975 resultados para Shiga toxin-producing Escherichia coli
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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A Doença Inflamatória Intestinal atinge uma grande parcela da população mundial e é uma doença com causa multifatorial, duas formas clínicas são reconhecidas atualmente: A Doença de Crohn e a Retocolite Ulcerativa. Muitos estudos relacionam o diagnóstico de DII com um aumento na quantidade da bactéria Escherichia coli, mas ainda não é possível dizer certamente se esse aumento na população de E. coli é causa ou consequência da doença. As Escherichia coli com o padrão de adesão agregativo são encontradas em pacientes com a Doença de Crohn e Retocolite Ulcerativa e o presente estudo irá investigar esse comportamento através do teste de adesão com incubação de 3 horas. A distribuição média dos índices de aderência não apresentam uma diferença estatisticamente significativa entre os pacientes com Doença de Crohn (60%), Retocolite Ulcerativa (40%) e o grupo controle (60%). Assim, obtivemos resultados conflitantes com o esperado pela literatura, não foi observado um aumento na prevalência de testes positivos de aderência nos pacientes diagnosticados com Doença de Crohn e Retocolite Ulcerativa em relação ao grupo controle
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Esta revisão avaliou a eficácia da utilização da vacina E. coli J5, na imunização de vacas e novilhas leiteiras no pós-parto, em relação à prevenção de novos casos de mastite clínica, redução na gravidade dos sinais clínicos dos animais acometidos pela enfermidade, assim como na contagem de células somáticas presentes no leite dos animais doentes. O experimento contou com a avaliação dos dados encontrados em seis trabalhos científicos, divididos em dois grupos, três com estudos em vacas e três com estudos em novilhas. A prevenção de casos de mastite clínica foi observada somente em vacas; no grupo das novilhas não houve diferença entre vacinados e não vacinados. Em relação à gravidade dos sinais clínicos dos animais acometidos com mastite, tanto no grupo das novilhas quanto no das vacas, a vacina mostrou-se eficaz, reduzindo custos com tratamentos, descarte de leite e de animais. Sobre a eficácia da vacina em reduzir contagem de células somáticas presentes no leite dos animais com mastite, a vacina não se mostrou eficaz em vacas e novilhas. Análise econômica indica que a vacina E. coli J5 é lucrativa para produtores de leite de grande, médio e pequeno porte, sendo recomendada tanto para vacas quanto para novilhas, por reduzir os custos de produção e facilitar o manejo das granjas leiteiras
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Pós-graduação em Microbiologia Agropecuária - FCAV
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Water disinfection usually requires expensive chemicals or equipment. Chlorination is a common disinfection method, although it is not able to inactivate all pathogens. High concentrations of residual chlorine also cause an unpleasant taste and smell in drinking water. As an alternative, photocatalysis and photoelectrochemical treatment has a high disinfection potential in drinking water by using solid catalysts, such as titanium dioxide. Highly reactive hydroxyl radical generated during the process serves as the main oxidant, capable of inactivating a wide range of microorganisms. In this study, we proposed a novel comparison between Gram-positive and gram-negative microorganisms. An immobilized TiO2 film promoted higher efficiency in water disinfection processes. The treatment effectively inactivated Escherichia coli and Staphylococcus aureus bacterial microorganisms in a shorter period than other alternative methods.
