801 resultados para bactéria patogénica


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The Chromobacterium violaceum is a β-proteobacterium Gram-negative widely found in tropical and subtropical regions, whose genome was sequenced in 2003 showing great metabolic versatility and biotechnological and pharmaceutical potential. Given the large number of ORFs related to iron metabolism described in the genome of C. violaceum, the importance of this metal for various biological processes and due to lack of data about the consequences of excess of iron in free-living organisms, it is important to study the response mechanism of this bacterium in a culture filled with iron. Previous work showed that C. violaceum is resistant to high concentrations of this metal, but has not yet been described the mechanism which is used to this survival. Thus, to elucidate the response of C. violaceum cultured in high concentrations of iron and expecting to obtain candidate genes for use in bioremediation processes, this study used a shotgun proteomics approach and systems biology to assess the response of C. violaceum grown in the presence and absence of 9 mM of iron. The analysis identified 531 proteins, being 71 exclusively expressed by the bacteria grown in the presence of the metal and 100 just in the control condition. The increase in expression of proteins related to the TCA cycle possibly represents a metabolic reprogramming of the bacteria caused by high concentration of iron in the medium. Moreover, we observed an increase in the activity assay of superoxide dismutase and catalase as well as in Total Antioxidant Activity assay, suggesting that the metal is inducing oxidative stress in C. violaceum that increases the levels of violacein and antioxidant enzymes to better adapt to the emerging conditions. Are also part of the adaptive response changes in expression of proteins related to transport, including iron, as well as an increased expression of proteins related to chemotaxis response, which would lead the bacteria to change the direction of its movement away from the metal. Systems Biology results, also suggest a metabolic reprogramming with mechanisms coordinated by bottleneck proteins involved in transcription (GreA), energy metabolism (Rpe and TpiA) and methylation (AhcY)

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Antecedentes: la proteína C reactiva es uno de los marcadores inflamatorios denominados “reactantes de fase aguda” que se produce en el hígado en respuesta a procesos infecciosos o inflamatorios. En los pacientes con tuberculosis se ha descrito la formación de anticuerpos anticitoplasma de neutrófi los (ANCA). Objetivo: determinar la concentración de proteína C reactiva, evaluar su comportamiento como marcador de la respuesta inflamatoria y analizar su correlación con los ANCA en los pacientes con tuberculosis pulmonar, antes y después de iniciar el tratamiento antifímico. Pacientes: se eligieron pacientes con sospecha de tuberculosis pulmonar. Una vez confirmado el diagnóstico, se obtuvieron las muestras de suero para analizar los datos clínicos y de laboratorios. La determinación de ANCA se realizó con estuches comerciales de inmunofluorescencia y la de proteína C reactiva con ELISA, antes y después de iniciar el tratamiento antifímico. Resultados: se obtuvieron 50 muestras de suero de pacientes con tuberculosis pulmonar. En la primera (94%) y segunda obtención (90%) de los sueros se registró un valor de proteína C reactiva menor de 5 mg/L. El valor promedio de proteína C reactiva fue de 3.05 ± 8.27 mg/L en la primera muestra y de 4.49 ± 11.2 mg/L en la segunda (p = 0.46). Los pacientes positivos a ANCA tuvieron valores más altos de proteína C reactiva en su segunda muestra (p = 0.001). Discusión: existe una asociación entre la proteína C reactiva y la producción de anticuerpos anticitoplasma de neutrófilos en un subgrupo de pacientes con tuberculosis pulmonar. Su significación es incierta, pero quizá desempeñan alguna función patogénica en la respuesta inflamatoria pulmonar.

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Chromobacterium violaceum is a free-living bacillus, Gram-negative commonly found in water and sand of tropical and subtropical regions. One of its main characteristic it's the ability to produce the purple pigment named violacein, that shows countless biological activities. In 2003, the genome of this organism was totally sequenced and revealed important informations about the physiology of this bacteria. However, few post-genomics studies had been accomplished. This work evaluated the protein profile of C. violaceum cultivated in LB medium at 28ºC that allowed the identification and characterization of proteins related to a possible secretion system that wasn't identified and characterized yet in C. violaceum, to the quorum sensing system, to regulatory process of transcription and translation, stress adaptation and biotechnological potential. Moreover, the response of the bacteria to UVC radiation was evaluated. The comparison of the protein profile, analyzed through 2-D electrophoresis, of the control group versus the treatment group allowed the identification of 52 proteins that arose after stress induction. The obtained results enable the elaboration of a stress response pathway in C. violaceum generated by the UVC light. This pathway, that seems to be a general stress response, involves the expression of proteins related to cellular division, purine and pirimidine metabolism, heat chock or chaperones, energy supply, regulation of biofilm formation, transport, regulation of lytic cycle of bacteriophages, besides proteins that show undefined function. Despite the response present similarities with the classic SOS response of E. coli, we still cannot assert that C. violaceum shows a SOS-like response, mainly due to the absence of characterization of a LexA-like protein in this organism

