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1.
Arq. bras. med. vet. zootec. (Online) ; 73(1): 169-178, Jan.-Feb. 2021. tab, graf
Article in English | LILACS, VETINDEX | ID: biblio-1153044

ABSTRACT

Foodborne viruses including hepatitis A virus (HAV), norovirus (NoV), rotavirus (RoV) and hepatitis E virus (HEV) are easily transmitted through contaminated seafoods. The current research was done to assess the incidence of RoV, NoV GI and GII,hAV and hEV in fish and shrimp samples caught from the Persian Gulf, Iran. Three-hundred and twenty fish and shrimp samples were collected. The presence of foodborne viruses were assessed by the real-time PCR. Forty-nine out of 320 (15.31%) fish and shrimp samples were positive for foodborne viruses. Distribution of hAV, NoV GI and NoV GII amongst all studied samples were 0.93%, 5.93% and 8.43%, respectively. hEV and RoV viruses were not found in studied samples. Parastromateus niger and Scomberomorus commerson fish and Penaeus monodon shrimp were the most frequently contaminated samples. Simultaneous incidence of hAV and NoV GI and hAV and NoV GII were 0.31% and 0.93%, respectively. Distribution of foodborne viruses in samples collected through spring, summer, autumn and winter seasons were 14.28%, 9.33%, 11.76% and 24.44%, respectively. Findings revealed that the incidence of foodborne viruses was significantly associated with seafood species and also season of sampling.(AU)


Vírus transmitidos por alimentos, incluindo hepatite A (HAV), norovírus (NoV), rotavírus (RoV) e hepatite E (HEV) são facilmente transmitidos através de frutos do mar contaminados. Esta pesquisa foi realizada para avaliar a incidência de RoV, NoV GI e GII, hAV e hEV em amostras de peixes e camarões capturadas no Golfo Pérsico, Irã. Foram coletadas 300 amostras de peixes e camarões. A presença de vírus transmitidos por alimentos foi avaliada por PCR em tempo real. Quarenta e nove das 320 amostras de peixes e camarões (15,31%) foram positivas para vírus transmitidos por alimentos. A distribuição de hAV, NoV GI e NoV GII entre as amostras estudadas foi 0,93%, 5,93% e 8,43%, respectivamente. Os vírus hEV e RoV não foram encontrados nas amostras estudadas. Os peixes Parastromateus niger e Scomberomorus commerson e o camarão Penaeus monodon foram as amostras mais frequentemente contaminadas. A incidência simultânea de hAV e NoV GI, e hAV e NoV GII foi de 0,31% e 0,93%, respectivamente. A distribuição dos vírus transmitidos por alimentos nas amostras coletadas na primavera, verão, outono e inverno foi de 14,28%, 9,33%, 11,76% e 24,44%, respectivamente. Os resultados demonstram que a incidência de vírus transmitidos por alimentos foi significativamente associada às espécies de frutos do mar e também à época da amostragem.(AU)


Subject(s)
Animals , Rotavirus Infections/epidemiology , Decapoda/virology , Hepatitis E/epidemiology , Caliciviridae Infections/epidemiology , Fishes/virology , Hepatitis A/epidemiology , Shellfish/virology , Hepatitis E virus/isolation & purification , Rotavirus/isolation & purification , Indian Ocean/epidemiology , Hepatitis A virus/isolation & purification , Norovirus/isolation & purification , Iran/epidemiology
2.
Tropical Biomedicine ; : 880-892, 2018.
Article in English | WPRIM | ID: wpr-751343

ABSTRACT

@#Resistant and enterotoxigenic Staphylococcus aureus strains are considered to be one of the major causes of foodborne diseases due to the consumption of sweet. The present research was done to study the distribution of enterotoxin types, enterotoxigenic genes and antibiotic resistance pattern of S. aureus strains isolated from traditional sweet samples. Eight-hundred and fifteen sweet samples were cultured and S. aureus strains were identified. Antibiotic resistance, enterotoxigenicity and enterotoxigenic gene profile were studied using disk diffusion, Enzyme Link Immunosorbent Assay and PCR, respectively. One-hundred and seven out of 815 (13.12%) sweet samples were positive for S. aureus. Prevalence of S. aureus in dried and semi-dried sweet samples were 15.08% and 11.13%, respectively (P <0.05). Forty-six out of 107 S. aureus strains (42.99%) were determined as enterotoxigenic. A (41.30%) and C (17.39%) were the most commonly detected enterotoxin types. Sea (20.56%), sec (14.95%) and seb (11.21%) were the most commonly detected enterotoxigenic genes. There were no positive sample for the sej enterotoxin gene. S. aureus strains harbored the highest prevalence of resistance against penicillin (88.78%), tetracycline (83.17%), ceftaroline (75.70%) and doxycycline (71.02%). Simultaneous presence of enterotoxins and enterotoxigenic genes in multi-drug resistant S. aureus strains indicates important public health issue regarding the consumption of contaminated traditional sweet samples.

