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1.
MMWR Morb Mortal Wkly Rep ; 72(26): 701-706, 2023 Jun 30.
Article in English | MEDLINE | ID: mdl-37384552

ABSTRACT

Each year, infections from major foodborne pathogens are responsible for an estimated 9.4 million illnesses, 56,000 hospitalizations, and 1,350 deaths in the United States (1). To evaluate progress toward prevention of enteric infections in the United States, the Foodborne Diseases Active Surveillance Network (FoodNet) conducts surveillance for laboratory-diagnosed infections caused by eight pathogens transmitted commonly through food at 10 U.S. sites. During 2020-2021, FoodNet detected decreases in many infections that were due to behavioral modifications, public health interventions, and changes in health care-seeking and testing practices during the COVID-19 pandemic. This report presents preliminary estimates of pathogen-specific annual incidences during 2022, compared with average annual incidences during 2016-2018, the reference period for the U.S. Department of Health and Human Services' Healthy People 2030 targets (2). Many pandemic interventions ended by 2022, resulting in a resumption of outbreaks, international travel, and other factors leading to enteric infections. During 2022, annual incidences of illnesses caused by the pathogens Campylobacter, Salmonella, Shigella, and Listeria were similar to average annual incidences during 2016-2018; however, incidences of Shiga toxin-producing Escherichia coli (STEC), Yersinia, Vibrio, and Cyclospora illnesses were higher. Increasing culture-independent diagnostic test (CIDT) usage likely contributed to increased detection by identifying infections that would have remained undetected before widespread CIDT usage. Reducing pathogen contamination during poultry slaughter and processing of leafy greens requires collaboration among food growers and processors, retail stores, restaurants, and regulators.


Subject(s)
COVID-19 , Foodborne Diseases , Humans , Animals , Incidence , Pandemics , Watchful Waiting , COVID-19/epidemiology , Foodborne Diseases/epidemiology
2.
Emerg Infect Dis ; 30(2): 337-340, 2023 Feb.
Article in English | MEDLINE | ID: mdl-38270126

ABSTRACT

We fit a power law distribution to US foodborne disease outbreaks to assess underdetection and underreporting. We predicted that 788 fewer than expected small outbreaks were identified annually during 1998-2017 and 365 fewer during 2018-2019, after whole-genome sequencing was implemented. Power law can help assess effectiveness of public health interventions.


Subject(s)
Disease Outbreaks , Foodborne Diseases , United States/epidemiology , Humans , Public Health , Foodborne Diseases/epidemiology , Whole Genome Sequencing
3.
MMWR Morb Mortal Wkly Rep ; 71(40): 1260-1264, 2022 Oct 07.
Article in English | MEDLINE | ID: mdl-36201372

ABSTRACT

To evaluate progress toward prevention of enteric infections in the United States, the Foodborne Diseases Active Surveillance Network (FoodNet) conducts active population-based surveillance for laboratory-diagnosed infections caused by Campylobacter, Cyclospora, Listeria, Salmonella, Shiga toxin-producing Escherichia coli (STEC), Shigella, Vibrio, and Yersinia at 10 U.S. sites. This report summarizes preliminary 2021 data and describes changes in annual incidence compared with the average annual incidence for 2016-2018, the reference period for the U.S. Department of Health and Human Services' (HHS) Healthy People 2030 goals for some pathogens (1). During 2021, the incidence of infections caused by Salmonella decreased, incidence of infections caused by Cyclospora, Yersinia, and Vibrio increased, and incidence of infections caused by other pathogens did not change. As in 2020, behavioral modifications and public health interventions implemented to control the COVID-19 pandemic might have decreased transmission of enteric infections (2). Other factors (e.g., increased use of telemedicine and continued increase in use of culture-independent diagnostic tests [CIDTs]) might have altered their detection or reporting (2). Much work remains to achieve HHS Healthy People 2030 goals, particularly for Salmonella infections, which are frequently attributed to poultry products and produce, and Campylobacter infections, which are frequently attributed to chicken products (3).