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The β-proteobacterium Chromobacterium violaceum is a Gram-negative, free-living, saprophytic and opportunistic pathogen that inhabits tropical and subtropical ecosystems among them, in soil and water of the Amazon. It has great biotechnological potential, and because of this potential, its genome was completely sequenced in 2003. Genome analysis showed that this bacterium has several genes with functions related to the ability to survive under different kinds of environmental stresses. In order to understand the physiological response of C. violaceum under oxidative stress, we applied the tool of shotgun proteomics. Thus, colonies of C. violaceum ATCC 12472 were grown in the presence and absence of 8 mM H2O2 for two hours, total proteins were extracted from bacteria, subjected to SDS-PAGE, stained and hydrolysed. The tryptic peptides generated were subjected to a linear-liquid chromatography (LC) followed by mass spectrometer (LTQ-XL-Orbitrap) to obtain quantitative and qualitative data. A shotgun proteomics allows to compare directly in complex samples, differential expression of proteins and found that in C. Violaceum, 131 proteins are expressed exclusively in the control condition, 177 proteins began to be expressed under oxidative stress and 1175 proteins have expression in both conditions. The results showed that, under the condition of oxidative stress, this bacterium changes its metabolism by increasing the expression of proteins capable of combating oxidative stress and decreasing the expression of proteins related processes bacterial growth and catabolism (transcription, translation, carbon metabolism and fatty acids). A tool with of proteomics as an approach of integrative biology provided an overview of the metabolic pathways involved in the response of C. violaceum to oxidative stress, as well as significantly amplified understanding physiological response to environmental stress. Biochemical and "in silico" assays with the hypothetical ORF CV_0868 found that this is part of an operon. Phylogenetic analysis of superoxide dismutase, protein belonging to the operon also showed that the gene is duplicated in genome of C. violaceum and the second copy was acquired through a horizontal transfer event. Possibly, not only the SOD gene but also all genes comprising this operon were obtained in the same manner. It was concluded that C. violaceum has complex, efficient and versatile mechanisms in oxidative stress response

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he present model of agriculture is based on intensive use of industrial inputs, due to its rapid response, but it brings harmful consequences to the environment, and it is necessary the use of modern inputs. And an alternative is the use of rock biofertilizers in agriculture, a product easy to use, with higher residual effect and does not harm the environment. The objective of study was to evaluate the inoculation and co-inoculation of different microorganisms in the solubilization of rock phosphate and potash ground microbial evaluating the best performance in the production of biofertilizers comparing with rocks pure in soil chemical properties and, verify effect of inoculation of the bacterium Paenibacillus polymyxa in the absorption of minerals dissolved in the development of cowpea (Vigna unguiculata [L.] Walp.). The first bioassay was conducted in Laboratory (UFRN) for 72 days in Petri dishes, where the rock powder was increased by 10% and sulfur co-inoculated and inoculated with bacterial suspension of Paenibacillus polymyxa grown in medium tryptone soy broth, Ralstonia solanacearum in medium Kelman, Cromobacterium violaceum in medium Luria-Bertani and Acidithiobacillus thiooxidans in medium Tuovinen and Kelly,and fungi Trichoderma humatum and Penicillium fellutanum in malt extract. Every 12 days, samples were removed in order to build up the release curve of minerals. The second bioassay was conducted in a greenhouse of the Agricultural Research Corporation of Rio Grande do Norte in experimental delineation in randomized block designs, was used 10 kg of an Yellow Argissolo Dystrophic per pot with the addition of treatments super phosphate simple (SS), potassium chloride (KCl), pure rock, biofertilizers in doses 40, 70, 100 and 200% of the recommendation for SS and KCl, and a control, or not inoculated with bacteria P. polymyxa. Were used seeds of cowpea BRS Potiguar and co-inoculated with the bacterial suspension of Bradyrhizobium japonicum and P. polymyxa. The first crop was harvested 45 days after planting, were evaluated in the dry matter (ADM), macronutrients (N, P, K, Ca, Mg) and micronutrients (Zn, Fe, Mn) in ADM. And the second at 75 days assessing levels of macro end micronutrients in plants and soil, and the maximum adsorption capacity of P in soil. The results showed synergism in co-inoculations with P. polymyxa+R. solanacearum and, P. polymyxa+C. violaceum solubilizations providing higher P and K, respectively, and better solubilization time at 36 days. The pH was lower in biofertilizers higher doses, but there was better with their addition to P at the highest dose. Significant reduction of maximum adsorption capacity of phosphorus with increasing dose of biofertilizer. For K and Ca was better with SS+KCl, and Mg to pure rock. There was an effect of fertilization on the absorption, with better results for P, K and ADM with SS+KCL, and N, Ca and Mg for biofertilizers. Generally, the P. polymyxa not influence the absorption of the elements in the plant. In treatments with the uninoculated P. polymyxa chemical fertilizer had an average significantly higher for weight and number of grains. And in the presence of the bacteria, biofertilizers and chemical fertilizers had positive values in relation to rock and control. The data show that the rocks and biofertilizers could meet the need of nutrients the plants revealed as potential for sustainable agriculture