3.
Arq. bras. med. vet. zootec ; 64(4): 887-890, Aug. 2012. tab
Article in English | LILACS | ID: lil-647689

ABSTRACT

The objective of this study was to determine the prevalence of Hepatitis A Virus (HAV) in sea food samples in the Isfahan and Shahrekord townships in Iran. From September 2010 to April 2011, a total of 300 samples of fresh fish, shrimp, crab and lobster were obtained from randomly selected retail stores in the Isfahan and Shahrekord townships in Iran. The samples were tested for the presence of HAV using a reverse transcriptase- polymerase chain reaction method. Out of the total number of samples examined, 8 (2.7%) were found to be positive for HAV. This virus was detected in 5% and 1.7% of fresh fish and shrimp, respectively. This study shows the importance of sea food as potential sources of HAV infection in people in Iran.


O objetivo deste estudo foi determinar a prevalência do vírus Hepatitis A (HAV) em amostras de frutos do mar nas cidades de Isfahan e Shahrekord no Iran. De setembro de 2010 a Abril de 2011 um total de 300 amostras de peixe fresco, camarão, caranguejo e lagosta foram obtidas de lojas de varejo aleatoriamente escolhidas nas cidades de Isfahan e Shahrekord no Iran. As amostras foram testadas para presença de HAV usando o método de reação em cadeia em transcriptase reversa. Do total de amostras examinadas, 8 (2.7%) foram positivas para HAV. Este vírus foi detectado em 5% e 1.7% de peixe fresco e camarão, respectivamente. Este estudo mostrou a importância de frutos do mar como fontes potenciais de infecção HAV em pessoas no Iran.


Subject(s)
Animals , Shellfish/virology , Hepatitis A/veterinary , Hepatitis A/virology , Infections/veterinary , Reverse Transcriptase Polymerase Chain Reaction/veterinary
4.
Article in English | IMSEAR | ID: sea-135587

ABSTRACT

Background & objectives: Verotoxigenic Escherichia coli are important serotypes of enterohaemorrhagic E. coli (EHEC) subgroup that cause attaching and effacing lesions in enterocytes by producing verotoxins or shiga-like toxins resulting in haemorrhagic colitis (HC) and haemolytic uremic syndrome (HUS). The aim of this study was to detect these serotypes specially E. coli O157:H7 in stool samples of patients with diarrhoea and identification of virulence genes (STX1, STX2, Hly and EAE) in Shahrekord-Iran area using PCR technique. Methods: Two hundred diarrhoeal stool samples of patients were collected through 2007-2008. Microbiological and biochemical examinations were done to detect the E. coli. Serological tests carried out to identify the O157 or O157:H7 serotypes. Results: Of the 58 E. coli isolates, 16 (27.6%) were detected as STX1 carrying E. coli, four (6.9%) carrying STX2, eight (13.8%) carrying both STX1 and STX2, and 12 (20.7%) were Hly carrying E. coli, but none of the isolates contained EAE gene. None of the isolates were E. coli O157 or O157:H7 serotypes. Interpretation & conclusions: Our results revealed that verotoxigenic E. coli isolates other than O157 serotype were involved in causing diarrhoea in Shahrekord-Iran.


Subject(s)
Adhesins, Bacterial/genetics , Diarrhea/microbiology , Escherichia coli O157/genetics , Escherichia coli O157/isolation & purification , Escherichia coli O157/metabolism , Escherichia coli Proteins/genetics , Feces/microbiology , Female , Hemolysin Proteins/genetics , Humans , Iran , Male , Surveys and Questionnaires , Shiga Toxin 1/genetics , Shiga Toxin 2/genetics , Shiga Toxins/metabolism
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