A novel strain of Escherichia coli O104:H4 bacteria caused a serious outbreak of foodborne illness focused in northern Germany in May through June 2011. The illness was characterized by bloody diarrhea, with a high frequency of serious complications, including hemolytic–uremic syndrome (HUS), a condition that requires urgent treatment. The outbreak was originally thought to have been caused by an enterohemorrhagic (EHEC) strain of E. coli, but it was later shown to have been caused by an enteroaggregative E. coli (EAEC) strain that had acquired the genes to produce Shiga toxins, present in organic fenugreek sprouts.
Epidemiological fieldwork suggested fresh vegetables were the source of infection. The agriculture minister of Lower Saxony identified an organic farm in Bienenbüttel, Lower Saxony, Germany, which produces a variety of sprouted foods, as the likely source of the E. coli outbreak. The farm was shut down. Although laboratories in Lower Saxony did not detect the bacterium in produce, a laboratory in North Rhine-Westphalia later found the outbreak strain in a discarded package of sprouts from the suspect farm. A control investigation confirmed the farm as the source of the outbreak. On 30 June 2011, the German Bundesinstitut für Risikobewertung (BfR) (Federal Institute for Risk Assessment), an institute of the German Federal Ministry of Food, Agriculture and Consumer Protection, announced that seeds of organic fenugreek imported from Egypt were likely the source of the outbreak.
In all, 3,950 people were affected and 53 died, 51 of whom were in Germany. 800 people suffered hemolytic–uremic syndrome (HUS), which can lead to kidney failure. A handful of cases were reported in several other countries including Switzerland, Poland, the Netherlands, Sweden, Denmark, the UK, Canada and the USA. Essentially all affected people had been in Germany or France shortly before becoming ill.
Initially, German officials made incorrect statements on the likely origin and strain of Escherichia coli. The German health authorities, without results of ongoing tests, incorrectly linked the O104 serotype to cucumbers imported from Spain. Later, they recognised that Spanish greenhouses were not the source of the E. coli and cucumber samples did not contain the specific E. coli variant causing the outbreak. Spain consequently expressed anger about having its produce linked with the deadly E. coli outbreak, which cost Spanish exporters US$200 million per week. Russia banned the import of all fresh vegetables from the European Union from early June until 22 June 2011.
Enterohemorrhagic E. coli has been linked to foodborne outbreaks of bloody diarrhea and hemolytic–uremic syndrome around the world since at least the early 1980s. The majority of disease has been attributed to E. coli with the serotype O157:H7; however, over 100 E. coli serotypes have been associated with human diarrheal disease.
In the five years before the outbreak (2006 to 2010) Germany experienced an average of 218 cases of EHEC gastroenteritis and 13 cases of hemolytic–uremic syndrome each year. According to the German National Reference Centre for Salmonella and Other Enteric Pathogens, the most common serotypes in those years were O157, O26, O103, and O91. Serotype O104 was relatively rare in Europe in the years preceding the outbreak, with just 11 reported cases in the EU and Norway between 2004 and 2009.
Cases began as early as 1 May 2011 with a man in Aachen reporting bloody diarrhea. Cases then rapidly increased, with over 100 cases of EHEC gastroenteritis and/or HUS were being reported each day by 16 May. The outbreak centered on the five northern German states of Hamburg, Schleswig-Holstein, Bremen, Lower Saxony, and Mecklenburg-Western Pomerania. Cases would eventually be reported in all 16 German states; however most cases outside of the northern states were linked to travel in northern Germany. Additionally, a small number of cases were reported from other countries, although most of those ill had previously travelled to Germany. The most substantial outbreak outside of Germany was in Bordeaux, France where 15 cases of EHEC gastroenteritis were associated with the same strain of E. coli which caused the outbreak in Germany. The French cases had not previously travelled to Germany, suggesting they acquired the bacteria from contaminated sprouts grown in France. Cases of EHEC HUS and gastroenteritis peaked on 21 and 22 May respectively. Cases then slowly decreased over the following month, with cases reported throughout the month of June and ending during July 2011. German authorities deemed the outbreak over in early July 2011.
The outbreak disproportionately affected adults and the elderly. 88% of hemolytic–uremic syndrome patients were over 17 years of age, and the median age of hemolytic–uremic syndrome patients was 42 years. The median age of patients who died of gastroenteritis was 82 years, while the median age of patients who died from hemolytic–uremic syndrome was 74 years.
Most or all victims were believed to have become infected in Germany or France. Confirmed cases are listed below according to their location when diagnosed.
The investigation into the cause of the outbreak officially began with the notification of the Robert Koch Institute on 19 May concerning three cases of HUS in children in Hamburg. On 26 May, German health officials hastily and prematurely announced that cucumbers from Spain were identified as a source of the E. coli outbreak in Germany, when in fact the source were Egyptian sprouts. On 27 May 2011, German officials issued an alert distributed to nearby countries, identifying organic cucumbers from Spain and withdrawing them from the market. The European Commission on 27 May said the two Spanish greenhouses suspected to be the sources had been closed, and were being investigated. The investigation included analyzing soil and water samples from the greenhouses in question, located in the Andalusia region, with results expected by 1 June. Cucumber samples from the Andalusian greenhouses did not show E. coli contamination, but cross-contamination during transport in Germany and distribution in Hamburg are not discounted; in fact, the most probable cause is cross-contamination inside Germany. The Robert Koch Institute advises against eating raw tomatoes, cucumbers, and lettuces in Germany to prevent further cases.
On 31 May, an EU official said the transport chain was so long, the cucumbers from Spain could have been contaminated at any point along the transit route. Spanish officials said before, there was no proof that the outbreak originated in Spain; Spanish Secretary of State for European Affairs Diego López Garrido said, "you can't attribute the origin of this sickness to Spain."
On Tuesday 31 May, lab tests showed two of the four cucumbers examined did contain toxin-producing E. coli strains, but not the O104 strain found in patients. The bacteria in the other two cucumbers have not yet been identified.
Genomic sequencing by BGI Shenzhen confirm a 2001 finding that the O104:H4 serotype has some enteroaggregative E. coli (EAEC or EAggEC) properties, presumably acquired by horizontal gene transfer.
The only previous documented case of EHEC O104:H4 was in South Korea in 2005, and researchers pointed at contaminated hamburgers as a possible cause.
On 4 June, German and EU officials had allegedly been examining data that indicated an open catering event at a restaurant in Lübeck, Germany, was a possible starting point of the ongoing deadly E. coli outbreak in Europe. German hospitals were nearly overwhelmed by the number of E. coli victims.
A spokesman for the agriculture ministry in Lower Saxony, warned people on 5 June to stop eating local bean sprouts, as they had become the latest suspected cause of the E. coli outbreak. A farm in Bienenbuettel, Lower Saxony, was announced as the probable source, but on 6 June, officials said this could not be substantiated by tests. Of the 40 samples from the farm that were being examined, 23 had tested negative. But on 10 June, the head of the Robert Koch Institute confirmed the sprouts were the source of the outbreak, and people who ate the sprouts were nine times more likely to have bloody diarrhea.