Category Archives: Uncategorized

RASFF Alert – E.coli – Live Oysters

RASFF-Logo

RASFF -too high count of Escherichia coli (1700 /100g) in live oysters from France in France

RASFF Alerts – Salmonella – Chicken Fillets – Sesame Paste – Chicken Meat – Black Pepper – Sesame Seeds – Pork Trimmings – Halal Chicken Thighs – Chicken Legs

RASFF-Logo

RASFF -Salmonella enterica ser. Enteritidis (presence /25g) in frozen chicken fillets from Poland in Slovakia

RASFF -Salmonella (presence /25g) in sesame paste from Syria in Germany

RASFF -Salmonella enterica ser. Enteritidis (presence /25g) and Salmonella enterica ser. Infantis (presence /25g) in chilled chicken meat from Poland in Italy

RASFF -Salmonella (presence /25g) in black pepper from Brazil, manufactured in China in Germany

RASFF -Salmonella (presence /25g) in sesame seeds from Sudan in Greece

RASFF -Salmonella (presence /25g) in pork trimmings from Germany in Sweden

RASFF -Salmonella (presence /25g) in frozen halal chicken thighs from Belgium in Italy

RASFF -Salmonella enterica ser. Kentucky (presence /25g) in chilled chicken from Poland in Latvia

RASFF -Salmonella enterica ser. Senftenberg (presence /25g) in chilled chicken leg quarters from Poland in Latvia

RASFF -Salmonella (presence /25g) in black pepper from Vietnam in Poland

 

RASFF Alert – Bacillus cereus – Chilled Milk

RASFF-Logo

RASFF -Bacillus cereus (up to 700 CFU/g) in chilled milk from Germany in Germany

RASFF Alert – STEC E.coli – Boneless Beef

RASFF-Logo

RASFF -shigatoxin-producing Escherichia coli (stx1/stx2 /25g) in boneless beef from Argentina in Spain

RASFF Alerts – Ochratoxin A – Dried Figs – Raisins

RASFF-Logo

RASFF -aflatoxins (Tot. = 29 µg/kg – ppb) and ochratoxin A (54 µg/kg – ppb) in organic dried figs from Turkey in the Netherlands

RASFF -ochratoxin A (30 µg/kg – ppb) in raisins from Uzbekistan in Latvia

RASFF -ochratoxin A (13 µg/kg – ppb) in dried figs from Greece in Slovenia

RASFF Alerts – Aflatoxin – Roasted Shell Peanuts – Chia Seeds – Figs – Dried Figs – Peanuts – Roasted Salted Pistachios – Groundnuts

RASFF-Logo

RASFF -aflatoxins (B1 = 16.91; Tot. = 17.95 µg/kg – ppb) in roasted salted pistachios from Turkey in Germany

RASFF -aflatoxins (B1 = 32.6 µg/kg – ppb) in chia seeds from Paraguay in the Netherlands

RASFF -aflatoxins (B1 = 7.1 µg/kg – ppb) in chia seeds from Paraguay in the Netherlands

RASFF -aflatoxins (Tot. = 29.27 µg/kg – ppb) in figs from Turkey in Germany

RASFF -aflatoxins (B1 = 103.48; Tot. = 263.69 µg/kg – ppb) in figs from Turkey in Germany

RASFF -aflatoxins (B1 = 70.74; Tot. = 74.35 µg/kg – ppb) in dried figs from Turkey in Germany

RASFF -aflatoxins (B1 = 44.56; Tot. = 107.01 µg/kg – ppb) in dried figs from Turkey in Germany

RASFF -aflatoxins (Tot. = 22,73 µg/kg – ppb) in dried figs from Turkey in Germany

RASFF -aflatoxins (B1 = 7.5 µg/kg – ppb) in peanuts from the United States in the Netherlands

RASFF -aflatoxins (Tot. = 29 µg/kg – ppb) and ochratoxin A (54 µg/kg – ppb) in organic dried figs from Turkey in the Netherlands

RASFF -aflatoxins (B1 = 16.9 µg/kg – ppb) in roasted salted pistachios from the United States in the UK

RASFF -aflatoxins (B1 = 4.7 µg/kg – ppb) in groundnut kernels from Argentina in the Netherlands

RASFF -aflatoxins (B1 = 8.4; Tot. = 9.6 µg/kg – ppb) in groundnuts from the United States in the UK

RASFF Alert – Listeria monocytogenes – Chilled Sliced Bacon – Pancakes mini blinis – Chilled Smoked Salmon

RASFF-Logo

RASFF -Listeria monocytogenes (presence /25g) in chilled sliced bacon from Belgium in Belgium

RASFF -suspicion of Listeria monocytogenes in pancakes mini blinis from France in Spain

RASFF -Listeria monocytogenes (presence /25g) in chilled smoked salmon from Norway in the Netherlands

RASFF Alert – Animal Feed – Aflatoxin – Bird Feed

RASFF-Logo

RASFF -aflatoxins (B1 = 312 µg/kg – ppb) in groundnut kernels for birdfeed from Argentina in the UK

RASFF Alert – Animal Feed – Salmonella – Soybean Cakes

RASFF-Logo

RASFF -Salmonella enterica ser. Haifa (presence /25g) in soybean cakes from Ukraine in  Austria

Research – Searching for high pressure processing parameters for Escherichia coli O157:H7, Salmonella enterica and Listeria monocytogenes reduction in Concord grape juice

Research Gate

Purpose High pressure processing (HPP) has been widely used for high-acid (pH<4.6) juices. The purpose of this study was to investigate optimal parameters aimed at achieving 5-log reduction of the pathogens of reference in Concord grape juice (pH 3.39). Design/methodology/approach Grape juice was inoculated with five strain cocktails of Escherichia coli O157:H7, Salmonella enterica and Listeria monocytogenes . In total, 11 trials were carried out based on a Central Composite Rotational Design (CCRD). The pressure ( P ), ranging from 319 to 531 MPa, and dwell time ( t ), from 35 to 205 s, were tested. The performance of the combinations ( P × t ) was evaluated by pathogen challenge microbiological assays. Findings E. coli O157:H7 was more resistant to HPP than S. enterica . L. monocytogenes did not grow in unprocessed juice (before HPP). Findings demonstrated that moderate pressures (~400 MPa) and short dwell times (~2 min) were effective in achieving a greater than 5-log reduction in the pathogens of reference. Practical implications Because the maintenance costs of equipment exponentially increase with pressure beyond 600 MPa, significant reductions in process pressure are highly desirable. Originality/value The results of this study can supplement the dearth of information on the applicability of high pressure as a Concord grape juice processing technology in terms of the pathogens inactivation. Furthermore, the use of a cocktail of five strains of pathogens inoculated in Concord grape juice to challenge different HPP parameters has not been reported.