE) and skin-prick testing (SPT), have low specificity, whereas oral food challenge (OFC) carries significant risk of provoking adverse events. Mucosal brush biopsy (MBB) from the oral cavity is currently being studied as a new diagnostic test for peanut allergy, but normative data is not yet available with which to begin measuring specificity and predictive value. METHODS: Twenty individuals with no history of adverse reactions from eating peanuts underwent oral MBB and serum testing for peanut sIgE. These data were then compared with previously published data from 10 individuals with a history of clinical peanut allergy, in order to generate receiver operating characteristic (ROC) curves and calculate the sensitivity, specificity, and positive and negative predictive values for both testing modalities. RESULTS: The optimal cutoff levels for oral MBB and sIgE testing were 0.12 kU/L and 1.0 kU/L, respectively. At 0.12 kU/L, the sensitivity of oral MBB testing was 80% and the specificity was 85%, whereas at 1.0 kU/L, the sensitivity of sIgE testing was 50% and the specificity was 100%. From the ROC curves, the areas under the ROC curve (AUC) for oral MBB and sIgE were 0.91 (p < 0.001) and 0.74 (p = 0.007), respectively. Combination testing further increased both sensitivity and accuracy over oral MBB alone. CONCLUSION: In this pilot study, oral MBB demonstrated high sensitivity and specificity for screening individuals with and without oral cavity clinical reactivity to peanuts and may represent a potentially useful testing method for the diagnosis of peanut allergy in the future.


International Peanut Forum 2021

The International Peanut Forum (IPF) is an event for the worldwide peanut industry, held every two years, but  this year will be held virtually during April 28-30, 2021. The event is organised by the American Peanut Council and is open to everyone in the peanut supply/demand chain and allied industries globally. 

https://www.peanutsusa.com/events/international-peanut-forum.html


USA Peanut Congress 2019

We invite you to register and attend the 23rd annual USA Peanut Congress, a joint annual meeting of the American Peanut Shellers Association and the American Peanut Council on June 22-26, 2019 at The Ritz-Carlton Amelia Island, Florida.  Over 350 peanut industry leaders are expected to attend this meeting.

http://www.peanut-shellers.org


Yummex ME

Modelled after the world’s leading trade fair for sweets and snacks – ISM - yummex ME is the no.1 platform for producers and manufacturers of the sweets, confectionery and snacks industry to present their products and innovations to the Who-is-Who of the MENA region. Gulfood Manufacturing, taking place at the same time, makes it possible for exhibitors and visitors to access even more synergies for their business. Become part of it and get your piece of the pie!

http://www.yummex-me.com/