Subject(s)
COVID-19 , Foodborne Diseases , Vibrio , Foodborne Diseases/epidemiology , Humans , Incidence , Pandemics , Population Surveillance , Salmonella , United States/epidemiology , Watchful Waiting
4.
MMWR Morb Mortal Wkly Rep ; 71(2): 59-65, 2022 Jan 14.
Article in English | MEDLINE | ID: mdl-35025851

ABSTRACT

The COVID-19 pandemic has disproportionately affected people with diabetes, who are at increased risk of severe COVID-19.* Increases in the number of type 1 diabetes diagnoses (1,2) and increased frequency and severity of diabetic ketoacidosis (DKA) at the time of diabetes diagnosis (3) have been reported in European pediatric populations during the COVID-19 pandemic. In adults, diabetes might be a long-term consequence of SARS-CoV-2 infection (4-7). To evaluate the risk for any new diabetes diagnosis (type 1, type 2, or other diabetes) >30 days† after acute infection with SARS-CoV-2 (the virus that causes COVID-19), CDC estimated diabetes incidence among patients aged <18 years (patients) with diagnosed COVID-19 from retrospective cohorts constructed using IQVIA health care claims data from March 1, 2020, through February 26, 2021, and compared it with incidence among patients matched by age and sex 1) who did not receive a COVID-19 diagnosis during the pandemic, or 2) who received a prepandemic non-COVID-19 acute respiratory infection (ARI) diagnosis. Analyses were replicated using a second data source (HealthVerity; March 1, 2020-June 28, 2021) that included patients who had any health care encounter possibly related to COVID-19. Among these patients, diabetes incidence was significantly higher among those with COVID-19 than among those 1) without COVID-19 in both databases (IQVIA: hazard ratio [HR] = 2.66, 95% CI = 1.98-3.56; HealthVerity: HR = 1.31, 95% CI = 1.20-1.44) and 2) with non-COVID-19 ARI in the prepandemic period (IQVIA, HR = 2.16, 95% CI = 1.64-2.86). The observed increased risk for diabetes among persons aged <18 years who had COVID-19 highlights the importance of COVID-19 prevention strategies, including vaccination, for all eligible persons in this age group,§ in addition to chronic disease prevention and management. The mechanism of how SARS-CoV-2 might lead to incident diabetes is likely complex and could differ by type 1 and type 2 diabetes. Monitoring for long-term consequences, including signs of new diabetes, following SARS-CoV-2 infection is important in this age group.


Subject(s)
COVID-19/complications , Diabetes Mellitus/diagnosis , Diabetes Mellitus/epidemiology , Diabetic Ketoacidosis/diagnosis , Diabetic Ketoacidosis/epidemiology , SARS-CoV-2 , Adolescent , Child , Child, Preschool , Cohort Studies , Databases, Factual , Female , Humans , Incidence , Infant , Male , Retrospective Studies , Risk , United States/epidemiology
5.
Pathogens ; 10(4)2021 Apr 14.
Article in English | MEDLINE | ID: mdl-33920028

ABSTRACT

Infectious disease is recognized as the greatest threat to the endangered chimpanzees made famous by the groundbreaking work of Dr. Jane Goodall at Gombe National Park (GNP), Tanzania. The permeable boundary of this small protected area allows for regular wildlife-human and wildlife-domestic animal overlap, which may facilitate cross-species transmission of pathogens and antimicrobial resistance. Few studies have examined the prevalence of antimicrobial resistance in wild ape populations. We used molecular techniques to investigate the presence of genes conferring resistance to sulfonamides (often used to treat diarrheal illness in human settings in this region) and tetracycline (used in the past-though much less so now) in fecal specimens from humans, domestic animals, chimpanzees, and baboons in and around GNP. We also tested stream water used by these groups. Sulfonamide resistance was common in humans (74%), non-human primates (43%), and domestic animals (17%). Tetracycline resistance was less common in all groups: humans (14%), non-human primates (3%), and domestic animals (6%). Sul resistance genes were detected from 4/22 (18%) of streams sampled. Differences in sul gene frequencies did not vary by location in humans nor in chimpanzees.