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Bacterial resistance is a rising problem all over the world. Many studies have showed that beach sands can contain higher concentration of microorganisms and represent a risk to public health. This paper aims to evaluate the densities and resistance to antimicrobials of Escherichia coli strains, isolated from seawater and samples. The hypothesis is that microorganisms show higher densities in contaminated beach sands and more antimicrobial resistance than the water column. Density, distribution, and antimicrobial resistance of bacteria E. coli were evaluate in seawater and sands from two recreational beaches with different levels of pollution. At the beach with higher degree of pollution (Gonzaguinha), water samples presented the highest densities of E. coli; however, higher frequency of resistant strains was observe in wet sand (71.9 %). Resistance to a larger number of antimicrobial groups was observe in water (betalactamics, aminoglycosides, macrolides, rifampicins, and tetracyclines) and sand (betagalactamics and aminoglycosids). In water samples, highest frequencies of resistance were obtain against ampicilin (22.5 %), streptomycin (15.0 %), and rifampicin (15.0 %), while in sand, the highest frequencies were observe in relation to ampicilin (36.25 %) and streptomycin (23.52 %). At the less polluted beach, Ilha Porchat, highest densities of E. coli and higher frequency of resistance were obtain in wet and dry sand (53.7 and 53.8 %, respectively) compared to water (50 %). Antimicrobial resistance in strains isolated from water and sand only occurred against betalactamics (ampicilin and amoxicilin plus clavulanic acid). The frequency and variability of bacterial resistance to antimicrobials in marine recreational waters and sands were related to the degree of fecal contamination in this environment. These results show that water and sands from beaches with a high index of fecal contamination of human origin may be potential sources of contamination by pathogens and contribute to the dissemination of bacterial resistance.
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Food contamination caused by enteric pathogens is a major cause of diarrheal disease worldwide, resulting in high morbidity and mortality and significant economic losses. Bacteria are important agents of foodborne diseases, particularly diarrheagenic Escherichia coli. The present study assessed the genetic diversity and antimicrobial resistance of E. coli isolates from pasteurized milk processed in 21 dairies in northwestern State of Parana, Brazil. The 95 E. coli isolates were subjected to antimicrobial susceptibility testing according to the recommendations of the Clinical and Laboratory Standards Institute and assessed genotypically by Enterobacterial Repetitive Intergenic Consensus-Polymerase Chain Reaction (ERIC-PCR). The highest rate of resistance was observed for cephalothin (55.78%). ERIC-PCR revealed high genetic diversity, clustering the 95 bacterial isolates into 90 different genotypic patterns. These results showed a heterogeneous population of E. coli in milk samples produced in the northwestern region of Parana and the need for good manufacturing practices throughout the processing of pasteurized milk to reduce the risk of foodborne illnesses.
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Pyometra is recognized as one of the main causes of disease and death in the bitch, and Escherichia coli is the major pathogen associated with this disease. In this study, 70 E. coli isolates from the uteri horn, mouth, and rectum of bitches suffering from the disease and 43 E. coli isolates from the rectum of clinically healthy bitches were examined for the presence of uropathogenic virulence genes and susceptibility to antimicrobial drugs. DNA profiles of isolates from uteri horn and mouth in bitches with pyometra were compared by REP, ERIC, and BOX-PCR. Virulence gene frequencies detected in isolates from canine pyometra were as follows: 95.7% fim, 27.1% iss, 25.7% hly, 18.5% iuc, and 17.1% usp. Predominant resistance was determined for cephalothin, ampicillin, and nalidixic acid among the isolates from all sites examined. Multidrug resistance was found on ∼ 50% pyometra isolates. Using the genotypic methods some isolates from uteri, pus, and saliva of the same bitch proved to have identical DNA profiles which is a reason for concern due to the close relationship between household pets and humans.
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FMN riboswitches are genetic elements that, in many bacteria, control genes responsible for biosynthesis and/or transport of riboflavin (vitamin B2 ). We report that the Escherichia coli ribB FMN riboswitch controls expression of the essential gene ribB coding for the riboflavin biosynthetic enzyme 3,4-dihydroxy-2-butanone-4-phosphate synthase (RibB; EC 4.1.99.12). Our data show that the E. coli ribB FMN riboswitch is unusual because it operates at the transcriptional and also at the translational level. Expression of ribB is negatively affected by FMN and by the FMN analog roseoflavin mononucleotide, which is synthesized enzymatically from roseoflavin and ATP. Consequently, in addition to flavoenzymes, the E. coli ribB FMN riboswitch constitutes a target for the antibiotic roseoflavin produced by Streptomyces davawensis.
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)