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Este relatório foi realizado no âmbito da conclusão do mestrado integrado em medicina veterinária da Universidade de Évora, encontrando-se dividido em duas partes. A primeira é referente à casuística acompanhada ao longo do estágio curricular, decorrido no Hospital Veterinário do Restelo (HVR), com a duração de quatro meses, desde 03 de Agosto de 2015 a 06 de Dezembro de 2016, sob orientação da Doutora Sandra Branco e coorientação do Dr. Diogo Magno, subdiretor clínico do HVR. A segunda parte é constituída por uma monografia subordinada ao tema “Erliquiose Monocítica Canina”, seguida de um caso clínico acompanhado pelo autor no âmbito do referido tema. A erliquiose monocítica canina (EMC) é uma doença infeciosa transmitida por um vetor, o ixodídeo Riphicephalus sanguineus, cujos controlos químicos e ambientais são essenciais para reduzir a prevalência da doença. É causada por uma bactéria intracelular, Ehrlichia canis, que afeta o sistema imunitário dos cães, manifestando diferentes fases de evolução e podendo apresentar formas aguda e crónica da doença. O tratamento de primeira escolha é o uso da antibioterapia com tetraciclinas, dentre as quais a doxiciclina, para além do tratamento de suporte, como a fluidoterapia. O prognóstico é variável, dependendo da precocidade e eficiência da terapêutica instituída; ABSTRACT: The present report, wrote to get the master degree in veterinary medicine area, on Universidade de Évora, is divided up into two distinct parts. On one hand it describes the clinical situations’ roll, assisted through the experimental trainee, that took place on Hospital Veterinário do Restelo (HVR), for a period of four months, specifically since 3 august 2015 until 6 december 2015, and this trainee was led by Doctor Sandra Branco, and also the HVR’s clinical subdirector Dr. Diogo Magno. On other hand the second parts reveals a monograph titled “ehrlichiosis monocytic canine” (EMC), specifying a particular clinical case followed by the author. The EMC an infectious disease transmitted by a tick - Riphicephalus sanguineus – whose chemical controls and even the environmental ones are crucial to reduce the disease’s prevalence. The disease has an intracellular bacteria origin - Ehrlichia canis – responsability for the dog’s immune system infection, and it reveals different evolution phases and present acute or in some cases chronic forms. The treatment’s first step is to use an antibiotic with tetracycline that include doxycycline, and as a fluid’s therapy addition is use to do the supportive treatment. The diagnosis is variable so it depends on precocity evaluation and even on the therapeutics efficiencies.

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Dissertação (mestrado)—Universidade de Brasília, Instituto de Ciências Biológicas, Departamento de Fitopatologia, Programa de Pós-Graduação em Fitopatologia, 2015.

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Dissertação para obtenção do grau de Mestre no Instituto Superior de Ciências da Saúde Egas Moniz

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Dissertação de Mestrado, Engenharia Biológica, Faculdade de Ciências e Tecnologia, Universidade do Algarve, 2014

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Dissertação de Mestrado, Ciências Farmacêuticas, Faculdade de Ciências e Tecnologia, Universidade do Algarve, 2015

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Tese de Doutoramento em Ciências Veterinárias, Especialidade de Ciências Biológicas e Biomédicas

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Tese de dout. em Biologia, especialidade de Microbiologia, Unidade de Ciências e Tecnologias Agrárias, Univ. do Algarve, 2000

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Dissertação de mest. em Aquacultura, Faculdade de Ciências do Mar e do Ambiente, Univ. do Algarve, 2003

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Dissertação de Mestrado, Biologia Molecular e Microbiana, Faculdade de Ciências e Tecnologia, Universidade do Algarve, 2016