6.
Am J Epidemiol ; 190(10): 2188-2197, 2021 10 01.
Article in English | MEDLINE | ID: mdl-33878169

ABSTRACT

Hypothesis generation is a critical, but challenging, step in a foodborne outbreak investigation. The pathogens that contaminate food have many diverse reservoirs, resulting in seemingly limitless potential vehicles. Identifying a vehicle is particularly challenging for clusters detected through national pathogen-specific surveillance, because cases can be geographically dispersed and lack an obvious epidemiologic link. Moreover, state and local health departments could have limited resources to dedicate to cluster and outbreak investigations. These challenges underscore the importance of hypothesis generation during an outbreak investigation. In this review, we present a framework for hypothesis generation focusing on 3 primary sources of information, typically used in combination: 1) known sources of the pathogen causing illness; 2) person, place, and time characteristics of cases associated with the outbreak (descriptive data); and 3) case exposure assessment. Hypothesis generation can narrow the list of potential food vehicles and focus subsequent epidemiologic, laboratory, environmental, and traceback efforts, ensuring that time and resources are used more efficiently and increasing the likelihood of rapidly and conclusively implicating the contaminated food vehicle.


Subject(s)
Disease Outbreaks , Disease Reservoirs , Epidemiological Monitoring , Foodborne Diseases/epidemiology , Public Health Surveillance/methods , Humans
8.
Emerg Infect Dis ; 22(7): 1149-55, 2016 07.
Article in English | MEDLINE | ID: mdl-27315584

ABSTRACT

During 2006-2014, a total of 15 multistate outbreaks of turtle-associated salmonellosis in humans were reported in the United States. Exposure to small pet turtles has long been recognized as a source of human salmonellosis. The risk to public health has persisted and may be increasing. Turtles are a popular reptilian pet among children, and numerous risky behaviors for the zoonotic transmission of Salmonella bacteria to children have been reported in recent outbreaks. Despite a long-standing federal ban against the sale and distribution of turtles <4 in (<10.16 cm) long, these small reptiles can be readily acquired through multiple venues and continue to be the main source of turtle-associated salmonellosis in children. Enhanced efforts are needed to minimize the disease risk associated with small turtle exposure. Prevention will require novel partnerships and a comprehensive One Health approach involving human, animal, and environmental health.


Subject(s)
Salmonella Infections, Animal/microbiology , Salmonella Infections/transmission , Turtles/microbiology , Animals , Child , Disease Outbreaks , Humans , Pets , Public Health , Salmonella Infections, Animal/transmission , United States/epidemiology , Zoonoses
9.
Am J Infect Control ; 43(8): 788-93, 2015 Aug.
Article in English | MEDLINE | ID: mdl-26116335

ABSTRACT

In March 2014 the World Health Organization was notified of an outbreak of Ebola virus disease (EVD) in the forest region of Guinea. As of May 2015, the outbreak had become the most devastating EVD epidemic in history with more than 27,000 cases and more than 11,000 deaths. The introduction of EVD into noncontiguous countries, including the United States, from infected travelers highlights the importance of preparedness of all health care providers. Early identification and rapid isolation of patients suspected with EVD is critical to limiting the spread of Ebola virus. Additionally, enhanced understanding of EVD case definitions, clinical presentation, treatment procedures, and infection control strategies will improve the ability of health care workers to provide safe care for patients with EVD.


Subject(s)
Biological Therapy/methods , Fluid Therapy/methods , Hemorrhagic Fever, Ebola/diagnosis , Hemorrhagic Fever, Ebola/therapy , Infection Control/methods , Infectious Disease Transmission, Patient-to-Professional/prevention & control , Hemorrhagic Fever, Ebola/pathology , Hemorrhagic Fever, Ebola/prevention & control , Humans
10.
Foodborne Pathog Dis ; 11(8): 635-44, 2014 Aug.
Article in English | MEDLINE | ID: mdl-25076040

ABSTRACT

After a series of outbreaks associated with sprouts in the mid-1990s, the U.S. Food and Drug Administration (FDA) published guidelines in 1999 for sprouts producers to reduce the risk of contamination. The recommendations included treating seeds with an antimicrobial agent such as calcium hypochlorite solution and testing spent irrigation water for pathogens. From 1998 through 2010, 33 outbreaks from seed and bean sprouts were documented in the United States, affecting 1330 reported persons. Twenty-eight outbreaks were caused by Salmonella, four by Shiga toxin-producing Escherichia coli, and one by Listeria. In 15 of the 18 outbreaks with information available, growers had not followed key FDA guidelines. In three outbreaks, however, the implicated sprouts were produced by firms that appeared to have implemented key FDA guidelines. Although seed chlorination, if consistently applied, reduces pathogen burden on sprouts, it does not eliminate the risk of human infection. Further seed and sprouts disinfection technologies, some recently developed, will be needed to enhance sprouts safety and reduce human disease. Improved seed production practices could also decrease pathogen burden but, because seeds are a globally distributed commodity, will require international cooperation.


Subject(s)
Disease Outbreaks , Food Contamination/analysis , Foodborne Diseases/epidemiology , Foodborne Diseases/microbiology , Vegetables/microbiology , Disinfection/methods , Escherichia coli O157/isolation & purification , Fabaceae/microbiology , Food Handling/standards , Food Microbiology , Halogenation , Humans , Listeria/isolation & purification , Medicago sativa/microbiology , Salmonella/isolation & purification , Seeds/microbiology , United States/epidemiology , United States Food and Drug Administration
11.
Int J Syst Evol Microbiol ; 64(Pt 9): 2944-2948, 2014 Sep.
Article in English | MEDLINE | ID: mdl-24899653

ABSTRACT

A polyphasic study was undertaken to determine the taxonomic position of 13 Campylobacter fetus-like strains from humans (n = 8) and reptiles (n = 5). The results of matrix-assisted laser desorption ionization time-of-flight (MALDI-TOF) MS and genomic data from sap analysis, 16S rRNA gene and hsp60 sequence comparison, pulsed-field gel electrophoresis, amplified fragment length polymorphism analysis, DNA-DNA hybridization and whole genome sequencing demonstrated that these strains are closely related to C. fetus but clearly differentiated from recognized subspecies of C. fetus. Therefore, this unique cluster of 13 strains represents a novel subspecies within the species C. fetus, for which the name Campylobacter fetus subsp. testudinum subsp. nov. is proposed, with strain 03-427(T) ( = ATCC BAA-2539(T) = LMG 27499(T)) as the type strain. Although this novel taxon could not be differentiated from C. fetus subsp. fetus and C. fetus subsp. venerealis using conventional phenotypic tests, MALDI-TOF MS revealed the presence of multiple phenotypic biomarkers which distinguish Campylobacter fetus subsp. testudinum subsp. nov. from recognized subspecies of C. fetus.


Subject(s)
Campylobacter fetus/classification , Phylogeny , Reptiles/microbiology , Amplified Fragment Length Polymorphism Analysis , Animals , Bacterial Typing Techniques , Campylobacter fetus/genetics , Campylobacter fetus/isolation & purification , DNA, Bacterial/genetics , Humans , Molecular Sequence Data , Nucleic Acid Hybridization , RNA, Ribosomal, 16S/genetics , Sequence Analysis, DNA , Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization
12.
Appl Environ Microbiol ; 80(15): 4540-6, 2014 Aug.
Article in English | MEDLINE | ID: mdl-24837383

ABSTRACT

From August to September 2008, the Centers for Disease Control and Prevention (CDC) assisted the Alaska Division of Public Health with an outbreak investigation of campylobacteriosis occurring among the residents of Southcentral Alaska. During the investigation, pulsed-field gel electrophoresis (PFGE) of Campylobacter jejuni isolates from human, raw pea, and wild bird fecal samples confirmed the epidemiologic link between illness and the consumption of raw peas contaminated by sandhill cranes for 15 of 43 epidemiologically linked human isolates. However, an association between the remaining epidemiologically linked human infections and the pea and wild bird isolates was not established. To better understand the molecular epidemiology of the outbreak, C. jejuni isolates (n=130; 59 from humans, 40 from peas, and 31 from wild birds) were further characterized by multilocus sequence typing (MLST). Here we present the molecular evidence to demonstrate the association of many more human C.jejuni infections associated with the outbreak with raw peas and wild bird feces. Among all sequence types (STs) identified, 26 of 39 (67%) were novel and exclusive to the outbreak. Five clusters of overlapping STs (n=32 isolates; 17 from humans, 2 from peas, and 13 from wild birds) were identified. In particular, cluster E (n=7 isolates; ST-5049) consisted of isolates from humans,peas, and wild birds. Novel STs clustered closely with isolates typically associated with wild birds and the environment but distinct from lineages commonly seen in human infections. Novel STs and alleles recovered from human outbreak isolates allowed additional infections caused by these rare genotypes to be attributed to the contaminated raw peas.


Subject(s)
Animals, Wild/microbiology , Birds/microbiology , Campylobacter Infections/microbiology , Campylobacter/isolation & purification , Pisum sativum/microbiology , Alaska/epidemiology , Animals , Campylobacter/classification , Campylobacter/genetics , Campylobacter Infections/epidemiology , Disease Outbreaks , Feces/microbiology , Food Contamination/analysis , Genotype , Humans , Molecular Sequence Data , Multilocus Sequence Typing , Phylogeny
14.
Clin Infect Dis ; 58(11): 1579-86, 2014 Jun.
Article in English | MEDLINE | ID: mdl-24550377

ABSTRACT

Campylobacter fetus can cause intestinal illness and, occasionally, severe systemic infections. Infections mainly affect persons at higher risk, including elderly and immunocompromised individuals and those with occupational exposure to infected animals. Outbreaks are infrequent but have provided insight into sources. Source attribution of sporadic cases through case-control interviews has not been reported. The reservoirs for C. fetus are mainly cattle and sheep. Products from these animals are suspected as sources for human infections. Campylobacter fetus is rarely isolated from food, albeit selective isolation methods used in food microbiology are not suited for its detection. We hypothesize that the general population is regularly exposed to C. fetus through foods of animal origin, cross-contaminated foodstuffs, and perhaps other, as yet unidentified, routes. Campylobacter fetus infection should be suspected particularly in patients with nonspecific febrile illness who are immunocompromised or who may have been occupationally exposed to ruminants.


Subject(s)
Campylobacter Infections/epidemiology , Campylobacter Infections/pathology , Campylobacter fetus/isolation & purification , Foodborne Diseases/epidemiology , Foodborne Diseases/pathology , Animals , Campylobacter Infections/microbiology , Cattle , Cattle Diseases/microbiology , Cattle Diseases/transmission , Foodborne Diseases/microbiology , Humans , Immunocompromised Host , Occupational Exposure , Sheep , Sheep Diseases/microbiology , Sheep Diseases/transmission , Zoonoses/epidemiology , Zoonoses/transmission
16.
Emerg Infect Dis ; 19(10): 1678-80, 2013 Oct.
Article in English | MEDLINE | ID: mdl-24050521

ABSTRACT

Campylobacter fetus subsp. testudinum subsp. nov. is a newly proposed subspecies of C. fetus with markers of reptile origin. We summarize epidemiologic information for 9 humans infected with this bacterium. All cases were in men, most of whom were of Asian origin. Infection might have been related to exposure to Asian foods or reptiles.


Subject(s)
Bacteremia/microbiology , Campylobacter Infections/microbiology , Campylobacter fetus/isolation & purification , Adult , Aged , Aged, 80 and over , Diarrhea/microbiology , Humans , Male , Middle Aged , Young Adult
17.
Infect Dis Clin North Am ; 27(3): 517-33, 2013 Sep.
Article in English | MEDLINE | ID: mdl-24011828

ABSTRACT

New foodborne pathogens continue to emerge, and the globalization of the food supply means that the safety of our food depends on policies and practices in many countries. Public health surveillance of foodborne bacterial pathogens depends on culture, isolation, and subtyping. New diagnostic strategies that bypass culture threaten public health surveillance in the short-term but offer the potential for more refined and rapid outbreak detection in the future. Infectious disease clinicians play a critical role in diagnosis and reporting because they may be the first to suspect a new problem and often link clinical and public health communities.


Subject(s)
Communicable Diseases, Emerging/epidemiology , Disease Outbreaks , Food Contamination , Foodborne Diseases/epidemiology , Communicable Diseases, Emerging/prevention & control , Disease Outbreaks/prevention & control , Food Contamination/prevention & control , Food Safety , Foodborne Diseases/prevention & control , Humans , Public Health Surveillance , United States/epidemiology
18.
N Engl J Med ; 369(10): 944-53, 2013 Sep 05.
Article in English | MEDLINE | ID: mdl-24004121

ABSTRACT

BACKGROUND: Although new pathogen-vehicle combinations are increasingly being identified in produce-related disease outbreaks, fresh produce is a rarely recognized vehicle for listeriosis. We investigated a nationwide listeriosis outbreak that occurred in the United States during 2011. METHODS: We defined an outbreak-related case as a laboratory-confirmed infection with any of five outbreak-related subtypes of Listeria monocytogenes isolated during the period from August 1 through October 31, 2011. Multistate epidemiologic, trace-back, and environmental investigations were conducted, and outbreak-related cases were compared with sporadic cases reported previously to the Listeria Initiative, an enhanced surveillance system that routinely collects detailed information about U.S. cases of listeriosis. RESULTS: We identified 147 outbreak-related cases in 28 states. The majority of patients (127 of 147, 86%) were 60 years of age or older. Seven infections among pregnant women and newborns and one related miscarriage were reported. Of 145 patients for whom information about hospitalization was available, 143 (99%) were hospitalized. Thirty-three of the 147 patients (22%) died. Patients with outbreak-related illness were significantly more likely to have eaten cantaloupe than were patients 60 years of age or older with sporadic illness (odds ratio, 8.5; 95% confidence interval, 1.3 to ∞). Cantaloupe and environmental samples collected during the investigation yielded isolates matching all five outbreak-related subtypes, confirming that whole cantaloupe produced by a single Colorado farm was the outbreak source. Unsanitary conditions identified in the processing facility operated by the farm probably resulted in contamination of cantaloupes with L. monocytogenes. CONCLUSIONS: Raw produce, including cantaloupe, can serve as a vehicle for listeriosis. This outbreak highlights the importance of preventing produce contamination within farm and processing environments.


Subject(s)
Cucumis melo/microbiology , Disease Outbreaks , Foodborne Diseases/epidemiology , Listeria monocytogenes/isolation & purification , Listeriosis/epidemiology , Adolescent , Adult , Age Distribution , Aged , Aged, 80 and over , Animals , Citrullus/microbiology , Female , Humans , Infant , Infant, Newborn , Male , Meat/microbiology , Middle Aged , Pregnancy , Pregnancy Complications, Infectious/epidemiology , Sus scrofa , United States/epidemiology , Young Adult
20.
Emerg Infect Dis ; 19(3): 407-15, 2013 Mar.
Article in English | MEDLINE | ID: mdl-23622497

ABSTRACT

Each year, >9 million foodborne illnesses are estimated to be caused by major pathogens acquired in the United States. Preventing these illnesses is challenging because resources are limited and linking individual illnesses to a particular food is rarely possible except during an outbreak. We developed a method of attributing illnesses to food commodities that uses data from outbreaks associated with both simple and complex foods. Using data from outbreak-associated illnesses for 1998-2008, we estimated annual US foodborne illnesses, hospitalizations, and deaths attributable to each of 17 food commodities. We attributed 46% of illnesses to produce and found that more deaths were attributed to poultry than to any other commodity. To the extent that these estimates reflect the commodities causing all foodborne illness, they indicate that efforts are particularly needed to prevent contamination of produce and poultry. Methods to incorporate data from other sources are needed to improve attribution estimates for some commodities and agents.


Subject(s)
Disease Outbreaks , Foodborne Diseases/mortality , Gastroenteritis/mortality , Hospitalization/statistics & numerical data , Animals , Dairy Products/virology , Food Microbiology , Foodborne Diseases/virology , Gastroenteritis/virology , Humans , Norovirus , Poultry/virology , United States/epidemiology , Vegetables/virology
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